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Complementary Medicines
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1.
Molecules ; 29(4)2024 Feb 18.
Article in English | MEDLINE | ID: mdl-38398646

ABSTRACT

Non-communicable diseases (NCDs) are described as a collection of chronic diseases that do not typically develop from an acute infection, have long-term health effects, and frequently require ongoing care and therapy. These diseases include heart disease, stroke, cancer, chronic lung disease, neurological diseases, osteoporosis, mental health disorders, etc. Known synthetic drugs for the treatment or prevention of NCDs become increasingly dangerous over time and pose high risks due to side effects such as hallucination, heart attack, liver failure, etc. As a result, scientists have had to look for other alternatives that are natural products and that are known to be less detrimental and contain useful bioactive compounds. The increasing understanding of the biological and pharmacological significance of carbohydrates has helped to raise awareness of their importance in living systems and medicine, given they play numerous biological roles. For example, pectin has been identified as a class of secondary metabolites found in medicinal plants that may play a significant role in the treatment and management of a variety of NCDs. Pectin is mainly made of homogalacturonan, which is a linear polymer composed primarily of D-galacturonic acid units (at least 65%) linked in a chain by α-(1,4)-glycosidic linkages. There are also modified pectins or derivatives that improve pectin's bioavailability. Pectin is found in the cell walls of higher plants (pteridophytes, angiosperms, and gymnosperms), particularly in the middle lamella of the plant material. Citrus pectin is used in various industries. This article compiles information that has been available for years about the therapeutic importance of pectin in chronic diseases, different modes of pectin extraction, the chemistry of pectin, and the potency of pectin and its derivatives.


Subject(s)
Ferns , Magnoliopsida , Humans , Pectins/chemistry , Magnoliopsida/metabolism , Glycosides , Chronic Disease
2.
J Ethnopharmacol ; 324: 117707, 2024 Apr 24.
Article in English | MEDLINE | ID: mdl-38232858

ABSTRACT

ETHNOPHARMACOLOGICAL RELEVANCE: The plants of the genus Casimirella ampla (Miers) (C. ampla) are extensively used in folk medicine. For a long time, rural communities have been using extracts from its roots for food and therapeutic purposes. The extract is rich in diterpenoid annonalide (Annona), which has antiophidic, anti-inflammatory and antinociceptive properties. Inflammation is the body's primary defense mechanism against cell damage and invasion by pathogens, which can trigger acute and chronic inflammatory processes. The first line of treatment for this condition consists of the use of non-steroidal anti-inflammatory drugs, but these have numerous associated collateral damages, based on scientific knowledge about diterpenoids from C. ampla, as well as their already reported antinociceptive and anti-inflammatory properties. AIMS OF THE STUDY: Evaluate the effect of Annona in classic models of inflammation and pain. MATERIALS AND METHODS: Animals were pretreated with Annona (0.1, 1.0 and 10 mg/kg), or Tween 80 (2%), or indomethacin (Indo) (10 mg/kg) orally in the paw edema tests induced by carrageenan (Cg), serotonin (5-HT), histamine, bradykinin, 48/80 and, prostaglandin E2 (PGE2), evaluating microscopic lesion scores, migration of leukocytes to the peritoneal cavity, concentration of myeloperoxide (MPO), malonyldialdehyde (MDA) and glutathione (GSH), abdominal contortion test by acetic acid and formalin test. RESULTS: Treatment with Annona compound at a dose of 0.1 mg/kg was more effective in reducing inflammatory, oxidant and nociceptive parameters, as it reduced paw edema induced by carrageenan, through different mediators and migration of inflammatory cells. Furthermore, it worked by reducing the concentration of MPO, MDA, preserving GSH levels and reducing nociception caused by formalin and acetic acid.


Subject(s)
Analgesics , Magnoliopsida , Animals , Carrageenan , Analgesics/adverse effects , Plant Extracts/adverse effects , Anti-Inflammatory Agents/adverse effects , Inflammation/drug therapy , Glutathione/metabolism , Magnoliopsida/metabolism , Acetates , Edema/chemically induced , Edema/drug therapy , Edema/metabolism
3.
Ann Bot ; 132(7): 1205-1218, 2023 Dec 30.
Article in English | MEDLINE | ID: mdl-37864498

