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Root exudates drive the soil-borne legacy

WebOct 10, 2024 · Corresponding Author. Roeland L. Berendsen [email protected] Plant-Microbe Interactions, Department of Biology, Utrecht University, Padualaan 8, Utrecht, 3584 CH the Netherlands WebMar 6, 2024 · In general, grain crops are the focus of root exudates research in China’s agricultural system. The full analysis of root exudates is still in the early development stage. The interaction between the functions of acids, amino acids and primary metabolites of sugars in crop root exudates and the external environment is the hot topic at present.

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Webmicrobes upon attack to generate a soil memory or “soil-borne legacy” that better prepares the next gener-ation of plants to avoid harmful effects of the pathogen [12–15]. In this process, root exudates and other root-derived molecules are believed to play a role [12, 13, 16–18], although direct evidence supporting this hy- WebResearchGate Find and share research from nairobi for example crossword https://ewcdma.com

Root-induced changes in nutrient cycling in forests depend

WebAbstract. Background. Plants are capable of building up beneficial rhizosphere communities as is evidenced by disease-suppressive soils. However, it is not known how and why soil bacterial communities are impacted by plant exposure to foliar pathogens and if such responses might improve plant performance in the presence of the pathogen. WebGiven this co-evolution and the pivotal importance of plant-microbial interactions, it has been hypothesized, and a growing body of literature suggests, that plants may regulate the composition of their rhizosphere to promote the growth of microorganisms that improve plant fitness in a given ecosystem. WebRoot exudates drive the soil-borne legacy of aboveground pathogen infection Jun Yuan, Jun Zhao, Tao Wen, Mengli Zhao, Rong Li, Pim Goossens, Qiwei Huang, Yang Bai, Jorge M. … from net income to free cash flow

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Root exudates drive the soil-borne legacy

Composition analysis of beneficial microorganisms in disease ...

WebApr 10, 2024 · a role in the suppression of soil-borne pathogens [21, 24, 25], recent evidence suggests that fungal communities can play a more important role in plant health by promoting plant nutrient WebSci-Hub Root exudates drive the soil-borne legacy of aboveground pathogen infection. Microbiome, 6 (1) 10.1186/s40168-018-0537-x. Yuan, J., Zhao, J., Wen, T., Zhao, M., Li, R., …

Root exudates drive the soil-borne legacy

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WebWith the warming global climate, drought stress is considered to be the most important abiotic factor limiting plant growth and yield in the world. Drought stress has serious … WebApr 10, 2024 · Root exudates from legumes are a potential factor contributing to positive rotation effects with succeeding crops primarily due to their potential for disease suppression (Angus et al., 2015). However, under field conditions, it has been difficult to determine if there are legacy effects of these exudates in the year following their …

WebRoot exudates drive the soil-borne legacy of aboveground pathogen infection Yuan, Jun; Zhao, Jun; Wen, Tao; Zhao, Mengli; Li, Rong; Goossens, Pim; Huang, Qiwei; Bai, Yang; … WebJul 25, 2024 · Root exudates from each broadleaf species and Chinese fir were collected with a specially made continuous root exudate trapping system (CRETS). The CRETS …

WebMar 8, 2024 · The soil-borne legacy can then be sensibly exploited in agriculture by introducing specific microbial consortia in combination with microbiome-optimized plant … WebRoot exudates drive the soil-borne legacy of aboveground pathogen infection. Microbiome. 2024; 6: 1-12. Crossref; PubMed; Scopus (46) Google Scholar]. Recent studies highlighted the link between plant stress and the assembly of beneficial root microbiomes that aid in the alleviation of the stress at hand [11.

WebNov 23, 2024 · A recent study has shown that the inoculation of root microbial communities derived from different soil samples significantly altered the gene expression profiles in rice and affected the expression levels of particular gene families involved in the disease resistance mechanism (Santos‐Medellín et al. 2024 ).

WebApr 15, 2024 · Root exudates depend on many abiotic and biotic factors, with the former including pathogen invasion, especially colonization. For example, Fusarium oxysporum colonization could stimulate the secretion of phenolic acids [ 46 ]. Foliar pathogen infection increased the concentration of some amino acids and fatty acids in root exudates [ 47 ]. from nap with loveWebthe role of root exudates in the establishment of soil-borne legacies following foliar pathogen attack. We conditioned soils by growing five successive generations of … from my window vimeoWebRoot exudates drive the soil-borne legacy of aboveground pathogen infection Article Full-text available Sep 2024 Jun Yuan Jun Zhao Tao Wen [...] Qirong Shen Background: Plants are capable of... from my window juice wrld chordsWebJan 23, 2024 · Yet, rhizobia are poorly motile in soil, and nodulating rhizobia, except for seed-borne rhizobia, are derived from soil environment. Especially, root exudates mediate a … fromnativoWebFeb 1, 2024 · Recently, root-exuded coumarins were identified as novel players in plant–microbiome communication. Beneficial members of the root-associated microbiome stimulate coumarin biosynthesis in roots and their excretion into the rhizosphere. from new york to boston tourWebDec 28, 2024 · MYB72 and coumarin biosynthesis are required for the creation of the soil-borne legacy mediated by Hpa-infected Arabidopsis. MYB72 regulates the production and secretion of coumarins, most … from newport news va to los angelos caWebMar 8, 2024 · Figure 1. Soil-Borne Legacies: Management of the Root Microbiome. Upon perception of (a)biotic stress, plants respond by adjusting their root exudate profiles. Root … from naples