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1.
BMC Plant Biol ; 24(1): 93, 2024 Feb 07.
Article in English | MEDLINE | ID: mdl-38321418

ABSTRACT

BACKGROUND: Acacia species are economically significant as medicinal plants that have been utilized since ancient times. Acacia modesta has been reported to possess potent antibacterial and antioxidant properties, but its growth rate is slow. In this study, we hypothesized that inducing callus in vitro from A. modesta could enhance the production of antibacterial and antioxidant secondary metabolites, thereby circumventing the issues of slow growth and excessive harvesting of the plant. RESULTS: The callus was induced from axillary buds on MS medium supplemented with 1 mg/L of 2,4-D and 1 mg/L of BAP. The secondary metabolites, volatile compounds, antibacterial activity, and antioxidant activity of the callus and parent plant leaf extracts were evaluated. The results revealed that the content of phenolics and flavonoids, the number of volatile compounds, and the antibacterial and antioxidant activities of the callus extract were significantly enhanced (P ≤ 0.05) compared to the leaf extract. The antibacterial and antioxidant effects were strongly correlated with the total phenolic and flavonoid content in the extracts. CONCLUSIONS: Our findings suggest that in vitro callus culture increases the production of phenolics, flavonoids, and volatile compounds. This subsequently enhances the antibacterial and antioxidant properties of A. modesta.


Subject(s)
Acacia , Antioxidants , Antioxidants/metabolism , Acacia/metabolism , Anti-Bacterial Agents/pharmacology , Plant Extracts , Flavonoids/metabolism , Phenols/metabolism
2.
J Dairy Sci ; 106(5): 3203-3216, 2023 May.
Article in English | MEDLINE | ID: mdl-37028971

ABSTRACT

The supplementation of dairy cows with tannins can reduce the ruminal degradation of dietary protein and urine N excretion, but high concentration in the diet can impair ruminal function, diet digestibility, feed intake, and milk yield. This study evaluated the effect of low concentrations (0, 0.14, 0.29, or 0.43% of diet in DM basis) of a tannin extract from the bark of Acacia mearnsii (TA) on milking performance, dry matter intake (DMI), digestibility, chewing behavior, ruminal fermentation, and N partition of dairy cows. Twenty Holstein cows (34.7 ± 4.8 kg/d, 590 ± 89 kg, and 78 ± 33 d in lactation) were individually fed a sequence of 4 treatments in 5, 4 × 4 Latin squares (with 21-d treatment periods, each with a 14-d adaptation period). The TA replaced citrus pulp in the total mixed ration and other feed ingredients were kept constant. Diets had 17.1% crude protein, mostly from soybean meal and alfalfa haylage. The TA had no detected effect on DMI (22.1 kg/d), milk yield (33.5 kg/d), and milk components. The proportions in milk fat of mixed origin fatty acids (16C and 17C) and the daily secretion of unsaturated fatty acids were linearly reduced and the proportion of de novo fatty acids was increased by TA. Cows fed TA had linear increase in the molar proportion of butyrate and linear reduction in propionate in ruminal fluid, whereas acetate did not differ. There was a tendency for the ratio of acetate to propionate to be linearly increased by TA. Cows fed TA had a linear reduction in the relative ruminal microbial yield, estimated by the concentrations of allantoin and creatinine in urine and body weight. The total-tract apparent digestibility of neutral detergent fiber, starch, and crude protein also did not differ. The TA induced a linear increase in meal size and duration of the first daily meal and reduced meal frequency. Rumination behavior did not differ with treatment. Cows fed 0.43% TA selected against feed particles >19 mm in the morning. There were tendencies for linear decreases in milk urea N (16.1-17.3 mg/dL), urine N (153-168 g/d and 25.5-28.7% of N intake), and plasma urea N at 6, 18, and 21 h postmorning feeding, and plasma urea N 12 h postfeeding was reduced by TA. The proportion of N intake in milk (27.1%) and feces (21.4%) did not differ with treatment. Reductions in urine N excretion and milk and plasma urea N suggest that TA reduced ruminal AA deamination, whereas lactation performance did not differ. Overall, TA up to 0.43% of DM did not affect DMI and lactation performance, while there was a tendency to reduce urine N excretion.


Subject(s)
Acacia , Female , Cattle , Animals , Acacia/metabolism , Tannins/pharmacology , Propionates/metabolism , Mastication , Fermentation , Nitrogen/metabolism , Animal Feed/analysis , Digestion , Milk/metabolism , Diet/veterinary , Lactation , Fatty Acids/metabolism , Plant Extracts/pharmacology , Rumen/metabolism
3.
Eur Rev Med Pharmacol Sci ; 27(7): 2845-2857, 2023 04.
Article in English | MEDLINE | ID: mdl-37070884

ABSTRACT

OBJECTIVE: Arabic gum Acacia (AG) is rich in fiber which improves lipid metabolism besides its antioxidant effect. Folium mori (FM) is a widely used herb due to its immunomodulatory, antimicrobial, and antioxidant activity. In the current study, we explore the antidiabetic, anti-inflammatory, as well as antioxidant activities of AG and FM in Streptozotocin (STZ), induced diabetic rats. MATERIALS AND METHODS: STZ diabetic rats were orally administrated with metformin and/or a combination of AG and FM for 4 weeks. Glycemic levels, Serum alanine aminotransferase (ALT) and aspartate aminotransferase (AST), cholesterol, triglycerides, urea, and creatinine were determined. Malondialdehyde (MDA), glutathione peroxidase (GPx), and Superoxide dismutase (SOD) were also evaluated. Gene expression and profile as well as immunohistopathological were also evaluated. RESULTS: The results elicited no toxicological profile of both AG and FM. Plasma glucose level was decreased starting from 1st week to 4th week; besides, there was an improvement in glycated hemoglobin, insulin, and fructosamine. Liver and kidney damage markers were decreased in both AG and FM-treated rats. A significant increase in the antioxidant defense system and a decrease in oxidative stress markers were also observed. Gene expression analysis in brain tissues revealed a significant decrease in Interleukin beta 1 (IL-ß1), Caspase 3 (Cas-3), and Transforming growth factor beta (TGF-ß). CONCLUSIONS: Oral treatment of metformin with AG and FM in STZ-injected rats could ameliorate protective pathways and can be one of the promising oral anti-diabetic herbal agents.