ABSTRACT

BACKGROUND AND AIMS: Tropaeolaceae (Brassicales) comprise ~100 species native to South and Central America. Tropaeolaceae flowers have a nectar spur, formed by a late expansion and evagination of the fused proximal region of the perianth (i.e. the floral tube). This spur is formed in the domain of the tube oriented towards the inflorescence axis, which corresponds to the adaxial floral region. However, little is known about the molecular mechanisms responsible for the evolution of spurs in Tropaeolaceae. METHODS: In this study, we examined the spatio-temporal expression of genes putatively responsible for differential patterns of cell division between the adaxial and abaxial floral regions in Tropaeolaceae. These genes include previously identified TCP and KNOX transcription factors and the cell division marker HISTONE H4 (HIS4). KEY RESULTS: We found a TCP4 homologue concomitantly expressed with spur initiation and elaboration. Tropaeolaceae possess two TCP4-like (TCP4L) copies, as a result of a Tropaeolaceae-specific duplication. The two copies (TCP4L1 and TCP4L2) in Tropaeolum longifolium show overlapping expression in the epidermis of reproductive apices (inflorescence meristems) and young floral buds, but only TlTCP4L2 shows differential expression in the floral tube at early stages of spur formation, restricted to the adaxial region. This adaxial expression of TlTCP4L2 overlaps with the expression of TlHIS4. Later in development, only TlTCP4L2 is expressed in the nectariferous tissue of the spur. CONCLUSIONS: Based on these results, we hypothesize that Tropaeolaceae TCP4L genes had a plesiomorphic role in epidermal development and that, after gene duplication, TCP4L2 acquired a new function in spur initiation and elaboration. To better understand spur evolution in Tropaeolaceae, it is critical to expand developmental genetic studies to their sister group, the Akaniaceae, which possess simultaneously an independent duplication of TCP4L genes and a spurless floral tube.


Subject(s)
Magnoliopsida , Tropaeolaceae , Tropaeolum , Plant Nectar/metabolism , Tropaeolum/metabolism , Flowers , Magnoliopsida/metabolism , Gene Expression Regulation, Plant
4.
Oxid Med Cell Longev ; 2022: 9366223, 2022.
Article in English | MEDLINE | ID: mdl-35222807

ABSTRACT

Present study established the biological potential of Schweinfurthia papilionacea, Tricholepis glaberrima and Viola stocksii extracts for their potential applications in drug formulations. Initially, FTIR was performed to ascertain functional groups and then plant extracts were prepared using five solvents depending on the polarity. Total phenolic contents were observed in the range of 36.36 ± 1.08 mg GAE/g to 95.55 ± 2.46 mg GAE/g while flavonoid contents were found in the range of 10.51 ± 0.25 mg QE/g to 22.17 ± 1.79 mg QE/g. Antioxidant activity was determined using TRP, CUPRAC, TAC and DPPH assays and was recorded highest in S. papilionacea followed by T. glaberrima extracts. TPC and TFC were found to be strongly correlated with TRP (r > 0.50), CUPRAC (r > 0.53) and DPPH (r = 0.31 and 0.72) assay while weakly correlated with TAC (r = 0.08 and 0.03) as determined by Pearson correlation analysis. Anticancer activity showed that S. papilionacea chloroform extracts possess highest cell viability (85.04 ± 4.24%) against HepG2 cell lines while T. glaberrima chloroform extracts exhibited highest activity (82.80 ± 2.68%) against HT144 cell lines. Afterwards, highest PXR activation was observed in T. glaberrima (3.49 ± 0.34 µg/mL fold) at 60 µg/mL and was correlated with increase in CYP3A4 activity (15.0 ± 3.00 µg/mL IC50 value). Furthermore, antimalarial activity revealed >47600 IC50 value against P. falciparum D6 and P. falciparum W2 and antimicrobial assay indicated highest activity (32 ± 2.80 mm) in S. papilionacea against C. neoformans. At the end, GC-MS analysis of n-hexane plant extracts showed 99.104% of total identified compounds in T. glaberrima and 94.31% in V. stocksii. In conclusion, present study provides insight about the different biological potentials of S. papilionacea and T. glaberrima extracts that rationalize the applications of these extracts in functional foods and herbal drugs for the management of oxidative-stress related diseases, antimicrobial infections and liver and skin cancer.


Subject(s)
Antineoplastic Agents/analysis , Antioxidants/analysis , Cytochrome P-450 CYP3A/metabolism , Magnoliopsida/chemistry , Pregnane X Receptor/metabolism , Anti-Infective Agents/analysis , Anti-Infective Agents/pharmacology , Antineoplastic Agents/pharmacology , Bacteria/drug effects , Cell Line, Tumor , Cell Survival/drug effects , Flavonoids/analysis , Fungi/drug effects , Humans , Magnoliopsida/classification , Magnoliopsida/metabolism , Metabolomics , Phenols/analysis , Plant Extracts/chemistry , Plant Extracts/metabolism , Plant Extracts/pharmacology , Spectroscopy, Fourier Transform Infrared
5.
Proc Natl Acad Sci U S A ; 119(5)2022 02 01.
Article in English | MEDLINE | ID: mdl-35074876

ABSTRACT

Nearly 90% of flowering plants depend on animals for reproduction. One of the main rewards plants offer to pollinators for visitation is nectar. Nesocodon mauritianus (Campanulaceae) produces a blood-red nectar that has been proposed to serve as a visual attractant for pollinator visitation. Here, we show that the nectar's red color is derived from a previously undescribed alkaloid termed nesocodin. The first nectar produced is acidic and pale yellow in color, but slowly becomes alkaline before taking on its characteristic red color. Three enzymes secreted into the nectar are either necessary or sufficient for pigment production, including a carbonic anhydrase that increases nectar pH, an aryl-alcohol oxidase that produces a pigment precursor, and a ferritin-like catalase that protects the pigment from degradation by hydrogen peroxide. Our findings demonstrate how these three enzymatic activities allow for the condensation of sinapaldehyde and proline to form a pigment with a stable imine bond. We subsequently verified that synthetic nesocodin is indeed attractive to Phelsuma geckos, the most likely pollinators of Nesocodon We also identify nesocodin in the red nectar of the distantly related and hummingbird-visited Jaltomata herrerae and provide molecular evidence for convergent evolution of this trait. This work cumulatively identifies a convergently evolved trait in two vertebrate-pollinated species, suggesting that the red pigment is selectively favored and that only a limited number of compounds are likely to underlie this type of adaptation.


