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1.
Sci Rep ; 14(1): 17315, 2024 Jul 27.
Article in English | MEDLINE | ID: mdl-39068265

ABSTRACT

Fruits play an important role in human life on our planet, since they supply a variety of essential services. One of the paramount crops in Pakistan is Citrus reticulata (Kinnow), which plays a vital role in the country's economy. The citrus crops are confronted with various challenges such as fungi, bacteria, nematodes, and viruses, all of which have adverse effects on the quality and yield of the fruits. Citrus canker, in particular, stands as the most fatal disease, affecting numerous citrus species worldwide, inflicting devastating consequences. The objective of this study was to evaluate the impact of citrus canker on the morphology, physiology of leaves, and the quality of citrus fruits. The research was conducted in four major citrus-producing tehsils of the Sargodha district. The study found significant differences in morphological and physiological traits between healthy fruits and those infected with citrus canker. Healthy fruits exhibited higher values in fruit weight (FW) of 149.02 g, peel thickness (PT) of 3.76 g, rag weight (RW) of 35.95 g, leaf area (LA) of 22.49 cm2, and juice weight compared to the citrus canker-infected fruits. The significant variations in fruit weight, juice weight, chlorophyll content, vitamin C content were present between healthy and diseased fruits and leaves. A biochemical study revealed that healthy fruits had greater levels of total soluble solids (TSS), TSS-acid ratio, vitamin C, and reducing power (RP), but citrus canker-infected fruits had a higher acidity percentage. The significant decreases in important morphological and physicochemical characteristics, emphasizing the necessity for immediate disease control techniques to safeguard the citrus sector and maintain food security.


Subject(s)
Citrus , Plant Diseases , Plant Leaves , Xanthomonas axonopodis , Citrus/microbiology , Plant Diseases/microbiology , Xanthomonas axonopodis/pathogenicity , Plant Leaves/microbiology , Fruit/microbiology , Pakistan
2.
Compr Rev Food Sci Food Saf ; 23(4): e13417, 2024 Jul.
Article in English | MEDLINE | ID: mdl-39072989

ABSTRACT

Strawberries spoil rapidly after harvest due to factors such as the ripening process, weight loss, and, most importantly, microbial contamination. Traditionally, several methods are used to preserve strawberries after harvest and extend their shelf life, including thermal, plasma, radiation, chemical, and biological treatments. Although these methods are effective, they are a concern from the perspective of safety and consumer acceptance of the treated food. To address these issues, more advanced environment-friendly technologies have been developed over the past decades, including modified and controlled atmosphere packaging, active biopolymer-based packaging, or edible coating formulations. This method can not only significantly extend the shelf life of fruit but also solve safety concerns. Some studies have shown that combining two or more of these technologies can significantly extend the shelf life of strawberries, which could significantly contribute to expanding the global supply chain for delicious fruit. Despite the large number of studies underway in this field of research, no systematic review has been published discussing these advances. This review aims to cover important information about postharvest physiology, decay factors, and preservation methods of strawberry fruits. It is a pioneering work that integrates, relates, and discusses all information on the postharvest fate and handling of strawberries in one place. Additionally, commercially used techniques were discussed to provide insight into current developments in strawberry preservation and suggest future research directions in this field of study. This review aims to enrich the knowledge of academic and industrial researchers, scientists, and students on trends and developments in postharvest preservation and packaging of strawberry fruits.


Subject(s)
Food Packaging , Food Preservation , Fragaria , Fruit , Fragaria/microbiology , Fragaria/growth & development , Food Preservation/methods , Food Packaging/methods , Fruit/microbiology , Food Storage/methods
3.
Food Res Int ; 191: 114720, 2024 Sep.
Article in English | MEDLINE | ID: mdl-39059916

ABSTRACT

Mangosteen (Garcinia mangostana L.) is a tasty, polyphenol-rich tropical fruit. The edible part is highly appreciated by its aroma, taste and texture. The non-edible part, rich in polyphenols, has been traditionally used in Thai medicine. In this work, flavonoids and phenolic acid/derivatives were identified in mangosteen extracts (ME) from edible and non-edible portions. We first studied the effects of MEs on the growth, metabolism, antioxidant capacity, biofilm formation and antimicrobial capacity of eight bifidobacteria and lactobacilli strains from intestinal origin and two commercial probiotic strains (BB536 and GG). ME concentrations higher than 10-20 % were inhibitory for all strains. However, ME concentrations of 5 % significantly (P < 0.01) increased all strains antioxidant capacity, reduced biofilm-formation, and enhanced inhibition against Gram-positive pathogens. To apply these knowledge, bifunctional fermented milk products were elaborated with 5 % ME and individual strains, which were selected taking into account their growth with ME, and the widest range of values on antioxidant capacity, biofilm formation and antimicrobial activity (bifidobacteria INIA P2 and INIA P467, lactobacilli INIA P459 and INIA P708, and reference strain GG). Most strains survived well manufacture, refrigerated storage and an in vitro simulation of major conditions encountered in the gastrointestinal tract. As expected, products supplemented with ME showed higher polyphenol content and antioxidant capacity levels than control. After sensory evaluation, products containing strains INIA P2, INIA P708 and GG outstood as best.