Subject(s)
Acacia , Diabetes Mellitus, Experimental , Metformin , Rats , Animals , Antioxidants/pharmacology , Antioxidants/metabolism , Streptozocin/pharmacology , Gum Arabic/pharmacology , Gum Arabic/metabolism , Diabetes Mellitus, Experimental/chemically induced , Diabetes Mellitus, Experimental/drug therapy , Transforming Growth Factor beta/metabolism , Caspase 3/metabolism , Acacia/metabolism , Blood Glucose/analysis , Hypoglycemic Agents/pharmacology , Metformin/pharmacology , Oxidative Stress , Plant Extracts/pharmacology
4.
Article in English | MEDLINE | ID: mdl-35747973

ABSTRACT

BACKGROUND: Chronic liver injury leads to liver inflammation and fibrosis, activating myofibroblasts in the liver and secreting extracellular matrix proteins that make the fibrous scar. OBJECTIVES: The purpose of our study was to characterize the polyphenolic content present in Acacia jacquemontii stem and evaluate its antioxidant and hepatoprotective activity. METHODS: The phenolic contents in Acacia jacquemontii polyphenolic extract (AJPPE) were characterized using high-performance liquid chromatography (HPLC). The hepatoprotective and antioxidant activity of AJPPE were determined through biochemical parameters (ALT, AST, and ALP), lipid profile (TC, TG, HDL, and LDL), antioxidant biomarkers (SOD, LPO, GSH, and CAT), anti-fibrotic activity (collagen deposition), and histopathological analysis. RESULTS: HPLC analysis of AJPPE showed the presence of polyphenols, including chlorogenic acid, P-coumaric acid, caffeic acid, and kaempferol, in a remarkable therapeutic range. Results of the in vivo analysis showed a significant decrease in the level of lipid profile, including LDL (low-density lipoprotein), TC (total cholesterol), triglycerides, liver function markers (AST, ALT, and ALP), collagen deposition and significantly increased the level of anti-oxidative biomarkers (CAT, SOD, LPO, and GSH) by using AJPPE. CONCLUSION: The above-mentioned results have shown that AJPPE possesses significant antioxidative and hepatoprotective effects. Furthermore, histopathological results also supported the antioxidant and hepatoprotective potential of AJPPE.


Subject(s)
Acacia , Chemical and Drug Induced Liver Injury, Chronic , Rats , Animals , Antioxidants/pharmacology , Antioxidants/therapeutic use , Antioxidants/chemistry , Acacia/metabolism , Chemical and Drug Induced Liver Injury, Chronic/drug therapy , Plant Extracts/pharmacology , Plant Extracts/therapeutic use , Plant Extracts/chemistry , Triglycerides , Superoxide Dismutase
5.
Int J Phytoremediation ; 25(3): 314-321, 2023.
Article in English | MEDLINE | ID: mdl-35689306

ABSTRACT

Phytoremediation is a new technology for cleaning contaminated soil with crude oil. Oil pollution is a serious problem worldwide; the aim of this study was to use the plant for Phytoremediation. Leguminous plant Acacia seiberiana Tausch was tested for it is efficiency to remediate soil polluted with 0.5, 1, 1.5 and 2% (w/w) crude oil and it is the ability to enhance the activity of soil microorganisms. Plant parameters, degradation percentage, Total Petroleum Hydrocarbon and bacterial count were measured. Results showed that the concentration of the crude oil did not affect plant growth indicating the significant success of the Phytoremediation process. Shoot length and shoot and root weights have not been negatively affected by oil, compared to the control plant, up to a concentration of 1.5% for up to six months. Crude oil degradation percentages were found to be in the range of 49-79%. The highest degradation percentage was recorded for the soil collected from underneath A. sieberiana Tausch seedlings (79%). A total of 81 different hydrocarbons were detected in soil samples at zero time and most of them were found to be of long (≥30 carbon atoms) and moderate (10-29 C) hydrocarbon chains. Fraction analyses were conducted in plant A. sieberiana Tausch seedlings at intervals of 60, 120 and 180 days of incubation, six different hydrocarbons were detected. The most abundant hydrocarbon detected were Heneicosane (21 C), Tetracosane (24 C) and Octacosane (28 C). The viable microorganism's count in oil-contaminated soil at any of the concentrations tested was significantly (P ≤ 0.01) higher than that in oil-free soil at any sampling interval. High efficiency of biodegradation was achieved using A. seiberiana Tausch indicating the unique mechanism of this plant in remediating contaminated soil with crude oil.