Subject(s)
Flowers/metabolism , Magnoliopsida/metabolism , Pigmentation/physiology , Plant Nectar/metabolism , Pollen/metabolism , Adaptation, Physiological/physiology , Animals , Birds/physiology , Lizards/physiology , Pollination/physiology , Reproduction/physiology
6.
Article in English | MEDLINE | ID: mdl-35065386

ABSTRACT

Euryales Semen (ES) is sought-after for thousand years due to its multiple properties, mainly from the two cultivars (i.e. South Gordon Euryale (SE) and North Gordon Euryale (wild type, WT)). Currently, no effective way was established to recognize the two valuable and analogous kernels. We found high analogies of macroscopical traits and discovered WT seed was affected by ambient temperature, showing ostensible significant relationships with latitude and sea-level pressure. LC-MS based untargeted metabolomics helped us identified 177 putative metabolites. Pathway analysis revealed the underlying and vital roles of flavonoids during seeds development. Our results strongly suggested a strong level of similarity of WT from various regions on the strength of metabolic data. A multivariable model containing 51 chemical markers satisfactorily categorized WT and SE. This study obtained could be used to guide the varietal discrimination of ES.


Subject(s)
Magnoliopsida/chemistry , Magnoliopsida/metabolism , Plant Extracts/chemistry , China , Discriminant Analysis , Flavonoids/chemistry , Flavonoids/metabolism , Geography , Mass Spectrometry , Metabolome , Metabolomics , Plant Extracts/metabolism , Quality Control , Seeds/chemistry , Seeds/metabolism
7.
Molecules ; 26(15)2021 Jul 29.
Article in English | MEDLINE | ID: mdl-34361766

ABSTRACT

Hedyosmum racemosum (Ruiz & Pav.) G. is a native species of Ecuador used in traditional medicine for treatment of rheumatism, bronchitis, cold, cough, asthma, bone pain, and stomach pain. In this study, fresh H. racemosum leaves of male and female specimens were collected and subjected to hydrodistillation for the extraction of the essential oil. The chemical composition of male and female essential oil was determined by gas chromatography-gas chromatography equipped with a flame ionization detector and coupled to a mass spectrometer using a non-polar and a polar chromatographic column. The antibacterial activity was assayed against five Gram-positive and two Gram-negative bacteria, and two dermatophytes fungi. The scavenging radical properties of the essential oil were evaluated by DPPH and ABTS assays. The chemical analysis allowed us to identify forty-three compounds that represent more than 98% of the total composition. In the non-polar and polar column, α-phellandrene was the principal constituent in male (28.24 and 25.90%) and female (26.47 and 23.90%) essential oil. Other main compounds were methyl chavicol, germacrene D, methyl eugenol, and α-pinene. Female essential oil presented a strong activity against Klebsiella pneumoniae (ATCC 9997) with an minimum inhibitory concentration (MIC) of 500 µg/mL and a scavenging capacity SC50 of 800 µg/mL.


Subject(s)
Anti-Bacterial Agents/chemistry , Antioxidants/chemistry , Cyclohexane Monoterpenes/chemistry , Magnoliopsida/chemistry , Oils, Volatile/chemistry , Allylbenzene Derivatives/chemistry , Allylbenzene Derivatives/isolation & purification , Anisoles/chemistry , Anisoles/isolation & purification , Anti-Bacterial Agents/isolation & purification , Anti-Bacterial Agents/pharmacology , Antioxidants/isolation & purification , Antioxidants/pharmacology , Arthrodermataceae/drug effects , Arthrodermataceae/growth & development , Benzothiazoles/antagonists & inhibitors , Bicyclic Monoterpenes/chemistry , Bicyclic Monoterpenes/isolation & purification , Biphenyl Compounds/antagonists & inhibitors , Cyclohexane Monoterpenes/isolation & purification , Ecuador , Eugenol/analogs & derivatives , Eugenol/chemistry , Eugenol/isolation & purification , Female , Gram-Negative Bacteria/drug effects , Gram-Negative Bacteria/growth & development , Gram-Positive Bacteria/drug effects , Gram-Positive Bacteria/growth & development , Humans , Magnoliopsida/metabolism , Male , Microbial Sensitivity Tests , Picrates/antagonists & inhibitors , Plant Leaves/chemistry , Plants, Medicinal , Sesquiterpenes, Germacrane/chemistry , Sesquiterpenes, Germacrane/isolation & purification , Sex Factors , Sulfonic Acids/antagonists & inhibitors
8.
Chem Biodivers ; 18(8): e2100299, 2021 Aug.
Article in English | MEDLINE | ID: mdl-34086421