Subject(s)
Antioxidants , Biofilms , Cultured Milk Products , Garcinia mangostana , Lactobacillus , Plant Extracts , Plant Extracts/pharmacology , Garcinia mangostana/chemistry , Biofilms/drug effects , Biofilms/growth & development , Antioxidants/pharmacology , Lactobacillus/drug effects , Lactobacillus/metabolism , Cultured Milk Products/microbiology , Bifidobacterium/drug effects , Bifidobacterium/growth & development , Bifidobacterium/metabolism , Probiotics , Flavonoids/pharmacology , Flavonoids/analysis , Humans , Fruit/chemistry , Fruit/microbiology , Fermentation , Hydroxybenzoates/pharmacology , Gastrointestinal Microbiome/drug effects , Polyphenols/pharmacology
4.
Food Res Int ; 191: 114707, 2024 Sep.
Article in English | MEDLINE | ID: mdl-39059958

ABSTRACT

Citri Reticulatae Pericarpium (CRP) is a traditional herbal and food spice, the flavor and active compounds content of Xinhui CRP improves with aging. To investigate the pattern of microbial community succession during the aging of Xinhui CRP and its correlation with changes in flavor compounds, the high-throughput sequencing, HPLC, and GC-IMS were used to analyze the microbial community, flavonoids, and flavor compounds of five different aging years in this study. The results revealed different dominant microbial communities in Xinhui CRP at different aging time, and unclassified Bacteria were the predominant bacterial genus during 10-15 years of aging. As the aging time increases, the abundance of microbial community decreases and gradually stabilizes. At the fungal genus level, Xeromyces (>99 %) were the dominant genus during the 10-15 years aging time and had a significant correlation with polymethoxyflavones (PMFs), and the concentrations of PMFs increased with the progression of aging years. The GC-IMS results revealed distinctive flavor profiles in Xinhui CRP across different aging years, floral and fruity aromas, such as heptanal, 3-methyl-3-butenol, and 1-butanol, among others, with increasing aging years. A comprehensive correlation analysis further elucidates the close relationship between the core microorganism community and flavor formation in Xinhui CRP (p < 0.05). Notably, Pseudomonas and Escherichia Shigella exhibited significant correlations with beta-pinene and alpha-pinene, whereas Aureobasidium and Sarcopodium were associated with nerol and α-phellandrene (p < 0.05). This study provides new ideas for accelerating the good quality and flavor of Xinhui CRP during the aging process from the perspective of key microorganisms.


Subject(s)
Bacteria , Citrus , Microbiota , Citrus/microbiology , Citrus/chemistry , Bacteria/classification , Bacteria/metabolism , Fruit/microbiology , Fruit/chemistry , Flavoring Agents/analysis , Taste , Volatile Organic Compounds/analysis , Flavonoids/analysis , Odorants/analysis , Fungi/classification , Chromatography, High Pressure Liquid , Time Factors , Bicyclic Monoterpenes
5.
Curr Microbiol ; 81(9): 281, 2024 Jul 26.
Article in English | MEDLINE | ID: mdl-39060398

ABSTRACT

Brown rot, caused by Monilinia species, is a destructive disease of pome and stone fruits that can lead to significant losses in production. Disease management is mainly based on fungicide applications during the growing season. Fludioxonil, a "new-generation reduced-risk fungicide", is one of the most important fungicide used. The objectives of the present study were to compare and determine the toxicity of fludioxonil to selected M. laxa, M. fructigena and M. fructicola isolates, to test its effectiveness in detached fruits and to assess its effectiveness under practical control conditions. A total of 27 isolates (10 isolates of M. laxa, 8 of M. fructigena and 9 of M. fructicola) were tested for sensitivity to fludioxonil in vitro. Isolates from each species exhibited a homogeneous response to the fungicide, while differences among the different species were determined. Based on calculated resistance factors (RF), the examined isolates were classified into two categories: sensitive and moderately resistant. In vivo testing of the effectiveness of the label concentration of fludioxonil on detached fruit did not reveal differences between isolates classified into different sensitivity categories; fludioxonil used at the label concentration (0.1%) inhibited decay development 93.5 to 100%, regardless of the isolate category. Field trials revealed the very high efficacy of fludioxonil in preventing brown rot on fruits, ranging from 92.2 to 100 for peach, 90.7 to 97.3 for plum and 84.9 to 91.9% for sour cherry. In conclusion, fludioxonil was highly effective according to in vitro sensitivity tests and when used under practical field conditions for brown rot control.


