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In commercial production settings, few options exist to prevent or treat angular leaf spot (ALS) of strawberry, a disease of economic importance and caused by the bacterial pathogen . In the process of isolating and identifying bacteria from symptomatic plants, we observed growth inhibition of by bacterial isolates from the same leaf macerates. Identified as species of and , these isolates were confirmed to suppress growth of in agar overlay plates and in microtiter plate cultures, as did our reference strain KT2440. Screening of a transposon mutant library of KT2440 revealed that disruption of the biosynthetic pathway for the siderophore pyoverdine resulted in complete loss of antagonism, suggesting iron competition as a mode of action. Antagonism could be replicated on plate and in culture by addition of purified pyoverdine or by addition of the chelating agents tannic acid and dipyridyl, while supplementing the medium with iron negated the inhibitory effects of pyoverdine, tannic acid and dipyridyl. When co-inoculated with tannic acid onto strawberry plants, 's ability to cause foliar symptoms was greatly reduced, suggesting a possible opportunity for iron-based management of ALS. We discuss our findings in the context of 'nutritional immunity,' the idea that plant hosts restrict pathogen access to iron, either directly, or indirectly through their associated microbiota.
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http://dx.doi.org/10.3389/fmicb.2016.01589 | DOI Listing |
Food Chem X
August 2025
Tianjin Institute of Industrial Biotechnology, Chinese Academy of Science, Tianjin 300308, China.
In this study, tannic acid (TA) was applied to remodel the structure of quercetin-loaded oat globulin fibrils (UF-Que), to form novel fibril-based composite hydrogels (UF-Que-TA) to encapsulate Que. The hydrogels were prepared by varying the [TA]/[UF] ratio to investigate the impact of TA on gelation behavior, microstructure, molecular interactions, and stability of Que. Physicochemical results indicated that the incorporation of TA significantly enhanced the gel strength and promoted non-covalent interactions including hydrogen bonding, hydrophobic interactions, and ionic interactions.
View Article and Find Full Text PDFCurr Comput Aided Drug Des
September 2025
Noida Institute of Engineering and Technology (Pharmacy Institute), 19 Knowledge Park-II, Institutional Area, Greater Noida, U.P, 201306, India.
Introduction: The white water lily (Nymphaea alba) is a traditional medicinal plant recognized for its diverse array of bioactive properties. However, its potential in wound healing remains largely unexplored. This study aimed to evaluate the phytochemical profile, cytotoxicity, and wound healing efficacy of Nymphaea alba flower extract (NAFE) using both in vitro and in vivo models, as well as computational network analysis.
View Article and Find Full Text PDFBiomed Pharmacother
September 2025
NICM Health Research Institute, Western Sydney University, Penrith, NSW 2751, Australia. Electronic address:
Indigenous Australians have long recognised and utilised the therapeutic potential of Australian native plants for generations to treat and manage various diseases. In recent years, these native plants have been explored in preclinical research for their chemical profiles and therapeutic properties for conditions such as skin disorders, colds and flu, various cancers, neurological disorders, metabolic syndrome, and other inflammatory conditions. Notable species studied include Kakadu plum, Davidson's plum, Burdekin plum, Illawarra plum, anise myrtle, lemon myrtle, lemon aspen, quandong, muntries, and Tasmanian pepperberry.
View Article and Find Full Text PDFInt J Biol Macromol
September 2025
College of Ethnic Pharmacy, Chengdu University of Traditional Chinese Medicine, Chengdu, Sichuan, China. Electronic address:
Wound healing is often hindered by bacterial infection, oxidative stress, and bleeding. Traditional dressings cannot simultaneously regulate multiple microenvironments. To address the shortcomings of traditional dressings, this study constructed a dual-network photothermal responsive multifunctional hydrogel OBCTCu based on four natural ingredients, including Bletilla striata polysaccharide (BSP), chitosan (CS), tannic acid (TA), and Cu.
View Article and Find Full Text PDFInt J Biol Macromol
September 2025
College of Materials Science and Engineering, Nanjing Tech University, Nanjing, 210009, China.
Conductive hydrogels have revolutionized wearable electronics due to their biocompatibility and tunable properties. However, it remains a great challenge for hydrogel-based sensors to maintain both conductivity and mechanical integrity in harsh environments. Synergistic dynamic interactions provide a promising strategy to address this issue.
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