ABSTRACT

The article reports the chemical composition, antioxidant, six key enzymes inhibitory and antimicrobial activities of two solvent extracts (water and methanol) of leaves and stem bark of Uapaca togoensis. For chemical composition, methanol extract of stem bark exhibited significant higher total phenolic (129.86 mg GAE/g) and flavanol (10.44 mg CE/g) contents. Methanol extract of leaves and water extract of stem bark showed high flavonoids (20.94 mg RE/g) and phenolic acid (90.40 mg CAE/g) content, respectively. In addition, HPLC-ESI-TOF-MS analysis revealed that U. togoensis was rich in procyanidins. The methanol and water extracts of stem bark had overall superior antioxidant activity; however, only methanol extract of stem bark showed higher inhibition of cholinesterase (AChE: 2.57 mg GALAE/g; BChE: 4.69 mg GALAE/g), tyrosinase (69.53 mg KAE/g) and elastase (2.73 mmol CE/g). Potent metal chelating ability was showed by water extract of leaves (18.94 mg EDTAE/g), higher inhibition of amylase was detected for water extracts of leaves (0.94 mmol ACAE/g) and stem bark (0.92 mmol ACAE/g). The tested extracts have shown wide-spectrum antibacterial properties and these effects have shown to be more effective against Aspergillus ochraceus, Penicillium funiculosum, Trichoderma viride, Bacillus cereus, Escherichia coli and Pseudomonas aeruginosa. The results revealed that the antioxidant, enzyme inhibitory and antimicrobial activities depended on the extraction solvents and the parts of plant. Bioinformatics analysis on the 17 major compounds showed modulation of pathway associated with cancer. In brief, U. togoensis might be valuable as potential source of natural agents for therapeutic application.


Subject(s)
Biflavonoids/chemistry , Catechin/chemistry , Computational Biology/methods , Enzyme Inhibitors/chemistry , Magnoliopsida/chemistry , Plant Extracts/chemistry , Proanthocyanidins/chemistry , Amylases/antagonists & inhibitors , Amylases/metabolism , Anti-Infective Agents/chemistry , Anti-Infective Agents/isolation & purification , Anti-Infective Agents/pharmacology , Antioxidants/chemistry , Biflavonoids/isolation & purification , Biflavonoids/metabolism , Biflavonoids/pharmacology , Catechin/isolation & purification , Catechin/metabolism , Catechin/pharmacology , Chromatography, High Pressure Liquid , Cluster Analysis , Enzyme Inhibitors/isolation & purification , Enzyme Inhibitors/metabolism , Enzyme Inhibitors/pharmacology , Fungi/drug effects , Gram-Negative Bacteria/drug effects , Gram-Positive Bacteria/drug effects , Magnoliopsida/metabolism , Microbial Sensitivity Tests , Monophenol Monooxygenase/antagonists & inhibitors , Monophenol Monooxygenase/metabolism , Plant Bark/chemistry , Plant Bark/metabolism , Plant Leaves/chemistry , Plant Leaves/metabolism , Proanthocyanidins/isolation & purification , Proanthocyanidins/metabolism , Proanthocyanidins/pharmacology , Spectrometry, Mass, Electrospray Ionization
9.
BMC Genomics ; 22(1): 252, 2021 Apr 09.
Article in English | MEDLINE | ID: mdl-33836656

ABSTRACT

BACKGROUND: Plant transitions to land require robust cell walls for regulatory adaptations and to resist changing environments. Cell walls provide essential plasticity for plant cell division and defense, which are often conferred by the expansin superfamily with cell wall-loosening functions. However, the evolutionary mechanisms of expansin during plant terrestrialization are unclear. RESULTS: Here, we identified 323 expansin proteins in 12 genomes from algae to angiosperms. Phylogenetic evolutionary, structural, motif gain and loss and Ka/Ks analyses indicated that highly conserved expansin proteins were already present in algae and expanded and purified after plant terrestrialization. We found that the expansion of the FtEXPA subfamily was caused by duplication events and that the functions of certain duplicated genes may have differentiated. More importantly, we generated space-time expression profiles and finally identified five differentially expressed FtEXPs in both large and small fruit Tartary buckwheat that may regulate fruit size by responding to indoleacetic acid. CONCLUSIONS: A total of 323 expansin proteins from 12 representative plants were identified in our study during terrestrialization, and the expansin family that originated from algae expanded rapidly after the plants landed. The EXPA subfamily has more members and conservative evolution in angiosperms. FtEXPA1, FtEXPA11, FtEXPA12, FtEXPA19 and FtEXPA24 can respond to indole-3-acetic acid (IAA) signals and regulate fruit development. Our study provides a blueprint for improving the agronomic traits of Tartary buckwheat and a reference for defining the evolutionary history of the expansin family during plant transitions to land.