Subject(s)
Ascomycota , Dioxoles , Fungicides, Industrial , Plant Diseases , Pyrroles , Fungicides, Industrial/pharmacology , Dioxoles/pharmacology , Pyrroles/pharmacology , Plant Diseases/microbiology , Plant Diseases/prevention & control , Ascomycota/drug effects , Fruit/microbiology , Drug Resistance, Fungal
6.
PeerJ ; 12: e17725, 2024.
Article in English | MEDLINE | ID: mdl-39006027

ABSTRACT

Background: Tomato, a fruit with a high vitamin content, is popular for consumption and economically important in Thailand. However, in the past year, the extensive usage of chemicals has significantly decreased tomato yields. Plant Growth-Promoting Rhizobacteria (PGPR) is an alternative that can help improve tomato production system growth and yield quality while using fewer chemicals. The present study aimed to determine whether endophytic actinomycetes promote growth and fruit quality of tomato (Solanum lycopersicum). Methods: The experiment was conducted in a net-houses at the Center for Agricultural Resource System Research, Faculty of Agriculture, Chiang Mai University, Chiang Mai province, Thailand. The randomized completely block design (RCBD) was carried out for four treatments with three replications, which was control, inoculation with TGsR-03-04, TGsL-02-05 and TGsR-03-04 with TGsL-02-05 in tomato plant. Isolated Actinomycetes spp. of each treatment was then inoculated into the root zone of tomato seedlings and analyzed by Scanning Electron Microscopy (SEM). The height of tomato plants was measured at 14, 28, 56, and 112 days after transplanting. Final yield and yield quality of tomato was assessed at the maturity phase. Results: The SEM result illustrated that the roots of tomato seedlings from all treatments were colonized by endophytic actinomycetes species. This contributed to a significant increase in plant height at 14 days after transplanting (DAT), as found in the TGsR-03-04 treatment (19.40 cm) compared to the control. Besides, all inoculated treatments enhanced tomato yield and yield quality. The highest weight per fruit (47.38 g), fruit length (52.37 mm), vitamin C content (23.30 mg 100 g-1), and lycopene content (145.92 µg g-1) were obtained by inoculation with TGsR-03-04. Moreover, the highest yield (1.47 kg plant-1) was obtained by inoculation with TGsL-02-05. There was no statistically significant difference in the number of fruits per plant, fruit width, brix, and antioxidant activity when various inoculations of endophytic actinomycetes were applied. Therefore, the use of endophytic actinomycetes in tomato cultivation may be an alternative to increase tomato yield and yield quality.


Subject(s)
Actinobacteria , Fruit , Solanum lycopersicum , Solanum lycopersicum/microbiology , Solanum lycopersicum/growth & development , Fruit/microbiology , Fruit/growth & development , Actinobacteria/metabolism , Thailand , Endophytes/physiology
7.
Food Microbiol ; 123: 104581, 2024 Oct.
Article in English | MEDLINE | ID: mdl-39038887

ABSTRACT

The rot caused by pathogens during the storage of table grapes is an important factor that affects the development of the grape industry and food safety, and it cannot be ignored. The development of innovative methods for pathogen control should be based on a comprehensive understanding of the overall microbial community changes that occur during grape storage. The study aims to investigate the relationship between the native microbiota (including beneficial, pathogenic and spoilage microorganisms) on grape surfaces and the development of disease during grape storage. In this study, the bacteria and fungi present on grape surfaces were analyzed during storage under room temperature conditions using high-throughput sequencing. During the storage of grapes at room temperature, observable diseases and a noticeable decrease in quality were observed at 8 days. Microbial community analysis showed that 4996 bacterial amplicon sequence variants (ASVs) and 488 fungal ASVs were determined. The bacterial richness exhibited an initial increase followed by a subsequent decrease. However, the diversity exhibited a distinct pattern of gradual decrease. The fungal richness and community diversity both exhibit a gradual decrease during the storage of grapes. Fungal ß-diversity analysis showed that despite the absence of rot and the healthy state of grapes on the first and fourth days, the fungal ß-diversity exhibited a significant difference. The analysis of changes in genera abundances suggested that Candidatus Profftella and Aspergillus exhibited dominance in the rotting grape at 16 days, which are the main pathogens that caused disease in the present study. The co-occurrence networks among the microbial showed that the Candidatus proftella genera has a positive correlation with Aspergillus niger, indicating that they work together to cause disease and promote growth in grapes. Predicting the function of bacterial communities found that the microorganisms associated with lipid metabolism at 4 days play an important role in the process of postharvest decay of grapes.


Subject(s)
Bacteria , Food Storage , Fungi , Microbiota , Vitis , Vitis/microbiology , Bacteria/classification , Bacteria/genetics , Bacteria/isolation & purification , Bacteria/growth & development , Fungi/classification , Fungi/genetics , Fungi/isolation & purification , Fungi/growth & development , Fruit/microbiology , Plant Diseases/microbiology , Food Microbiology , High-Throughput Nucleotide Sequencing , Biodiversity
8.
Food Microbiol ; 123: 104582, 2024 Oct.
Article in English | MEDLINE | ID: mdl-39038888

ABSTRACT

One of the best-known Hungarian products on world wine market is Aszú, which belongs to the family of Tokaj wine specialties and is made from aszú berries. An important condition for the formation of aszú berries is the noble rot of technologically mature grapes, which is caused by Botrytis cinerea. At the same time botrytized sweet wines are produced not only in Hungary, but in many locations of wine-producing areas of Europe as well as in certain wine growing regions of other continents. The determination of botrytization is mostly based on sensory evaluations, which is a highly subjective procedure and largely depends on the training and experience of the evaluator. Currently, the classification of aszú berries (class I and class II) is based only on visual inspection and determination of sugar content. Based on these facts the primary goal of our work was to develop a qPCR assay capable for objective rating and classification of aszú berries. The developed qPCR is highly specific and sensitive as can clearly distinguish between B. cinerea and other filamentous fungi and yeast species occur on grapes. Moreover, it is suitable for categorizing berries colonized by B. cinerea to varying degrees. Thus, the developed qPCR method can be a useful technique for classification of the grape berries into four quality groups: healthy, semi-shrivelled, Aszú Class II and Aszú Class I.


