Tea ( [L.] O. Kuntze) is cultivated as a beverage crop. Despite being a hardy perennial, the tea plant is susceptible to various biotic stresses. Among them, the foliar disease blister blight (BB) is considered the most serious threat to the tea industry, particularly in Asia. BB caused by (Basidiomycetes) was first reported from Northern India in 1868 and gradually established in other tea-growing countries. The fungus attacks young harvestable shoots and causes 20 to 50% crop loss. Over the past 150 years, scientific research has delved into various aspects of BB disease, including pathogen biology, disease cycle, epidemiology, disease forecasting, crop loss assessment, and disease management strategies. In a recent shift in research focus, scientists have begun to investigate the resistance mechanisms of tea plants against BB and apply this knowledge to commercial tea cultivation. Although progress has been significant in understanding the fundamental aspects of BB resistance, the detailed molecular mechanisms driving this resistance remain under investigation. This paper focuses on the current understanding of defense mechanisms employed by tea plants against and, conversely, how overcomes these defenses. Furthermore, we discuss the application of plant resistance strategies in commercial tea cultivation. Lastly, we identify existing research gaps and propose future research directions in the field.
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http://dx.doi.org/10.1094/PDIS-10-23-2033-FE | DOI Listing |
Appl Microbiol Biotechnol
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Faculty of Biotechnology and Food Sciences, Institute of Fermentation Technology and Microbiology, Lodz University of Technology, Wolczanska 171/173, 90-530, Lodz, Poland.
In recent years, there has been a surge in the production of kombucha-a functional beverage obtained via microbial fermentation of tea. However, fresh, unpasteurized kombucha is sensitive to quality deterioration as a result of, among other factors, oxidation. The addition of hops seems to be promising, due to their antioxidative properties, which may improve the stability of kombucha.
View Article and Find Full Text PDFAdv Clin Exp Med
January 2025
Acupuncture and Tuina College, Guizhou University of Traditional Chinese Medicine, Guiyang, China.
Background: Chronic soft tissue injury is characterized by sterile inflammation and pain. Gua sha with Masanggoubang oil (GSMO) treatment has been found to possess anti-inflammatory and analgesic effects.
Objectives: To explore the mechanism of GSMO in chronic soft tissue injuries.
Clin Toxicol (Phila)
January 2025
Laboratory of Pharmacokinetics and Toxicology, La Timone University Hospital, Marseille, France.
Introduction: The use of weight loss supplements is increasing, often driven by online marketing. However, many of these supplements are adulterated with undeclared pharmaceutical substances, potentially posing significant health risks. We investigated the presence of sibutramine and sildenafil in weight loss supplements and assessed the associated clinical outcomes.
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February 2025
Department of Food Process Engineering, School of Bioengineering, Faculty of Engineering and Technology, SRM Institute of Science and Technology, Kattankulathur, Chengalpattu 603203 India.
Unlabelled: Catechin hydrate (CH) is a kind of polyphenol present in many plantsincluding green tea, fruits, red wine and cocoa with very good antioxidant effect. The formulation of CH nanoemulsion increased the bioavailability and stability of catechin, allowing for easier food incorporation and faster absorption by the body. The major goal of the current study was to create a nanoemulsion as a reliable delivery mechanism for catechin hydrate and its incorporation into yogurt to increase its antioxidant activity.
View Article and Find Full Text PDFJ Food Sci Technol
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School of Food and Pharmaceutical Engineering (Liupao Tea modern Industry College), Wuzhou University, Wuzhou, 543002 China.
Unlabelled: Pile fermentation plays a crucial role in the formation of the unique flavor of Liupao tea, which can effectively reduce the bitterness of the tea and promote the formation of red tea soup. In this study, the non-volatiles changes of Liupao tea during pile fermentation processing were fully analyzed by UPLC-QTOF-MS/MS. A total of 271 metabolites with significant differences were identified in Liupao tea during pile fermentation( < 0.
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