Subject(s)
Fagopyrum , Magnoliopsida , Fagopyrum/metabolism , Fruit/genetics , Fruit/metabolism , Gene Expression Regulation, Plant , Magnoliopsida/metabolism , Phylogeny , Plant Proteins/genetics , Plant Proteins/metabolism
10.
Food Chem ; 353: 129435, 2021 Aug 15.
Article in English | MEDLINE | ID: mdl-33714113

ABSTRACT

An anthocyanin-rich extract was obtained from Nitraria tangutorum Bobr. fruit, namely ANF, and its composition, antioxidant and neuroprotective effects were studied. Nine anthocyanins were identified from the ANF using UPLC-Triple-TOF/MS analysis, and cyanidin-3-[2''-(6'''-coumaroyl)-glucosyl]-glucoside (C3G) is the most abundant anthocyanin (87.06%). ANF exhibited high ferric reducing antioxidant power (FRAP) and ABTS radical scavenging activity. The online HPLC-DPPH screening revealed that C3G contributed the highest antioxidant capacity. ANF showed potential neuroprotective effects by relieving d-Galactose-induced memory deficits, reducing overexpression of receptor for advanced glycation end products (RAGE) and amyloid-beta42 (Aß42) in the hippocampus of rats. Besides, ANF could inhibit oxidative stress by reducing the levels of reactive oxygen species (ROS) and malondialdehyde (MDA) in the hippocampus, while elevating amounts of total superoxide dismutase (T-SOD) and glutathione (GSH) in the serum of rats. Thus, ANF has great potential in the development of food and health products related to antioxidant and neuroprotective effects.


Subject(s)
Anthocyanins/analysis , Antioxidants/chemistry , Chromatography, High Pressure Liquid , Magnoliopsida/chemistry , Neuroprotective Agents/analysis , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization , Amyloid beta-Peptides/genetics , Amyloid beta-Peptides/metabolism , Animals , Anthocyanins/chemistry , Anthocyanins/isolation & purification , Anthocyanins/pharmacology , Female , Fruit/chemistry , Fruit/metabolism , Hippocampus/drug effects , Hippocampus/metabolism , Magnoliopsida/metabolism , Malondialdehyde/metabolism , Neuroprotective Agents/chemistry , Neuroprotective Agents/isolation & purification , Neuroprotective Agents/pharmacology , Peptide Fragments/genetics , Peptide Fragments/metabolism , Plant Extracts/chemistry , Rats , Rats, Sprague-Dawley , Reactive Oxygen Species/metabolism , Receptor for Advanced Glycation End Products/genetics , Receptor for Advanced Glycation End Products/metabolism , Superoxide Dismutase/metabolism
11.
J Plant Physiol ; 258-259: 153391, 2021.
Article in English | MEDLINE | ID: mdl-33647786

ABSTRACT

The male gametophyte of angiosperms has long been recognized as an ideal system for the study of the molecular mechanisms regulating cell fate determination. Recent findings on histone variants in two cell lineages, vegetative-cell-derived small interfering RNA and transposable element expression provide new power for relevant investigations.


Subject(s)
Cell Communication/physiology , Epigenesis, Genetic/physiology , Magnoliopsida/growth & development , Pollen/growth & development , Magnoliopsida/cytology , Magnoliopsida/metabolism , Pollen/cytology , Pollen/metabolism
12.
J Plant Physiol ; 258-259: 153365, 2021.
Article in English | MEDLINE | ID: mdl-33548696

ABSTRACT

Over 160 years ago, scientists made the first microscopic observations of angiosperm pollen. Unlike in animals, male meiosis in angiosperms produces a haploid microspore that undergoes one asymmetric division to form a vegetative cell and a generative cell. These two cells have distinct fates: the vegetative cell exits the cell cycle and elongates to form a tip-growing pollen tube; the generative cell divides once more in the pollen grain or within the growing pollen tube to form a pair of sperm cells. The concept that male germ cells are less active than the vegetative cell came from biochemical analyses and pollen structure anatomy early in the last century and is supported by the pollen transcriptome data of the last decade. However, the mechanism of how and when the transcriptional repression in male germ cells occurs is still not fully understood. In this review, we provide a brief account of the cytological and metabolic differentiation between the vegetative cell and male germ cells, with emphasis on the role of temporary callose walls, dynamic nuclear pore density, transcription repression, and histone variants. We further discuss the intercellular movement of small interfering RNA (siRNA) derived from transposable elements (TEs) and reexamine the function of TE expression in male germ cells.