Subject(s)
Botrytis , Fruit , Vitis , Wine , Vitis/microbiology , Wine/microbiology , Wine/analysis , Fruit/microbiology , Botrytis/genetics , Botrytis/classification , Botrytis/isolation & purification , Hungary , Real-Time Polymerase Chain Reaction/methods , Plant Diseases/microbiology
9.
Food Microbiol ; 123: 104583, 2024 Oct.
Article in English | MEDLINE | ID: mdl-39038889

ABSTRACT

Gray mold, caused by Botrytis cinerea, is a prevalent postharvest disease of apple that limits their shelf life, resulting in significant economic losses. The use of antagonistic microorganisms has been shown to be an effective approach for managing postharvest diseases of fruit. In the present study, an endophytic yeast strain PGY-2 was isolated from apples and evaluated for its biocontrol efficacy against gray mold and its mechanisms of action. Results indicated that strain PGY-2, identified as Bullera alba, reduced the occurrence of gray mold on apples and significantly inhibited lesion development in pathogen-inoculated wounds. Gray mold control increased with the use of increasing concentrations of PGY-2, with the best disease control observed at 108 cells/mL. Notably, Bullera alba PGY-2 did not inhibit the growth of Botrytis cinerea in vitro indicating that the yeast antagonist did not produce antimicrobial compounds. The rapid colonization and stable population of PGY-2 in apple wounds at 4 °C and 25 °C confirmed its ability to compete with pathogens for nutrients and space. PGY-2 also had a strong ability to form a biofilm and enhanced the activity of multiple defense-related enzymes (POD, PPO, APX, SOD, PAL) in host tissues. Our study is the first time to report the use of Bullera alba PGY-2 as a biocontrol agent for postharvest diseases of apple and provide evidence that Bullera alba PGY-2 represents an endophytic antagonistic yeast with promising biocontrol potential and alternative to the use of synthetic, chemical fungicides for the control of postharvest gray mold in apples.


Subject(s)
Antibiosis , Botrytis , Endophytes , Fruit , Malus , Plant Diseases , Malus/microbiology , Botrytis/growth & development , Botrytis/physiology , Botrytis/drug effects , Plant Diseases/microbiology , Plant Diseases/prevention & control , Endophytes/physiology , Endophytes/isolation & purification , Fruit/microbiology , Yeasts/physiology , Yeasts/isolation & purification , Biofilms/growth & development
10.
Food Microbiol ; 123: 104589, 2024 Oct.
Article in English | MEDLINE | ID: mdl-39038894

ABSTRACT

To further explore strain potential and develop an aromatic kiwifruit wine fermentation technique, the feasibility of simultaneous inoculation by non-Saccharomyces yeast and lactic acid bacteria was investigated. Lacticaseibacillus paracasei, Lactiplantibacillus plantarum, and Limosilactobacillus fermentum, which have robust ß-glucosidase activity as well as good acid and ethanol tolerance, were inoculated for simultaneous fermentation with Zygosaccharomyces rouxii and Meyerozyma guilliermondii, respectively. Subsequently, the chemical compositions and sensory characteristics of the wines were comprehensively evaluated. The results showed that the majority of the simultaneous protocols effectively improved the quality of kiwifruit wines, increasing the content of polyphenols and volatile compounds, thereby enhancing sensory acceptability compared to the fermentation protocols inoculated with non-Saccharomyces yeast individually. Particularly, the collaboration between Lacp. plantarum and Z. rouxii significantly increased the diversity and content of esters, alcohols, and ketones, intensifying floral and seeded fruit odors, and achieving the highest overall acceptability. This study highlights the potential significance of simultaneous inoculation in kiwifruit wine production.


Subject(s)
Actinidia , Fermentation , Fruit , Odorants , Taste , Volatile Organic Compounds , Wine , Actinidia/microbiology , Wine/microbiology , Wine/analysis , Fruit/microbiology , Volatile Organic Compounds/metabolism , Volatile Organic Compounds/analysis , Odorants/analysis , Humans , Polyphenols/metabolism , Polyphenols/analysis , Lactobacillales/metabolism , Yeasts/metabolism , Zygosaccharomyces/metabolism , Zygosaccharomyces/growth & development
11.
Food Microbiol ; 123: 104590, 2024 Oct.
Article in English | MEDLINE | ID: mdl-39038895

ABSTRACT

Apple ring rot, one of the most common apple postharvest diseases during storage, is caused by Botryosphaeria dothidea. Presently, the disease management is primarily dependent on chemical fungicide application. Here we demonstrated an endophyte bacterium Bacillus tequilensis QNF2, isolated from Chinese leek (Allium tuberosum) roots considerably suppressed B. dothidea mycelial growth, with the highest suppression of 73.56 % and 99.5 % in the PDA and PDB medium, respectively in vitro confront experiments. In in vivo experiments, B. tequilensis QNF2 exhibited a control efficacy of 88.52 % and 100 % on ring rot disease on postharvest apple fruits inoculated with B. dothidea disc and dipped into B. dothidea culture, respectively. In addition, B. tequilensis QNF2 volatile organic compounds (VOCs) also manifested markedly inhibition against B. dothidea mycelial growth and the ring rot on postharvest apple fruits. Moreover, B. tequilensis QNF2 severely damaged the mycelial morphology of B. dothidea. Finally, B. tequilensis QNF2 significantly repressed the expression of six pathogenicity-related genes, such as adh, aldh, aldh3, galm, pdc1, pdc2, involved in glycolysis/gluconeogenesis of B. dothidea. The findings of the study proved that B. tequilensis QNF2 was a promising alternative for controlling apple ring rot of postharvest apple fruit.


