Differences in Root-Zone Soil and Basal Stem Tissue Microbial Communities Between Asymptomatic and Diseased Citrus maxima var. Tomentosa Plants with Foot Rot

Exocarpium Citri grandis, derived from Citrus maxima var. Tomentosa, is a precious traditional Chinese medicinal herb. However, foot rot, a severe soil-borne disease, threatens the sustainable cultivation of this crop. This exploratory study investigated microbial associations with foot rot using a limited sample set from a single orchard. Microbial communities in root-zone soil and basal stem tissues of asymptomatic and foot-rot-infected trees were analyzed via high-throughput sequencing. Significant differences in microbial diversity and community structure were observed between asymptomatic and foot-rot-infected trees. Root-zone microbial diversity was lower in diseased trees, whereas bacterial diversity increased but fungal diversity decreased in diseased basal stem tissues. Linear discriminant analysis effect size and correlation analyses revealed that beneficial prokaryotic genera, such as Bacillus, were negatively correlated with Fusarium. FUNGuild prediction indicated a functional shift in fungal communities from saprotrophic to pathogenic. Fusarium was significantly enriched in diseased samples; the HZY isolate from diseased tissues was identified as Fusarium solani-melongenae. Pathogenicity assays demonstrated that F. solani-melongenae was capable of causing foot rot symptoms. These hypothesis-generating findings suggest microbial associations that may underlie foot rot pathogenesis and provide a basis for formulating testable hypotheses for sustainable disease management strategies, pending validation in larger, multi-site studies.

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Publication Details

Journal
Microorganisms
Published
2026-10-04
DOI
https://doi.org/10.3390/microorganisms14102258
Primary Topic
Plant-Microbe Interactions and Immunity
Type
article
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article

Differences in Root-Zone Soil and Basal Stem Tissue Microbial Communities Between Asymptomatic and Diseased Citrus maxima var. Tomentosa Plants with Foot Rot

Xinmin Huang, Yin Liu, Zongqin Feng, Qinqin He et al.
Microorganisms
Plant-Microbe Interactions and Immunity
article

Differences in Root-Zone Soil and Basal Stem Tissue Microbial Communities Between Asymptomatic and Diseased Citrus maxima var. Tomentosa Plants with Foot Rot

Xinmin Huang, Yin Liu, Zongqin Feng, Qinqin He, Haijia Lin, Zhidong Zheng, Fengcui Zhou
article en

Abstract

Exocarpium Citri grandis, derived from Citrus maxima var. Tomentosa, is a precious traditional Chinese medicinal herb. However, foot rot, a severe soil-borne disease, threatens the sustainable cultivation of this crop. This exploratory study investigated microbial associations with foot rot using a limited sample set from a single orchard. Microbial communities in root-zone soil and basal stem tissues of asymptomatic and foot-rot-infected trees were analyzed via high-throughput sequencing. Significant differences in microbial diversity and community structure were observed between asymptomatic and foot-rot-infected trees. Root-zone microbial diversity was lower in diseased trees, whereas bacterial diversity increased but fungal diversity decreased in diseased basal stem tissues. Linear discriminant analysis effect size and correlation analyses revealed that beneficial prokaryotic genera, such as Bacillus, were negatively correlated with Fusarium. FUNGuild prediction indicated a functional shift in fungal communities from saprotrophic to pathogenic. Fusarium was significantly enriched in diseased samples; the HZY isolate from diseased tissues was identified as Fusarium solani-melongenae. Pathogenicity assays demonstrated that F. solani-melongenae was capable of causing foot rot symptoms. These hypothesis-generating findings suggest microbial associations that may underlie foot rot pathogenesis and provide a basis for formulating testable hypotheses for sustainable disease management strategies, pending validation in larger, multi-site studies.

MicroorganismsVol. 14(10)
Guangdong University of Petrochemical Technology (CN)
Openalex Percentile: Top 13%
Plant-Microbe Interactions and Immunity
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