Subject(s)
Magnoliopsida/growth & development , Pollen/growth & development , Magnoliopsida/cytology , Magnoliopsida/metabolism , Pollen/cytology , Pollen/metabolism
13.
Proc Natl Acad Sci U S A ; 117(51): 32757-32763, 2020 12 22.
Article in English | MEDLINE | ID: mdl-33288691

ABSTRACT

After eukaryotic fertilization, gamete nuclei migrate to fuse parental genomes in order to initiate development of the next generation. In most animals, microtubules control female and male pronuclear migration in the zygote. Flowering plants, on the other hand, have evolved actin filament (F-actin)-based sperm nuclear migration systems for karyogamy. Flowering plants have also evolved a unique double-fertilization process: two female gametophytic cells, the egg and central cells, are each fertilized by a sperm cell. The molecular and cellular mechanisms of how flowering plants utilize and control F-actin for double-fertilization events are largely unknown. Using confocal microscopy live-cell imaging with a combination of pharmacological and genetic approaches, we identified factors involved in F-actin dynamics and sperm nuclear migration in Arabidopsis thaliana (Arabidopsis) and Nicotiana tabacum (tobacco). We demonstrate that the F-actin regulator, SCAR2, but not the ARP2/3 protein complex, controls the coordinated active F-actin movement. These results imply that an ARP2/3-independent WAVE/SCAR-signaling pathway regulates F-actin dynamics in female gametophytic cells for fertilization. We also identify that the class XI myosin XI-G controls active F-actin movement in the Arabidopsis central cell. XI-G is not a simple transporter, moving cargos along F-actin, but can generate forces that control the dynamic movement of F-actin for fertilization. Our results provide insights into the mechanisms that control gamete nuclear migration and reveal regulatory pathways for dynamic F-actin movement in flowering plants.


Subject(s)
Actin-Related Protein 2-3 Complex/metabolism , Arabidopsis Proteins/metabolism , Arabidopsis/metabolism , Myosins/metabolism , Nicotiana/metabolism , Actins/metabolism , Arabidopsis/genetics , Arabidopsis Proteins/genetics , Cell Nucleus/metabolism , Green Fluorescent Proteins/genetics , Green Fluorescent Proteins/metabolism , Magnoliopsida/metabolism , Myosins/genetics , Ovule/metabolism , Plants, Genetically Modified , Pollen/metabolism
14.
Chem Pharm Bull (Tokyo) ; 68(11): 1090-1099, 2020.
Article in English | MEDLINE | ID: mdl-33132376

ABSTRACT

Extensive phytochemical work on the 1-BuOH-soluble fraction of a MeOH extract of the leaves of Symplocos cochinchinensis var. philippinensis resulted in the isolation of 14 new triterpenene saponins, along with four known ones. Their structures were elucidated by comparison of NMR spectroscopic data with related compounds reported in the literature. Three oleanane-type saponins, symplocosins K, M, and P, possessed glucuronic acid as a sugar component, and their carboxyl groups appeared as methyl esters. These are probably formed during extraction and isolation procedures. Symplocosin K (9) showed moderate cytotoxicity toward A549 cells. In addition, all isolated compounds did not show α-glucosidase inhibitory activity.


Subject(s)
Magnoliopsida/chemistry , Saponins/chemistry , Triterpenes/chemistry , A549 Cells , Cell Survival/drug effects , Humans , Magnetic Resonance Spectroscopy , Magnoliopsida/metabolism , Molecular Conformation , Plant Extracts/chemistry , Plant Leaves/chemistry , Plant Leaves/metabolism , Saponins/isolation & purification , Saponins/pharmacology , Triterpenes/isolation & purification , Triterpenes/pharmacology
15.
BMC Plant Biol ; 20(1): 476, 2020 Oct 15.
Article in English | MEDLINE | ID: mdl-33076818

ABSTRACT

BACKGROUND: Sarcandra glabra is an evergreen and traditional Chinese herb with anti-oxidant, anti-bacterial, anti-inflammatory, and anti-tumor effects. Light is one of the most influential factor affecting the growth and quality of herbs. In recent times, the introduction of Light Emission Diode (LED) technology has been widely used for plants in greenhouse. However, the impact of such lights on plant growth and the regulatory mechanism of phenylpropanoid-derived compounds in S. glabra remain unclear. RESULTS: The red LED light (RL) substantially increased the plant height and decreased the stem diameter and leaf area relative to the white LED light (WL), while the blue LED light (BL) significantly reduced the height and leaf area of S. glabra. According to transcriptomic profiling, 861, 378, 47, 10,033, 7917, and 6379 differentially expressed genes (DEGs) were identified among the groups of leaf tissue under BL (BY) vs. leaf tissue under RL (RY), BY vs. leaf tissue under WL (WY), RY vs. WY, root tissue under WL (WG) vs. WY, stem tissue under WL (WJ) vs. WG, and WJ vs. WY, respectively. We identified 46 genes encoding for almost all known enzymes involved in phenylpropanoid biosynthesis, e.g., phenylalanine ammonia lyase (PAL), chalcone synthase (CHS), and flavonol synthase (FLS). We found 53 genes encoding R2R3-MYB proteins and bHLH proteins, respectively, where several were related to flavonoids biosynthesis. A total of 454 metabolites were identified based on metabolomic profiling, of which 44, 87, and 296 compounds were differentially produced in WY vs. RY, WY vs. BY, and WY vs. WG. In BY there was a substantial reduction in the production of esculetin, caffeic acid, isofraxidin, and fraxidin, while the yields of quercitrin and kaempferol were significantly up-regulated. In RY, the contents of cryptochlorogenic acid, cinnamic acid, and kaempferol decreased significantly. Besides, in WG, the production of metabolites (e.g. chlorogenic acid, cryptochlorogenic acid, and scopolin) declined, while their yields increased significantly (e.g. esculetin, fraxetin, isofraxidin, and fraxidin). CONCLUSION: These results provide further insight into the regulatory mechanism of accumulation patterns of phenylpropanoid-derived compounds in S. glabra under various light conditions, allowing optimum breeding conditions to be developed for this plant.