Subject(s)
Ascomycota , Bacillus , Endophytes , Fruit , Malus , Plant Diseases , Malus/microbiology , Plant Diseases/microbiology , Ascomycota/growth & development , Ascomycota/drug effects , Ascomycota/genetics , Ascomycota/physiology , Bacillus/genetics , Bacillus/physiology , Bacillus/isolation & purification , Endophytes/genetics , Endophytes/metabolism , Endophytes/isolation & purification , Endophytes/classification , Endophytes/physiology , Fruit/microbiology , Volatile Organic Compounds/pharmacology , Volatile Organic Compounds/metabolism , Volatile Organic Compounds/analysis , Antibiosis , Mycelium/growth & development , Mycelium/drug effects
12.
Food Microbiol ; 123: 104596, 2024 Oct.
Article in English | MEDLINE | ID: mdl-39038898

ABSTRACT

This study evaluated the use of acerola (Malpighia glabra L., CACE), cashew (Anacardium occidentale L., CCAS), and guava (Psidium guayaba L., CGUA) fruit processing coproducts as substrates to promote the growth, metabolite production, and maintenance of the viability/metabolic activity of the probiotics Lactobacillus acidophilus LA-05 and Lacticaseibacillus paracasei L-10 during cultivation, freeze-drying, storage, and exposure to simulated gastrointestinal digestion. Probiotic lactobacilli presented high viable counts (≥8.8 log colony-forming units (CFU)/mL) and a short lag phase during 24 h of cultivation in CACE, CCAS, and CGUA. Cultivation of probiotic lactobacilli in fruit coproducts promoted sugar consumption, medium acidification, and production of organic acids over time, besides increasing the of several phenolic compounds and antioxidant activity. Probiotic lactobacilli cultivated in fruit coproducts had increased survival percentages after freeze-drying and during 120 days of refrigerated storage. Moreover, probiotic lactobacilli cultivated and freeze-dried in fruit coproducts had larger subpopulations of live and metabolically active cells when exposed to simulated gastrointestinal digestion. The results showed that fruit coproducts not only improved the growth and helped to maintain the viability and metabolic activity of probiotic strains but also enriched the final fermented products with bioactive compounds, being an innovative circular strategy for producing high-quality probiotic cultures.


Subject(s)
Fruit , Probiotics , Probiotics/metabolism , Fruit/microbiology , Lactobacillus acidophilus/growth & development , Lactobacillus acidophilus/metabolism , Lactobacillus acidophilus/physiology , Anacardium/microbiology , Anacardium/growth & development , Psidium/growth & development , Psidium/microbiology , Malpighiaceae/growth & development , Malpighiaceae/microbiology , Freeze Drying , Microbial Viability , Lacticaseibacillus paracasei/growth & development , Lacticaseibacillus paracasei/metabolism , Lacticaseibacillus paracasei/physiology , Fermentation , Food Handling/methods
13.
Compr Rev Food Sci Food Saf ; 23(4): e13407, 2024 Jul.
Article in English | MEDLINE | ID: mdl-39030802

ABSTRACT

This research presents a comprehensive review of Salmonella presence in retail fresh fruits and vegetables from 2010 to 2023, utilizing data from recognized sources such as PubMed, Scopus, and Web of Science. The study incorporates a meta-analysis of prevalence, serovar distribution, antimicrobial susceptibility, and antimicrobial resistance genes (ARGs). Additionally, it scrutinizes the heterogeneous sources across various food categories and geographical regions The findings show a pooled prevalence of 2.90% (95% CI: 0.0180-0.0430), with an increase from 4.63% in 2010 to 5.32% in 2022. Dominant serovars include S. Typhimurium (29.14%, 95% CI: 0.0202-0.6571) and S. Enteritidis (21.06%, 95% CI: 0.0181-0.4872). High resistance rates were noted for antimicrobials like erythromycin (60.70%, 95% CI: 0.0000-1.0000) and amoxicillin (39.92%, 95% CI: 0.0589-0.8020). The most prevalent ARGs were blaTEM (80.23%, 95% CI: 0.5736-0.9692) and parC mutation (66.67%, 95% CI: 0.3213-0.9429). Factors such as pH, water activity, and nutrient content, along with external factors like the quality of irrigation water and prevailing climatic conditions, have significant implications on Salmonella contamination. Nonthermal sterilization technologies, encompassing chlorine dioxide, ozone, and ultraviolet light, are emphasized as efficacious measures to control Salmonella. This review stresses the imperative need to bolster prevention strategies and control measures against Salmonella in retail fresh fruits and vegetables to alleviate related food safety risks.