Subject(s)
Acacia , Fabaceae , Petroleum , Soil Pollutants , Acacia/metabolism , Petroleum/metabolism , Biodegradation, Environmental , Soil , Hydrocarbons/metabolism , Soil Pollutants/metabolism , Soil Microbiology
6.
PeerJ ; 10: e13623, 2022.
Article in English | MEDLINE | ID: mdl-35935250

ABSTRACT

The influence of dry leachates of Acasia saligna was tested on the seedling growth, photosynthesis, biochemical attributes, and gene expression of the economically important crops, including wheat (Triticum aestivum L.), radish (Raphanus sativus L.), barley (Hordeum vulgare L.) and arugula (Eruca sativa L.). Different concentrations (5%, 10%, 15%, 20%, and 25%) of stem extract (SE) and leaf extract (LE) of A. saligna were prepared, and seedlings were allowed to grow in Petri plates for 8 days. The results showed that all plant species exhibited reduced germination rate, plant height, and fresh and dry weight due to leachates extracts of A. saligna. Moreover, the activities of antioxidant enzymes, including superoxide dismutase (SOD), catalase (CAT), and ascorbate peroxidase (APX), exhibited differential regulation due to the extract treatment. The SOD was increased with increasing the concentration of extracts, while CAT and APX activities were decreased with increasing the extract concentrations. In addition, leachate extract treatment decrease chlorophyll content, photosynthesis, PSII activity, and water use efficiency, with evident effects at their higher concentrations. Furthermore, the content of proline, sugars, protein, total phenols, and flavonoids were reduced considerably due to leachates extract treatments. Furthermore, seedlings treated with high concentrations of LE increased the expression of genes. The present results lead to the conclusion that A. saligna contains significant allelochemicals that interfere with the growth and development of the tested crop species and reduced the crops biomass and negatively affected other related parameters. However, further studies are suggested to determine the isolation and purification of the active compounds present in A. saligna extracts.


Subject(s)
Acacia , Alkaloids , Hordeum , Seedlings , Germination , Acacia/metabolism , Antioxidants/pharmacology , Photosynthesis , Alkaloids/metabolism , Triticum , Superoxide Dismutase/metabolism , Hordeum/metabolism , Plant Extracts/metabolism , Gene Expression
7.
PLoS One ; 17(3): e0264646, 2022.
Article in English | MEDLINE | ID: mdl-35239727

ABSTRACT

The assigned work was aimed to examine the capability of phytoconstituents of an aqueous seed extract of Acacia senegal (L.) Willd to inhibit HMG-CoA reductase and regression of the atherosclerotic plaque. The chemical fingerprinting of the test extract was assessed by LC-MS/MS. Consequently, the analyses of in-vitro, in-vivo, and in-silico were executed by using the standard protocols. The in-vitro assessment of the test extract revealed 74.1% inhibition of HMG-CoA reductase. In-vivo assessments of the test extract indicated that treated hypercholesterolemic rabbits exhibited a significant (P≤0.001) amelioration in the biomarker indices of the dyslipidaemia i.e., atherogenic index, Castelli risk index(I&II), atherogenic coefficient along with lipid profile. Subsequently, significant reductions were observed in the atherosclerotic plaque and antioxidant levels. The in-silico study of molecular docking shown interactions capabilities of the leading phytoconstituents of the test extract i.e., eicosanoic acid, linoleic acid, and flavan-3-ol with target protein of HMG-CoA reductase. The values of RSMF and potential energy of top docked complexes were show significant interactions. Accordingly, the free energy of solvation, interaction angle, radius of gyration and SASA were shown significant stabilities of top docked complex. The cumulative data of results indicate phytoconstituents of an aqueous seed extract of Acacia senegal have capabilities to inhibit the HMG-CoA reductase and improve the levels of antioxidants.


Subject(s)
Acacia , Dyslipidemias , Hydroxymethylglutaryl-CoA Reductase Inhibitors , Plaque, Atherosclerotic , Acacia/metabolism , Acyl Coenzyme A , Animals , Antioxidants/chemistry , Antioxidants/pharmacology , Chromatography, Liquid , Hydroxymethylglutaryl CoA Reductases/metabolism , Hydroxymethylglutaryl-CoA Reductase Inhibitors/pharmacology , Hydroxymethylglutaryl-CoA-Reductases, NADP-dependent , Molecular Docking Simulation , Plant Extracts/chemistry , Plant Extracts/pharmacology , Rabbits , Senegal , Tandem Mass Spectrometry
8.
PLoS One ; 17(1): e0259190, 2022.
Article in English | MEDLINE | ID: mdl-34986148

ABSTRACT

Emergence of multidrug resistant pathogens is increasing globally at an alarming rate with a need to discover novel and effective methods to cope infections due to these pathogens. Green nanoparticles have gained attention to be used as efficient therapeutic agents because of their safety and reliability. In the present study, we prepared zinc oxide nanoparticles (ZnO NPs) from aqueous leaf extract of Acacia arabica. The nanoparticles produced were characterized through UV-Visible spectroscopy, scanning electron microscopy, and X-ray diffraction. In vitro antibacterial susceptibility testing against foodborne pathogens was done by agar well diffusion, growth kinetics and broth microdilution assays. Effect of ZnO NPs on biofilm formation (both qualitatively and quantitatively) and exopolysaccharide (EPS) production was also determined. Antioxidant potential of green synthesized nanoparticles was detected by DPPH radical scavenging assay. The cytotoxicity studies of nanoparticles were also performed against HeLa cell lines. The results revealed that diameter of zones of inhibition against foodborne pathogens was found to be 16-30 nm, whereas the values of MIC and MBC ranged between 31.25-62.5 µg/ml. Growth kinetics revealed nanoparticles bactericidal potential after 3 hours incubation at 2 × MIC for E. coli while for S. aureus and S. enterica reached after 2 hours of incubation at 2 × MIC, 4 × MIC, and 8 × MIC. 32.5-71.0% inhibition was observed for biofilm formation. Almost 50.6-65.1% (wet weight) and 44.6-57.8% (dry weight) of EPS production was decreased after treatment with sub-inhibitory concentrations of nanoparticles. Radical scavenging potential of nanoparticles increased in a dose dependent manner and value ranged from 19.25 to 73.15%. Whereas cytotoxicity studies revealed non-toxic nature of nanoparticles at the concentrations tested. The present study suggests that green synthesized ZnO NPs can substitute chemical drugs against antibiotic resistant foodborne pathogens.