Subject(s)
Magnoliopsida/metabolism , Seedlings/metabolism , Drugs, Chinese Herbal , Genes, Plant , Light , Magnoliopsida/anatomy & histology , Magnoliopsida/growth & development , Magnoliopsida/radiation effects , Metabolomics , Phylogeny , Plant Proteins/metabolism , Seedlings/anatomy & histology , Seedlings/growth & development , Seedlings/radiation effects , Transcription Factors/metabolism , Transcriptome
16.
Sci Rep ; 10(1): 17569, 2020 10 16.
Article in English | MEDLINE | ID: mdl-33067571

ABSTRACT

Silver nanoparticles (AgNPs) are presently the most commonly generated engineered nanomaterials and are found in a wide range of agro-commercial products. The present study was designed to synthesize AgNPs biologically using Ochradenus arabicus leaves and investigate their effect on the morphophysiological properties of Maerua oblongifolia raised in vitro. Physicochemical methods (ultraviolet-visible spectroscopy, Fourier transform infrared spectroscopy, and transmission electron microscopy were performed for characterization and for obtaining microphotographs of the AgNPs. Shoots of M. oblongifolia (2-3 cm) grown in Murashige and Skoog medium supplemented with different concentrations of AgNPs (0, 10, 20, 30, 40, or 50 mg L-1) were used. Following 6 weeks of in vitro shoot regeneration, the shoot number, shoot length, leaf number, fresh weight, dry weight, chlorophyll content, total protein, proline level, and antioxidant enzyme activities of the plants were quantified. We found that 20 mg L-1 AgNPs increased the shoot number, shoot length, fresh weight, dry weight, and chlorophyll content of the plants. The maximum total protein was recorded in plants that were administered the lowest dose of AgNPs (10 mg L-1), while high concentrations of AgNPs (40 and 50 mg L-1) increased the levels of proline and the enzymes superoxide dismutase and catalase. Our results indicate that green-synthesized AgNPs may be of agricultural and medicinal interest owing to their effects on plants in vitro.


Subject(s)
Magnoliopsida/drug effects , Magnoliopsida/metabolism , Metal Nanoparticles , Silver , Antioxidants/analysis , Catalase/analysis , Chlorophyll/analysis , Culture Media , Green Chemistry Technology , In Vitro Techniques , Magnoliopsida/physiology , Microscopy, Electron , Organ Size , Plant Leaves/metabolism , Plant Proteins/analysis , Plant Shoots/chemistry , Plant Shoots/drug effects , Plant Shoots/ultrastructure , Proline/analysis , Spectrophotometry, Ultraviolet , Spectroscopy, Fourier Transform Infrared , Superoxide Dismutase/analysis
17.
Curr Drug Metab ; 21(14): 1079-1090, 2020.
Article in English | MEDLINE | ID: mdl-32723267

ABSTRACT

Natural products, an infinite reserve of bioactive molecules, will continue to serve humans as an important source of therapeutic agents. Germacrone is a bioactive natural compound found in the traditional medicinal plants of family Zingiberaceae. This multifaceted chemical entity has become a point of focus during recent years due to its numerous pharmacological applications, e.g., anticancer, anti-inflammatory, antiviral, antioxidant, anti-adipogenic, anti-androgenic, antimicrobial, insecticidal, and neuroprotective. Germacrone is an effective inducer of cell cycle arrest and apoptosis in various cancers (breast, brain, liver, skin, prostate, gastric, and esophageal) via modulation of different cell signaling molecules and pathways involved in cancer proliferation. This is the first report highlighting the wide spectrum of pharmacological activities exhibited by germacrone. The reported data collected from various shreds of evidences recommend that this multifaceted compound could serve as a potential drug candidate in the near future.


Subject(s)
Anti-Infective Agents/therapeutic use , Antineoplastic Agents/therapeutic use , Metabolic Diseases/drug therapy , Neoplasms/drug therapy , Sesquiterpenes, Germacrane/therapeutic use , Virus Diseases/drug therapy , Animals , Anti-Infective Agents/pharmacokinetics , Antineoplastic Agents/pharmacokinetics , Drug Synergism , Humans , Magnoliopsida/metabolism , Secondary Metabolism , Sesquiterpenes, Germacrane/pharmacokinetics
18.
Curr Drug Metab ; 21(7): 493-511, 2020.
Article in English | MEDLINE | ID: mdl-32407267