Subject(s)
Fruit , Salmonella , Serogroup , Vegetables , Vegetables/microbiology , Fruit/microbiology , Salmonella/drug effects , Salmonella/isolation & purification , Salmonella/genetics , Prevalence , Anti-Bacterial Agents/pharmacology , Drug Resistance, Bacterial , Food Contamination/analysis , Food Microbiology
14.
Curr Microbiol ; 81(8): 262, 2024 Jul 09.
Article in English | MEDLINE | ID: mdl-38981879

ABSTRACT

The vast dissemination of resistance to different antibiotics among bacterial pathogens, especially foodborne pathogens, has drawn major research attention. Thus, many attempts have been made to reveal novel alternatives to the current antibiotics. Due to their variable pharmacologically active phytochemicals, plants represent a good solution for this issue. This study investigated the antibacterial potential of Kumquat or Fortunella japonica methanol extract (FJME) against Salmonella typhimurium clinical isolates. Gas chromatography coupled with mass spectrometry (GC/MS) characterized 39 compounds in FJME. Palmitic acid (15.386%) and cis-vaccenic acid (15.012%) are the major active constituents detected by GC/MS. Remarkably, FJME had minimum inhibitory concentrations from 128 to 512 µg/mL in vitro. In addition, a systemic infection model revealed the in vivo antibacterial action of FJME. The antibacterial therapeutic activity of FJME was noticed by improving the histological features of the liver and spleen. Moreover, there was a perceptible lessening (p < 0.05) of the levels of the oxidative stress markers (nitric oxide and malondialdehyde) using ELISA. In addition, the gene expression of the proinflammatory cytokine (interleukin 6) was downregulated. On the other hand, there was an upregulation of the anti-inflammatory cytokine (interleukin 10). Accordingly, future clinical investigations should be done to reveal the potential antibacterial action of FJME on other food pathogens.


Subject(s)
Anti-Bacterial Agents , Fruit , Microbial Sensitivity Tests , Plant Extracts , Salmonella typhimurium , Plant Extracts/pharmacology , Plant Extracts/chemistry , Salmonella typhimurium/drug effects , Anti-Bacterial Agents/pharmacology , Fruit/microbiology , Fruit/chemistry , Animals , Mice , Salmonella Infections/microbiology , Salmonella Infections/drug therapy
15.
Appl Microbiol Biotechnol ; 108(1): 420, 2024 Jul 17.
Article in English | MEDLINE | ID: mdl-39017989

ABSTRACT

Fruit wine is one of the oldest fermented beverages made from non-grape fruits. Owing to the differences in fruit varieties, growing regions, climates, and harvesting seasons, the nutritional compositions of fruits (sugars, organic acids, etc.) are different. Therefore, the fermentation process and microorganisms involved are varied for a particular fruit selected for wine production, resulting in differences in volatile compound formation, which ultimately determine the quality of fruit wine. This article reviews the effects of various factors involved in fruit wine making, especially the particular modifications differing from the grape winemaking process and the selected strains suitable for the specific fruit wine fermentation, on the formation of volatile compounds, flavor and aroma profiles, and quality characteristics of the wine thus produced. KEY POINTS: • The volatile profile and fruit wine quality are affected by enological parameters. • The composition and content of nutrients in fruit must impact volatile profiles. • Yeast and LAB are the key determining factors of the volatile profiles of fruit wines.


Subject(s)
Fermentation , Fruit , Vitis , Volatile Organic Compounds , Wine , Wine/analysis , Wine/microbiology , Volatile Organic Compounds/analysis , Volatile Organic Compounds/metabolism , Fruit/chemistry , Fruit/microbiology , Vitis/chemistry , Vitis/microbiology , Odorants/analysis , Yeasts/metabolism , Taste
16.
BMC Plant Biol ; 24(1): 653, 2024 Jul 10.
Article in English | MEDLINE | ID: mdl-38987678

ABSTRACT

BACKGROUND: Walnut anthracnose caused by Colletotrichum gloeosporioides seriously endangers the yield and quality of walnut, and has now become a catastrophic disease in the walnut industry. Therefore, understanding both pathogen invasion mechanisms and host response processes is crucial to defense against C. gloeosporioides infection. RESULTS: Here, we investigated the mechanisms of interaction between walnut fruits (anthracnose-resistant F26 fruit bracts and anthracnose-susceptible F423 fruit bracts) and C. gloeosporioides at three infection time points (24hpi, 48hpi, and 72hpi) using a high-resolution time series dual transcriptomic analysis, characterizing the arms race between walnut and C. gloeosporioides. A total of 20,780 and 6670 differentially expressed genes (DEGs) were identified in walnut and C. gloeosporioides against 24hpi, respectively. Generous DEGs in walnut exhibited opposite expression patterns between F26 and F423, which indicated that different resistant materials exhibited different transcriptional responses to C. gloeosporioides during the infection process. KEGG functional enrichment analysis indicated that F26 displayed a broader response to C. gloeosporioides than F423. Meanwhile, the functional analysis of the C. gloeosporioides transcriptome was conducted and found that PHI, SignalP, CAZy, TCDB genes, the Fungal Zn (2)-Cys (6) binuclear cluster domain (PF00172.19) and the Cytochrome P450 (PF00067.23) were largely prominent in F26 fruit. These results suggested that C. gloeosporioides secreted some type of effector proteins in walnut fruit and appeared a different behavior based on the developmental stage of the walnut. CONCLUSIONS: Our present results shed light on the arms race process by which C. gloeosporioides attacked host and walnut against pathogen infection, laying the foundation for the green prevention of walnut anthracnose.