Subject(s)
Acacia/metabolism , Foodborne Diseases/prevention & control , Metal Nanoparticles/chemistry , Zinc Oxide/chemistry , Anti-Bacterial Agents/pharmacology , Antioxidants/pharmacology , Biofilms/drug effects , Escherichia coli/drug effects , Foodborne Diseases/microbiology , Green Chemistry Technology/methods , HeLa Cells , Humans , Microbial Sensitivity Tests/methods , Microscopy, Electron, Scanning/methods , Plant Extracts/pharmacology , Plant Leaves/metabolism , Reproducibility of Results , Spectrometry, X-Ray Emission/methods , Staphylococcus aureus/drug effects , X-Ray Diffraction/methods , Zinc/chemistry , Zinc/metabolism , Zinc Oxide/metabolism
9.
Sci Rep ; 11(1): 20316, 2021 10 13.
Article in English | MEDLINE | ID: mdl-34645930

ABSTRACT

Acacia senegal (AS) gum (Gum Arabic) is a natural emulsifier exudate from the branches and trunk of Acacia trees and it is recognized by the Food and Drug Administration (FDA) agency as a secure dietary fiber. The present research evaluated the systemic oxidative and necroinflammatory stress induced by CCl4 administration and the alleviating effect of AS gum aqueous extract (ASE, 7.5 g/Kg b.w.). The results demonstrated the presence of certain phenolic compounds in ASE, as well as its in vitro potent scavenging ability against ABTS (2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid), NO, and lipid peroxide radicals. Also, the outcomes revealed an improvement in the CCl4-induced liver, lung, brain, and spleen toxicity by reducing the levels of ROS, lipid peroxidation, NO, and the gene expression of NF-κB and its relevant ROS-mediated inflammatory genes. In contrast, the total antioxidant capacity (TAC), as well as the enzymatic and non-enzymatic antioxidants, were significantly upregulated in these organs after the treatment with ASE. These results were confirmed by improving the morphological features of each organ. Therefore, ASE can ameliorate the systemic toxicity caused by CCl4 via regulation of the ROS/NF-κB signaling pathway in the rat organs, which is owed to its phytochemical composition.


Subject(s)
Acacia/metabolism , Carbon Tetrachloride/chemistry , Gum Arabic/chemistry , NF-kappa B/metabolism , Animals , Antioxidants/chemistry , Benzothiazoles/chemistry , Body Weight , Brain/pathology , Chromatography, Liquid , In Vitro Techniques , Lipid Peroxidation , Liver/metabolism , Male , Organ Size , Oxidation-Reduction , Oxidative Stress , Phenol , Plant Extracts/pharmacology , Rats , Reactive Oxygen Species , Signal Transduction , Sulfonic Acids/chemistry , Thiobarbituric Acid Reactive Substances , Transforming Growth Factor beta/metabolism
10.
Molecules ; 26(20)2021 Oct 14.
Article in English | MEDLINE | ID: mdl-34684798

ABSTRACT

The genus Vachellia, previously known as Acacia, belongs to the family Fabaceae, subfamily Leguminosae, which are flowering plants, commonly known as thorn trees. They are traditionally used medicinally in various countries including South Africa for the treatment of ailments such as fever, sore throat, Tuberculosis, convulsions and as sedatives. The aim of this study was to determine biochemical variations in five Vachellia species and correlate their metabolite profiles to antioxidant activity using a chemometric approach. The antioxidant activity of five Vachellia aqueous-methanolic extracts were analyzed using three methods: 2,2-di-phenyl-1-picrylhydrazyl (DPPH) radical scavenging assay, 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid (ABTS+) analysis and the ferric reducing antioxidant power (FRAP) assay by means of serial dilution and bioautography with the thin-layer chromatography (TLC) method. Amongst the Vachellia extracts tested, V. karroo, V. kosiensis and V. xanthophloea demonstrated the highest DPPH, ABTS+ and FRAP inhibitory activity. The antioxidant activities of DPPH were higher than those obtained by ABTS+, although these values varied among the Vachellia species. Proton nuclear magnetic resonance (1H NMR), coupled with multivariate statistical modeling tools such as principal component analysis (PCA) and orthogonal partial least squares discriminant analysis (OPLS-DA), were performed to profile metabolites responsible for the observed activity. The OPLS-DA categorized the five Vachellia species, separating them into two groups, with V. karroo, V. kosiensis and V. xanthophloea demonstrating significantly higher radical scavenging activity than V. tortilis and V. sieberiana, which clustered together to form another group with lower radical scavenging activity. Annotation of metabolites was carried out using the ultra-high-performance liquid chromatography-quadrupole time-of-flight mass spectrometry (UHPLC-qTOF-MS), and it tentatively identified 23 metabolites of significance, including epigallocatechin (m/z = 305.0659), methyl gallate (m/z = 183.0294) and quercetin (m/z = 301.0358), amongst others. These results elucidated the metabolites that separated the Vachellia species from each other and demonstrated their possible free radical scavenging activities.


