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转录组学揭示了生态位防御的一种机制:两种有益的根内生菌利用一种抗菌 GH18-CBM5 几丁质酶来保护它们的宿主。

Transcriptomics reveal a mechanism of niche defense: two beneficial root endophytes deploy an antimicrobial GH18-CBM5 chitinase to protect their hosts.

机构信息

University of Cologne, Institute for Plant Sciences, Cologne, 50674, Germany.

Cluster of Excellence on Plant Sciences (CEPLAS), Cologne, 50674, Germany.

出版信息

New Phytol. 2024 Nov;244(3):980-996. doi: 10.1111/nph.20080. Epub 2024 Sep 3.

DOI:10.1111/nph.20080
PMID:39224928
Abstract

Effector secretion is crucial for root endophytes to establish and protect their ecological niche. We used time-resolved transcriptomics to monitor effector gene expression dynamics in two closely related Sebacinales, Serendipita indica and Serendipita vermifera, during symbiosis with three plant species, competition with the phytopathogenic fungus Bipolaris sorokiniana, and cooperation with root-associated bacteria. We observed increased effector gene expression in response to biotic interactions, particularly with plants, indicating their importance in host colonization. Some effectors responded to both plants and microbes, suggesting dual roles in intermicrobial competition and plant-microbe interactions. A subset of putative antimicrobial effectors, including a GH18-CBM5 chitinase, was induced exclusively by microbes. Functional analyses of this chitinase revealed its antimicrobial and plant-protective properties. We conclude that dynamic effector gene expression underpins the ability of Sebacinales to thrive in diverse ecological niches with a single fungal chitinase contributing substantially to niche defense.

摘要

效应子分泌对于根内生真菌建立和保护其生态位至关重要。我们使用时分辨转录组学来监测两种密切相关的Sebacinales(枝孢囊菌目),即印度枝孢囊菌(Serendipita indica)和枝孢囊菌 vermifera,在与三种植物物种共生、与植物病原菌串珠镰刀菌(Bipolaris sorokiniana)竞争以及与根相关细菌合作过程中效应子基因表达的动态。我们观察到效应子基因表达的增加是对生物相互作用的响应,特别是与植物的相互作用,表明它们在宿主定殖中的重要性。一些效应子对植物和微生物都有反应,这表明它们在微生物间竞争和植物-微生物相互作用中具有双重作用。一组假定的抗菌效应子,包括 GH18-CBM5 几丁质酶,仅被微生物诱导。对这种几丁质酶的功能分析揭示了其抗菌和植物保护特性。我们得出结论,效应子基因表达的动态是 Sebacinales 在具有单一真菌几丁质酶的多种生态位中茁壮成长的基础,该几丁质酶对生态位防御做出了重要贡献。

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