Subject(s)
Colletotrichum , Juglans , Plant Diseases , Juglans/microbiology , Juglans/genetics , Colletotrichum/physiology , Plant Diseases/microbiology , Plant Diseases/genetics , RNA-Seq , Fruit/microbiology , Fruit/genetics , Transcriptome , Gene Expression Regulation, Plant , Gene Expression Profiling , Host-Pathogen Interactions/genetics , Disease Resistance/genetics
17.
J Agric Food Chem ; 72(29): 16221-16236, 2024 Jul 24.
Article in English | MEDLINE | ID: mdl-38996349

ABSTRACT

A hundred million tons of young apples are thinned and discarded in the orchard per year, aiming to increase the yield and quality of apples. We fermented thinned young apples using a potential probiotic fungus, Eurotium cristatum, which notably disrupted the microstructure of raw samples, as characterized by the scanning electron microscope. Fermentation substantially altered the metabolite profiles of samples, which are predicted to alleviate colitis via regulating inflammatory response and response to lipopolysaccharide by using network pharmacology analysis. In vivo, oral gavage of water extracts of E. cristatum fermented young apples (E.YAP) effectively alleviated DSS-induced colitis, restored the histopathology damage, reduced the levels of inflammatory cytokines, and promoted colonic expressions of tight junction proteins. Moreover, E.YAP ameliorated gut dysbacteriosis by increasing abundances of Lactobacillus,Blautia, Muribaculaceae, and Prevotellaceae_UCG-001 while inhibiting Turicibacter, Alistipes, and Desulfovibrio. Importantly, E.YAP increased colonic bile acids, such as CA, TCA, DCA, TUDCA, and LCA, thereby alleviating colitis via PXR/NF-κB signaling. Furthermore, a synbiotic combination with Limosilactobacillus reuteri WX-94, a probiotic strain isolated from feces of healthy individuals with anti-inflammatory properties, augmented anticolitis capacities of E.YAP. Our findings demonstrate that E.YAP could be a novel, potent, food-based anti-inflammatory prebiotic for relieving inflammatory injuries.


Subject(s)
Bacteria , Colitis , Eurotium , Fermentation , Malus , Mice, Inbred C57BL , Animals , Malus/chemistry , Mice , Colitis/microbiology , Colitis/metabolism , Colitis/chemically induced , Humans , Male , Eurotium/metabolism , Eurotium/chemistry , Bacteria/classification , Bacteria/genetics , Bacteria/isolation & purification , Bacteria/metabolism , Gastrointestinal Microbiome/drug effects , Probiotics/administration & dosage , Probiotics/pharmacology , Fruit/chemistry , Fruit/microbiology , Colon/microbiology , Colon/metabolism , Colon/immunology
18.
J Agric Food Chem ; 72(29): 16128-16139, 2024 Jul 24.
Article in English | MEDLINE | ID: mdl-39003764

ABSTRACT

Currently, allosteric inhibitors have emerged as an effective strategy in the development of preservatives against the drug-resistant Botrytis cinerea (B. cinerea). However, their passively driven development efficiency has proven challenging to meet the practical demands. Here, leveraging the deep learning Neural Relational Inference (NRI) framework, we actively identified an allosteric inhibitor targeting B. cinerea Chitinase, namely, 2-acetonaphthone. 2-Acetonaphthone binds to the crucial domain of Chitinase, forming the strong interaction with the allosteric sites. Throughout the interaction process, 2-acetonaphthone diminished the overall connectivity of the protein, inducing conformational changes. These findings align with the results obtained from Chitinase activity experiments, revealing an IC50 value of 67.6 µg/mL. Moreover, 2-acetonaphthone exhibited outstanding anti-B. cinerea activity by inhibiting Chitinase. In the gray mold infection model, 2-acetonaphthone significantly extended the preservation time of cherry tomatoes, positioning it as a promising preservative for fruit storage.


Subject(s)
Botrytis , Chitinases , Plant Diseases , Solanum lycopersicum , Botrytis/drug effects , Chitinases/chemistry , Chitinases/metabolism , Chitinases/antagonists & inhibitors , Plant Diseases/microbiology , Solanum lycopersicum/microbiology , Food Preservation/methods , Fungicides, Industrial/pharmacology , Fungicides, Industrial/chemistry , Fungal Proteins/chemistry , Fungal Proteins/metabolism , Fungal Proteins/antagonists & inhibitors , Fruit/chemistry , Fruit/microbiology , Enzyme Inhibitors/chemistry , Enzyme Inhibitors/pharmacology , Allosteric Regulation/drug effects , Drug Discovery
19.
Int J Food Microbiol ; 421: 110804, 2024 Aug 16.
Article in English | MEDLINE | ID: mdl-38905809