Subject(s)
Acacia/metabolism , Antioxidants/metabolism , Fabaceae/metabolism , Acacia/chemistry , Acacia/classification , Antioxidants/chemistry , Biological Products/chemistry , Biological Products/metabolism , Fabaceae/chemistry , Fabaceae/classification , Free Radical Scavengers/chemistry , Free Radical Scavengers/metabolism , Magnetic Resonance Spectroscopy , Metabolome , Metabolomics , Molecular Structure , Plant Extracts/chemistry , Plant Extracts/metabolism , Plants, Medicinal/chemistry , Plants, Medicinal/classification , Plants, Medicinal/metabolism , South Africa
11.
Mater Sci Eng C Mater Biol Appl ; 111: 110829, 2020 Jun.
Article in English | MEDLINE | ID: mdl-32279826

ABSTRACT

This study concentrates on biosynthesis of Silver Nanoparticles (AgNPs) from stem extract of Acacia nilotica (A. nilotica). The reaction was completed at a temperature ~40-45 °C and time duration of 5 h. AgNPs were thoroughly investigated via advanced characterization techniques such as UV-Vis spectrophotometry (UV-Vis), Fourier Transform Infrared spectroscopy (FTIR), X-ray Diffractometry (XRD), Field Emission Scanning Electron Microscopy (FESEM), High Resolution Transmission Electron Microscopy (HRTEM), X-ray Photoelectron Spectroscopy (XPS), Thermo Gravimetric Analysis (TGA), Diffuse Reflectance Spectroscopy (DRS), Brunner-Emmett-Teller (BET), Dynamic Light Scattering (DLS), and Zeta potential analysis. AgNPs with average size below 50 nm were revealed by all the measuring techniques. Maximum surface area ~5.69 m2/g was reported for the as synthesized NPs with total pore volume ~0.0191 mL/g and average pore size ~1.13 nm. Physical properties such as size and shape have changed the surface plasmon resonance peak in UV-visible spectrum. Antimicrobial activity was reported due to denaturation of microbial ribosome's sulphur and phosphorus bond by silver ions against bacterium Methicillin Resistant Staphylococcus aureus (MRSA) and fungus Candida Albican (CA). Furthermore, AgNPs degraded toxic pollutants such as 4-nitrophenol (4-NP), 2-nitrophenol (2-NP) and various hazardous dyes such as Congo Red (CR), Methylene Blue (MB) and Methyl Orange (MO) up to 95%. The present work provided low cost, green and an effective way for synthesis of AgNPs which were utilized as potential antimicrobial agents as well as effective catalyst for detoxification of various pollutants and dyes.


Subject(s)
Acacia/metabolism , Anti-Infective Agents/pharmacology , Environmental Pollutants/toxicity , Metal Nanoparticles/chemistry , Organic Chemicals/toxicity , Secondary Metabolism , Silver/pharmacology , Candida albicans/drug effects , Catalysis , Coloring Agents/chemistry , Dynamic Light Scattering , Kinetics , Metal Nanoparticles/ultrastructure , Methicillin-Resistant Staphylococcus aureus/drug effects , Microbial Sensitivity Tests , Nitrogen/chemistry , Nitrophenols/chemistry , Photoelectron Spectroscopy , Plant Extracts/pharmacology , Secondary Metabolism/drug effects , Spectrophotometry, Ultraviolet , Spectroscopy, Fourier Transform Infrared , Static Electricity , Temperature , Thermogravimetry , X-Ray Diffraction
12.
PLoS One ; 14(12): e0226887, 2019.
Article in English | MEDLINE | ID: mdl-31860646

ABSTRACT

Soil carbon (C), nitrogen (N) and phosphorus (P) are important soil properties linked to nutrient limitation and plant productivity in terrestrial ecosystems. Up to 90% of the Yellow River Delta (YRD), China has been affected by soil salination due to groundwater overdraft, improper irrigation, land use and land cover change. The objective of this study is to evaluate the impact of different plant communities on soil quality in a saline-alkaline system of the YRD. We investigated the vertical distribution and seasonal variation of soil C, N, and P, and C:N ratio by choosing four dominant plant communities, namely, alfalfa grassland (AG), Chinese tamarisk (CT), locust forest (LF) and cotton field (CF). The results showed that the concentrations of soil organic carbon (SOC) and total nitrogen (TN) in CT and LF were always higher than that in AG and CF, especially in the topsoil layer (p<0.05), then gradually decreased with soil depth increasing (p<0.05). The C:N ratio was generally lower, and the average C:N ratio was higher in LF (11.55±1.99) and CT (11.03±0.47) than in CF (10.05±1.25) and AG (9.11±1.11) (p<0.05). The available phosphorus (AP) was highest in CT in Spring, while it was highest in CF in Summer and Autumn. It is worth noting that the soil AP concentrations were always low, particularly in AG (< 6.29 mg kg-1) and LF (< 4.67 mg kg-1), probably linked to P poorly mobile in the saline-alkaline region. In this study, soil nutrients in natural plant communities are superior to farmland, and are significantly affected by the types of plant community; therefore, we suggest that protection of natural vegetation and development of optimal vegetation are critical to restoring land degradation in the YRD.


