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Effects of Continuous Cropping on Chili Root Rot: Insights from Rhizosphere Microbial Communities and Synthetic Community Applications.

Sep 2026 · Plant Disease · pp. PDIS06251298RE · 0 citations · 59 references
Medicine

TL;DR

The results revealed that prolonged continuous cropping significantly altered the composition of the rhizosphere bacterial community, and offered new insights into using functional SynComs as a sustainable agricultural solution and open new avenues for overcoming the challenges posed by continuous cropping.

Abstract

Continuous cropping often results in stunted plant growth and a higher incidence of soil-borne diseases. Soil microbial communities play a crucial role in promoting plant growth, maintaining plant health, and enhancing plant resistance to various diseases. This study examines the impact of continuous cropping on chili root rot and explores the contribution of soil microbial communities to alleviating this issue. The results revealed that prolonged continuous cropping significantly altered the composition of the rhizosphere bacterial community. High-throughput sequencing analysis indicated a marked increase in the abundance of Fusarium pathogens, accompanied by a significant decline in antagonistic bacteria from the genera Bacillus and Pseudomonas. LEfSe analysis showed that Bacillus and Pseudomonas were the core bacterial biomarkers in chili continuous cropping soil, which were successfully isolated and demonstrated significant antagonistic effects against Fusarium solani. Utilizing these antagonistic bacteria, nine different synthetic communities (SynComs) were constructed. Among them, the T7 SynCom exhibited excellent biocontrol efficacy. It effectively suppressed the pathogen, reduced the incidence of root rot, and enhanced systemic induced resistance by activating the plant immune-associated pathways, including the MAPK signaling pathway, ethylene signaling pathway, and pathways mediated by jasmonic acid and salicylic acid. These findings offer new insights into using functional SynComs as a sustainable agricultural solution and open new avenues for overcoming the challenges posed by continuous cropping.[Formula: see text] Copyright © 2026 The Author(s). This is an open access article distributed under the CC BY 4.0 International license.

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