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Microbes play an important role in plants and interact closely with their host starting from sprouting seeds, continuing during growth and after harvest. The discovery of their importance for plant and postharvest health initiated a biotechnological development of various antagonistic bacteria and fungi for disease control. Nevertheless, their application often showed inconsistent effects. Recently, high-throughput sequencing-based techniques including advanced microscopy reveal fruits and vegetables as holobionts. At harvest, all fruits and vegetables harbor a highly abundant and specific microbiota including beneficial, pathogenic and spoilage microorganisms. Especially, a high microbial diversity and resilient microbial networks were shown to be linked to fruit and vegetable health, while diseased products showed severe dysbiosis. Field and postharvest handling of fruits and vegetables was shown to affect the indigenous microbiome and therefore has a substantial impact on the storability of fruits and vegetables. Microbiome tracking can be implemented as a new tool to evaluate and assess all postharvest processes and contribute to fruit and vegetable health. Here, we summarize current research advancements in the emerging field of postharvest microbiomes and elaborate its importance. The generated knowledge provides profound insights into postharvest microbiome dynamics and sets a new basis for targeted, microbiome-driven and sustainable control strategies.
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http://dx.doi.org/10.1093/femsec/fiaa119 | DOI Listing |
J Investig Allergol Clin Immunol
September 2025
Department of Ophthalmology, Juntendo University Graduate School of Medicine, Tokyo, Japan.
Background And Objectives: Pollen-food allergy syndrome (PFAS) is a frequent comorbidity in individuals with hay fever. Identifying risk factors and allergen clusters can aid targeted interventions and management strategies. Objective: This study characterizes PFAS in patients with hay fever and identifies associated risk factors using the mobile health platform, AllerSearch.
View Article and Find Full Text PDFFood Chem X
August 2025
Tianjin University, Tianjin 300072, People's Republic of China.
Thymol is a major monoterpene compound from plants. Thymol exhibits antifungal, antioxidant, and anti-inflammatory properties. Over the past few years, extensive research has underscored the pivotal role of thymol in delaying postharvest senescence in fruits and vegetables, suppressing fungal growth in meat products, and enhancing the shelf life of meat and processed foods.
View Article and Find Full Text PDFFront Nutr
August 2025
Thaer-Institute-Div. Urban Plant Ecophysiology, Humboldt-Universität zu Berlin, Berlin, Germany.
Background: Changes in consumer food choices have been associated with transformation in the food environment. Despite the direct impact of consumers' food choices on their diet and health outcomes, there is a lack of comprehensive evidence regarding how various factors within the food environment impact these choices.
Methods: This study uses the Theory of Planned Behavior to examine how socio-psychological factors in the food environment influence consumers' healthy food choices.
Plant Dis
September 2025
USDA-ARS US Vegetable Laboratory, U.S. Vegetable Laboratory, 2700 Savanah Hwy, Charleston, South Carolina, United States, 29414;
Green fruit anthracnose caused by the fungus Colletotrichum scovillei is an emerging disease on various types of peppers (Capsicum spp.) in the eastern United States. Sixteen cultivars, representing 11 horticultural fruit types from four species of Capsicum, C.
View Article and Find Full Text PDFSci China Life Sci
September 2025
MOE Key Laboratory of Bioinformatics and Center for Plant Biology, School of Life Sciences, Tsinghua University, Beijing, 100084, China.
Tomato brown rugose fruit virus (ToBRFV) overcomes all known tomato resistance genes, including the durable Tm-2, posing a serious threat to global tomato production. Here, we employed in vitro random mutagenesis to evolve the Tm-2 leucine-rich repeat (LRR) domain and screened ∼8,000 variants for gain-of-function mutants capable of recognizing the ToBRFV movement protein (MP) and triggering hypersensitive cell death. We identified five such mutants.
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