Subject(s)
Carbon/analysis , Forests , Grassland , Nitrogen/analysis , Phosphorus/analysis , Soil/chemistry , Wetlands , Acacia/metabolism , China , Gossypium/metabolism , Medicago sativa/metabolism , Plant Dispersal , Rivers , Seasons , Tamaricaceae/metabolism
13.
Tree Physiol ; 39(3): 404-416, 2019 03 01.
Article in English | MEDLINE | ID: mdl-30184191

ABSTRACT

Competitive interactions between native tree seedlings and exotic grasses frequently hinder forest restoration. We investigated the consequences of competition with exotic grasses on the growth and net nitrogen (N) uptake capacity of native rainforest seedlings used for reforestation depending on soil N availability and N source. Tree seedlings and grasses were grown in the greenhouse in different competition regimes (one tree species vs one grass species) and controls (grass monocultures or single tree seedlings) at low and high soil N. After 8 weeks, we quantified net N uptake capacity using 15N-labelled organic (i.e., glutamine and arginine) and inorganic (i.e., ammonium and nitrate) N sources and biomass indices. Depending on soil N availability, we observed different species-specific responses to growth and N acquisition. Tree seedlings generally increased their net N uptake capacity in response to competition with grasses, although overall seedling growth was unaffected. In contrast, the responses to competition by the grasses were species-specific and varied with soil N availability. The different N acquisition strategies suggest the avoidance of competition for N between trees and grasses. Overall, the results highlight that quantifying underlying mechanisms of N acquisition complements the information on biomass allocation as a measure of responses to competition, particularly with varying environmental conditions.


Subject(s)
Conservation of Natural Resources , Introduced Species , Nitrogen/metabolism , Poaceae/metabolism , Soil/chemistry , Trees/metabolism , Acacia/metabolism , Cynodon/metabolism , Pennisetum/metabolism , Queensland , Seedlings/metabolism , Species Specificity , Tracheophyta/metabolism
14.
Lett Appl Microbiol ; 68(1): 64-72, 2019 Jan.
Article in English | MEDLINE | ID: mdl-30315651

ABSTRACT

This study purpose was to evaluate the in vitro inhibitory properties of Italian acacia honey extracts against pathogenic aquatic oomycete/fungal isolates that cause different diseases in crayfish, resulting in an elevated mortality rate. The antimycotic activity of acacia honey aqueous extracts was evaluated against the strain UEF88662 of Aphanomyces astaci (oomycete) and the strain SMM2 of Fusarium avenaceum (fungus). The extracts preparation was carried out with water by a cheap, not complex and organic solvent-free procedure, with low environmental impact and the higher possibility of large-scale reproducibility. The anti-oomycete and antifungal activities were quantitatively evaluated by growth, survival and sporulation microbiological assays. The extracts displayed a dose-dependent inhibitory efficacy on oomycete and fungal growth and survival, as well as on the production of oomycete and fungal spores. Supported by future in vivo studies, our results encourage the use of natural extracts like honey as innovative tools to counteract mycotic infections. SIGNIFICANCE AND IMPACT OF THE STUDY: The continuous spread of aquatic fungal disease as the 'crayfish plague' and the 'burn spot disease' has severe ecological and commercial repercussions. Critical factor to prevent further spread is the availability of effective antifungals possibility derived from local natural resources to use in innovative strategies of control and eradication of these diseases. This study provides relevant information about the in vitro anti-oomycete and antifungal activity of Italian acacia honey aqueous extracts against two highly infectious and dangerous pathogenic species, Aphanomyces astaci and Fusarium avenaceum, that are responsible for important crayfish diseases.


Subject(s)
Antifungal Agents/pharmacology , Antiprotozoal Agents/pharmacology , Aphanomyces/drug effects , Astacoidea/microbiology , Fusarium/drug effects , Honey/analysis , Plant Extracts/pharmacology , Acacia/metabolism , Animals , Reproducibility of Results
15.
Chem Biol Drug Des ; 93(2): 100-109, 2019 02.
Article in English | MEDLINE | ID: mdl-30225997

ABSTRACT

The therapeutic activities of food-derived bioactive proteins and peptides are attracting increased attention within the research community. Medicinal plants used in traditional medicines are an excellent source of bioactive proteins and peptides, especially those traditionally prepared by water extraction for use as tea or food supplement. In this study, novel bioactive peptides were isolated from enzymatic digests of 33 Thai medicinal plants. The inhibitory activity of each against dengue virus (DENV) infection was investigated. Of 33 plants, peptides from Acacia catechu extract demonstrated the most pronounced anti-DENV activity. Half maximal inhibitory concentration of 0.18 µg/ml effectively inhibited DENV foci formation. Treatment with 1.25 µg/ml crude peptide extract could reduce virus production less than 100-fold with no observable cell toxicity. Peptide sequences were determined by high-performance liquid chromatography and liquid chromatography-tandem mass spectrometry. Two bioactive peptides isolated from Acacia catechu inhibited DENV foci formation >90% at the concentration of 50 µM; therefore, they are recommended for further investigation as antiviral peptides against DENV infection.


Subject(s)
Acacia/chemistry , Antiviral Agents/pharmacology , Dengue Virus/drug effects , Peptides/chemistry , Acacia/metabolism , Amino Acid Sequence , Animals , Antiviral Agents/chemistry , Antiviral Agents/isolation & purification , Chlorocebus aethiops , Dengue Virus/physiology , Peptides/isolation & purification , Peptides/pharmacology , Plants, Medicinal/chemistry , Plants, Medicinal/metabolism , Serogroup , Vero Cells
16.
Environ Pollut ; 234: 642-655, 2018 Mar.
Article in English | MEDLINE | ID: mdl-29223821