ABSTRACT

Pre-cut fresh fruits and vegetables are highly appealing to consumers for their convenience, however, as they are highly susceptible to microbial contamination in processing, the potential risks of foodborne illnesses to public health are not negligible. This study aimed to assess the prevalence, antibiotic susceptibility and molecular characteristics of major foodborne pathogens (Listeria monocytogenes, Escherichia coli, Staphylococcus aureus and Salmonella) isolated from fresh-cut fruits and vegetables in Beijing, China. 86 stains were isolated from 326 samples, with S. aureus being the highest prevalence (15.38 %), followed by E. coli (9.23 %) and L. monocytogenes (1.85 %), while no Salmonella was detected. The prevalence by type of food indicated that fruit trays and mixed vegetables were more susceptible to contamination by pathogens. 98 % of S. aureus were resistant to at least of one antibiotic, and showed a high resistance rate to benzylpenicillin (90 %) and oxacillin (48 %). Among 25 E. coli isolates, 57.67 % of which exhibited multi-drug resistance, with common resist to trimethoprim/sulfamethoxazole (66.67 %) and ampicillin (63.33 %). A total of 9 sequence types (STs) and 8 spa types were identified in 35 S. aureus isolates, with ST398-t34 being the predominant type (42.86 %). Additionally, analysis of 25 E. coli isolates demonstrated significant heterogeneity, characterized by 22 serotypes and 18 STs. Genomic analysis revealed that 5 and 44 distinct antibiotic resistance genes (ARGs) in S. aureus and E. coli, respectively. Seven quinolone resistance-determining regions (QRDRs) mutations were identified in E. coli isolates, of which GyrA (S83L) was the most frequently detected. All the S. aureus and E. coli isolates harbored virulence genes. ARGs in S. aureus and E. coli showed a significant positive correlation with plasmids. Furthermore, one L. monocytogenes isolate, which was ST101 and serogroupIIc from watermelon sample, harbored virulence genes (inlA and inlB) and LIPI-1 pathogenic islands (prfA, plcA, hly and actA), which posed potential risks for consumer's health. This study focused on the potential microbial risk of fresh-cut fruits and vegetables associated with foodborne diseases, improving the scientific understanding towards risk assessment related to ready-to-eat foods.


Subject(s)
Anti-Bacterial Agents , Escherichia coli , Food Microbiology , Fruit , Microbial Sensitivity Tests , Staphylococcus aureus , Vegetables , Vegetables/microbiology , Fruit/microbiology , Staphylococcus aureus/genetics , Staphylococcus aureus/isolation & purification , Staphylococcus aureus/drug effects , Anti-Bacterial Agents/pharmacology , Escherichia coli/isolation & purification , Escherichia coli/genetics , Escherichia coli/drug effects , Beijing/epidemiology , Salmonella/genetics , Salmonella/isolation & purification , Salmonella/classification , Salmonella/drug effects , Prevalence , Food Contamination/analysis , China/epidemiology , Listeria monocytogenes/genetics , Listeria monocytogenes/isolation & purification , Listeria monocytogenes/classification , Listeria monocytogenes/drug effects , Drug Resistance, Bacterial/genetics , Drug Resistance, Multiple, Bacterial/genetics , Foodborne Diseases/microbiology , Foodborne Diseases/epidemiology
20.
Food Microbiol ; 122: 104536, 2024 Sep.
Article in English | MEDLINE | ID: mdl-38839216

ABSTRACT

The aim of this study was to develop a novel and healthier fermented meat product by replacing pork fat with avocado pulp (AVP) during salami production. Experimental salamis were produced under laboratory conditions by substituting pork fat with AVP partially (10-AVP) and totally (20-AVP), while control salamis (CTR) remained AVP-free. The microbial composition of control and experimental salamis was assessed using a combined culture-dependent and -independent approach. Over a 20-days ripening period, lactic acid bacteria, coagulase-negative staphylococci, and yeasts dominated the microbial community, with approximate levels of 9.0, 7.0 and 6.0 log CFU/g, respectively. Illumina technology identified 26 taxonomic groups, with leuconostocs being the predominant group across all trials [constituting 31.26-59.12 % of relative abundance (RA)]. Gas Chromatography-Mass Spectrometry (GC-MS) analysis revealed changes in fatty acid composition and volatile organic compounds due to the substitution of pork fat with AVP. Specifically, monounsaturated fatty acids and terpene compounds increased, while saturated fatty acids and lipid oxidation products decreased. Although AVP influenced the sensory characteristics of the salamis, the highest overall satisfaction ratings were observed for the 10-AVP salamis. Consequently, substituting pork fat with AVP emerges as a viable strategy for producing healthier salamis and diversifying the meat product portfolio.


Subject(s)
Fermentation , Meat Products , Persea , Persea/microbiology , Persea/chemistry , Animals , Swine , Meat Products/microbiology , Meat Products/analysis , Fatty Acids/analysis , Fatty Acids/metabolism , Humans , Bacteria/classification , Bacteria/isolation & purification , Bacteria/metabolism , Bacteria/genetics , Volatile Organic Compounds/analysis , Volatile Organic Compounds/metabolism , Fruit/microbiology , Fruit/chemistry , Food Microbiology , Taste , Lactobacillales/metabolism , Lactobacillales/classification , Lactobacillales/growth & development
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