ABSTRACT

Diabetes mellitus (DM) is a chronic, polygenic and non-infectious group of diseases that occurs due to insulin resistance or its low production by the pancreas and is also associated with lifelong damage, dysfunction and collapse of various organs. Management of diabetes is quite complex having many bodily and emotional complications and warrants efficient measures for prevention and control of the same. As per the estimates of the current and future diabetes prevalence, around 425 million people were diabetic in 2017 which is anticipated to rise up to 629 million by 2045. Various studies have vaguely proven the fact that several vitamins, minerals, botanicals and secondary metabolites demonstrate hypoglycemic activity in vivo as well as in vitro. Flavonoids, anthocyanin, catechin, lipoic acid, coumarin metabolites, etc. derived from herbs were found to elicit a significant influence on diabetes. However, the prescription of herbal compounds depend on various factors, including the degree of diabetes progression, comorbidities, feasibility, economics as well as their ADR profile. For instance, cinnamon could be a more favorable choice for diabetic hypertensive patients. Diabecon®, Glyoherb® and Diabeta Plus® are some of the herbal products that had been launched in the market for the favorable or adjuvant therapy of diabetes. Moreover, Aloe vera leaf gel extract demonstrates significant activity in diabetes. The goal of this review was to inscribe various classes of secondary metabolites, in particular those obtained from plants, and their role in the treatment of DM. Recent advancements in recognizing the markers which can be employed for identifying altered metabolic pathways, biomarker discovery, limitations, metabolic markers of drug potency and off-label effects are also reviewed.


Subject(s)
Biological Products/therapeutic use , Diabetes Mellitus, Type 2/drug therapy , Hypoglycemic Agents/therapeutic use , Phytochemicals/therapeutic use , Phytotherapy , Animals , Bacteria/metabolism , Fungi/metabolism , Humans , Magnoliopsida/metabolism , Metabolome , Secondary Metabolism
19.
Plant Biol (Stuttg) ; 22(4): 615-622, 2020 Jul.
Article in English | MEDLINE | ID: mdl-32160384

ABSTRACT

Phosphorus (P) is an important nutrient that can restrict plant growth. However, the influence of P deficiency on elemental homeostasis and application of the growth rate hypothesis in higher plants remain to be assessed. Two shrubs, Zygophyllum xanthoxylum and Nitraria tangutorum, were used as experiment material and subjected to five P addition treatments: 0, 17.5, 35.0, 52.5 and 70.0 mg P·kg-1 soil. The biomass and relative growth rate of Z. xanthoxylum did not change with altered P supply. There was no significant difference in P concentration among the treatments for Z. xanthoxylum, but N. tangutorum showed an upward trend. The P stoichiometric homeostasis of Z. xanthoxylum was higher than that of N. tangutorum. For Z. xanthoxylum, available P in the rhizosphere improved significantly under extreme P deficiency conditions, and P concentrations in all treatments were lower than in N. tangutorum, showing that Z. xanthoxylum had stronger P absorption and P utilization capacity. No relationships between growth rate and C:N:P ratios were found in Z. xanthoxylum. The strong P efficiency, and high and stable dry matter accumulation, are likely contributors in maintaining stoichiometric homeostasis. In addition, the relatively high biomass accumulation and high P utilization efficiency for Z. xanthoxylum does not support the growth rate hypothesis for this species.


Subject(s)
Magnoliopsida , Phosphorus , Zygophyllum , Biomass , Magnoliopsida/metabolism , Phosphorus/metabolism , Rhizosphere , Soil/chemistry , Zygophyllum/growth & development , Zygophyllum/metabolism
20.
Sci Rep ; 10(1): 3445, 2020 02 26.
Article in English | MEDLINE | ID: mdl-32103090

ABSTRACT

In recent years, there is a growing interest towards the green synthesis of metal nanoparticles, particularly from plants; however, yet no published study on the synthesis of ZnO.NPs using the Deverra tortuosa extract. Through this study, zinc oxide nanoparticles (ZnO.NPs) have been synthesized based on using the environmentally benign extract of the aerial parts of D. tortuosa as a reducing and capping agent. ZnO.NPs synthesis was confirmed using UV-Visible (UV-Vis) spectroscopy, Fourier Transform Infrared Spectroscopy (FTIR), X-ray Diffraction (XRD) and High Resolution-Transmission Electron Microscope (HR-TEM). The qualitative and quantitative analyses of plant extract were done. The potential anticancer activity was in vitro investigated against two cancer cell lines (human colon adenocarcinoma "Caco-2" and human lung adenocarcinoma "A549") compared to their activities on the human lung fibroblast cell line (WI38) using the MTT assay. Both the aqueous extract and ZnO.NPs showed a remarkable selective cytotoxicity against the two examined cancer cell lines.


Subject(s)
Antineoplastic Agents/chemistry , Magnoliopsida/chemistry , Metal Nanoparticles/toxicity , Plant Extracts/chemistry , Zinc Oxide/chemistry , Antineoplastic Agents/pharmacology , Cell Line, Tumor , Cell Survival/drug effects , Chromatography, High Pressure Liquid , Green Chemistry Technology , Humans , Magnoliopsida/metabolism , Metal Nanoparticles/chemistry , Phenols/chemistry , Phenols/pharmacology , Plant Components, Aerial/chemistry , Plant Components, Aerial/metabolism
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