ABSTRACT

Along the arid Arava, southern Israel, acacia trees (Acacia raddiana and Acacia tortilis) are considered keystone species. Yet they are threatened by the ongoing aquifer depletion for agriculture, the conversion of natural land to agricultural land, seed infestation by bruchid beetles, and the reduction in precipitation level in the region. In the acacia dominated Evrona reserve (southern Arava), adding to these threats are recurrent oil spills from an underground pipeline. We report here a study of the effects of contaminated soils, from a recent (December 2014) and a much older (1975) oil spills. The effects of local petroleum oil-contaminated soils on germination and early growing stages of the two acacia species were studied by comparisons with uncontaminated (control) soils from the same sites. For both acacia species, germination was significantly reduced in the 2014 oil-contaminated soils, whereas delayed in the 1975 oil-contaminated soil. There was no significant effect of oil volatile compounds on seed germination. At 105 days post transplanting (DPT), height, leaf number, stem diameter, and root growth were significantly smaller in the oil-contaminated soils. While photosynthetic performance (quantum yield of photosystem II) did not differ considerably between treatments, reductions of chlorophylls content and protein content were found in seedlings growing in the contaminated soils. Significant increases in superoxide dismutase (SOD) and ascorbate peroxidase (APX) activities were found in roots of seedlings growing in oil-contaminated soils. These results demonstrate that seed germination and seedling growth of both acacia species were strongly restricted by oil contamination in soils, from both recent (2014) and a 40-year old (1975) oil spills. Such long-term effects of oil spills on local acacia seedlings could shift the structure of local acacia communities. These results should be taken into account by local authorities aiming to clean up and restore such polluted areas.


Subject(s)
Acacia/drug effects , Petroleum/toxicity , Soil Pollutants/toxicity , Acacia/growth & development , Acacia/metabolism , Acacia/physiology , Ascorbate Peroxidases/metabolism , Chlorophyll/metabolism , Germination/drug effects , Israel , Plant Leaves/drug effects , Plant Leaves/growth & development , Plant Proteins/metabolism , Plant Roots/drug effects , Plant Roots/growth & development , Plant Roots/metabolism , Plant Stems/drug effects , Plant Stems/growth & development , Seedlings/drug effects , Seedlings/growth & development , Seedlings/metabolism , Seeds/drug effects , Seeds/growth & development , Superoxide Dismutase/metabolism
17.
J Hazard Mater ; 261: 801-7, 2013 Oct 15.
Article in English | MEDLINE | ID: mdl-23433572

ABSTRACT

The effects of nutrient and lime additions on antimony (Sb) and arsenic (As) accumulation by native Australian and naturalised plants growing in two contaminated mine site soils (2,735 mg kg(-1) and 4,517 mg kg(-1) Sb; 826 mg kg(-1) and 1606 As mgkg(-1)) was investigated using a glasshouse pot experiment. The results indicated an increase in soil solution concentrations with nutrient addition in both soils and also with nutrient+lime addition for Sb in one soil. Metalloid concentrations in plant roots were significantly greater than concentrations in above ground plant parts. The metalloid transfer to above ground plant parts from the roots and from the soil was, however, low (ratio of leaf concentration/soil concentration≪1) for all species studied. Eucalyptus michaeliana was the most successful at colonisation with lowest metalloid transfer to above ground plant parts. Addition of nutrients and nutrients+lime to soils, in general, increased plant metalloid accumulation. Relative As accumulation was greater than that of Sb. All the plant species studied were suitable for consideration in the mine soil phytostabilisation strategies but lime additions should be limited and longer term trials also recommended.


Subject(s)
Antimony/metabolism , Arsenic/metabolism , Soil Pollutants/metabolism , Acacia/metabolism , Australia , Biodegradation, Environmental , Calcium Compounds/pharmacology , Cynodon/metabolism , Eucalyptus/metabolism , Hazardous Waste Sites , Mining , Nitrogen/pharmacology , Oxides/pharmacology , Phosphorus/pharmacology , Plant Roots/metabolism , Plant Shoots/metabolism , Plant Stems/metabolism , Poa/metabolism , Potassium/pharmacology , Sulfur/pharmacology
18.
Ann Bot ; 111(3): 445-54, 2013 Mar.
Article in English | MEDLINE | ID: mdl-23293017

ABSTRACT

BACKGROUND AND AIMS: Previous research has suggested a trade-off between the capacity of plants to downregulate their phosphorus (P) uptake capacity and their efficiency of P resorption from senescent leaves in species from P-impoverished environments. METHODS: To investigate this further, four Australian native species (Banksia attenuata, B. menziesii, Acacia truncata and A. xanthina) were grown in a greenhouse in nutrient solutions at a range of P concentrations [P]. Acacia plants received between 0 and 500 µm P; Banksia plants received between 0 and 10 µm P, to avoid major P-toxicity symptoms in these highly P-sensitive species. KEY RESULTS: For both Acacia species, the net P-uptake rates measured at 10 µm P decreased steadily with increasing P supply during growth. In contrast, in B. attenuata, the net rate of P uptake from a solution with 10 µm P increased linearly with increasing P supply during growth. The P-uptake rate of B. menziesii showed no significant response to P supply in the growing medium. Leaf [P] of the four species supported this finding, with A. truncata and A. xanthina showing an increase up to a saturation value of 19 and 21 mg P g(-1) leaf dry mass, respectively (at 500 µm P), whereas B. attenuata and B. menziesii both exhibited a linear increase in leaf [P], reaching 10 and 13 mg P g(-1) leaf dry mass, respectively, without approaching a saturation point. The Banksia plants grown at 10 µm P showed mild symptoms of P toxicity, i.e. yellow spots on some leaves and drying and curling of the tips of the leaves. Leaf P-resorption efficiency was 69 % (B. attenuata), 73 % (B. menziesii), 34 % (A. truncata) and 36 % (A. xanthina). The P-resorption proficiency values were 0·08 mg P g(-1) leaf dry mass (B. attenuata and B. menziesii), 0·32 mg P g(-1) leaf dry mass (A. truncata) and 0·36 mg P g(-1) leaf dry mass (A. xanthina). Combining the present results with additional information on P-remobilization efficiency and the capacity to downregulate P-uptake capacity for two other Australian woody species, we found a strong negative correlation between these traits. CONCLUSIONS: It is concluded that species that are adapted to extremely P-impoverished soils, such as many south-western Australian Proteaceae species, have developed extremely high P-resorption efficiencies, but lost their capacity to downregulate their P-uptake mechanisms. The results support the hypothesis that the ability to resorb P from senescing leaves is inversely related to the capacity to downregulate net P uptake, possibly because constitutive synthesis of P transporters is a prerequisite for proficient P remobilization from senescing tissues.


Subject(s)
Acacia/metabolism , Phosphorus/metabolism , Plant Leaves/metabolism , Acacia/growth & development , Adaptation, Physiological , Australia , Cell Death , Culture Media/metabolism , Down-Regulation , Plant Diseases , Plant Leaves/growth & development , Plant Roots/growth & development , Plant Roots/metabolism , Plant Shoots/growth & development , Plant Shoots/metabolism , Proteaceae/growth & development , Proteaceae/metabolism , Soil/chemistry
19.
Pak J Biol Sci ; 16(18): 965-8, 2013 Sep 15.
Article in English | MEDLINE | ID: mdl-24502156

ABSTRACT

In the present study, accumulation of nutrients (N, P, Ca, Mg, and K) in various plant parts of three different dominant trees i.e., Acacia senegal (As), Acacia tortilis (At) and Eucalyptus camaldulensis (Ec) was estimated. Concentration of nutrients was estimated for bole, first order branch, other branch, foliage, seeds, stump root, lateral root and fine roots. The study was carried out in the sand dunes of Western foot hill gaps of Central Aravalli located at a distance of 10 km n-w to Ajmer, a centrally situated city of Rajasthan. The concentration of nutrients was found to be maximum in foliage except for nitrogen which was estimated higher in seeds of A. senegal and A. tortilis. A different pattern was recorded for E. camaldulensis where N, Ca, and Mg were recorded maximum in other branch, while p and K in foliage parts. Result shows the concentration of nutrients in different tree components in the order: foliage>seeds> their branch>first order branch>bole, and in root components: fine root>lateral root>stump root. Total nutrient concentration was found to be maximum in As followed by At and Ec. It is concluded that the foliage component of various trees has maximum nutrient concentrations. There are marked variations in the concentration of different nutrients in each component.


Subject(s)
Acacia/metabolism , Eucalyptus/metabolism , Trees/metabolism , Calcium/metabolism , Ecosystem , Magnesium/metabolism , Nitrogen/metabolism , Phosphorus/metabolism , Plant Leaves , Plant Roots , Potassium/metabolism , Seeds , Soil/chemistry
20.
J Sci Food Agric ; 93(6): 1338-48, 2013 Apr.
Article in English | MEDLINE | ID: mdl-23015416

ABSTRACT

BACKGROUND: This study was conducted to investigate the effects of season, species and polyethylene glycol addition on gas production (GP) and GP kinetic parameters by in vitro incubation (72 h) of five plant species from the subhumid subtropical savannah, South Africa. Plant species used were Acacia natalitia, Acacia nilotica, Dichrostachys cinerea, Scutia myrtina and Chromolaena odorata, leaves of which were harvested during the dry (June/July), early wet (November/December) and late wet (February/March) seasons. An automated in vitro gas production technique was used in two experiments carried out with nine replicates. The first experiment was to test the effect of season and species, while the second experiment tested the effect of tannins using polyethylene glycol 4000 (PEG). The PEG treatment was applied to samples in the early wet and late wet seasons. RESULTS: There were wide variations among seasons and species in crude protein (CP), neutral detergent fibre (NDF), acid detergent fibre (ADF) and condensed tannin (CT). Season and species affected the maximum GP and GP kinetic parameters. During the three seasons, C. odorata had the highest CP (186-226 g kg(-1) dry matter (DM)) and GP (87-104 mL g(-1) DM) and S. myrtina had the lowest CP (105-129 g kg(-1) DM), while A. nilotica, A. natalitia, D. cinerea and S. myrtina had similar and low GP (23-50 mL g(-1) DM). The maximum GP, its degradation rate and GP from the soluble fraction were positively correlated with CP both without and with PEG. With PEG, GP from the soluble fraction was negatively correlated with NDF, ADL and CT; without PEG, it was negatively correlated with CT. CONCLUSION: Both season and species affected the GP parameters. The addition of PEG emphasises that the inhibitory effect of tannins on rumen microbes was greater for all but C. odorata, confirming that these browse species can be used as feed supplements.


Subject(s)
Animal Feed , Digestion , Gases/metabolism , Polyethylene Glycols/pharmacology , Rumen , Seasons , Tannins/pharmacology , Acacia/metabolism , Animal Feed/classification , Animals , Asteraceae/metabolism , Diet , Dietary Fiber/metabolism , Dietary Proteins/metabolism , Dietary Supplements , Digestion/drug effects , Fabaceae/metabolism , Kinetics , Rhamnaceae/metabolism , Rumen/drug effects , Rumen/metabolism , Rumen/microbiology , Ruminants , South Africa , Species Specificity , Tannins/metabolism , Tropical Climate
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