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绿僵菌qc1401胁迫下斜纹夜蛾的微生物组与代谢组综合分析

Integrated microbiome and metabolomic analysis of Spodoptera litura under Metarhizium flavoviride qc1401 stress.

作者信息

Juefeng Zhang, Fang Li, Haiying Zhong, Liwei Liu, Jianming Chen

机构信息

Institute of Plant Protection and Microbiology, Zhejiang Academy of Agricultural Sciences, Hangzhou, Zhejiang, China.

Zhejiang Natural Museum, Hangzhou, Zhejiang, China.

出版信息

Int Microbiol. 2025 Apr;28(4):721-737. doi: 10.1007/s10123-024-00574-y. Epub 2024 Aug 15.

Abstract

Metarhizium spp. have emerged as an alternative to chemical pesticides for protecting crops from insect pest. Here, we investigated midgut microbial community and metabolites of Spodoptera litura at three different timepoints after infection with Metarhizium flavoviride. The innate immune system of S. litura was activated with levels of polyphenol oxidase, carboxylesterase, multifunctional oxidase, and glutathione S-transferase activity significantly increasing. Exposure to the fungal pathogen also altered bacterial abundance and diversity in host's midgut, and these changes varied depending on the time elapsed since exposure. We identified more operational taxonomic units in the treated samples as compared to the control samples at all tested time points. A total of 372 metabolites were identified, and 88, 149, and 142 differentially accumulated metabolites (DAMs) were identified between the treatment and control groups at 3 timepoints after treatment, respectively. Based on the changes of DAMs in response to M. flavoviride infection at different timepoints and significantly enriched KEGG pathways, we speculated that "tyrosine metabolism," "galactose metabolism," "ATP-binding cassette transporters," "neuroactive ligand-receptor interaction," "purine metabolism," "arginine and proline metabolism," "beta-alanine metabolism," "lysosome," and "carbon metabolism" may participate in the metabolic-level defense response. An integrated pathway-level analysis of the 16S-rDNA and metabolomic data illustrated the connections and interdependencies between the metabolic responses of S. litura and the midgut microorganisms to M. flavoviride infection. This work emphasizes the value of integrated analyses of insect-pathogen interactions, provides a framework for future studies of critical microorganisms and metabolic determinants of these interactions, establishes a theoretical basis for the sustainable use of M. flavoviride.

摘要

绿僵菌已成为一种替代化学杀虫剂来保护作物免受虫害的选择。在此,我们研究了斜纹夜蛾在感染绿僵菌后的三个不同时间点的中肠微生物群落和代谢产物。斜纹夜蛾的先天免疫系统被激活,多酚氧化酶、羧酸酯酶、多功能氧化酶和谷胱甘肽S -转移酶的活性显著增加。接触真菌病原体也改变了宿主中肠细菌的丰度和多样性,并且这些变化因接触后经过的时间而异。在所有测试时间点,与对照样品相比,我们在处理后的样品中鉴定出了更多的可操作分类单元。总共鉴定出372种代谢产物,并且在处理后的3个时间点,处理组和对照组之间分别鉴定出88种、149种和142种差异积累代谢产物(DAM)。基于不同时间点DAM对绿僵菌感染的响应变化以及显著富集的KEGG途径,我们推测“酪氨酸代谢”、“半乳糖代谢”、“ATP结合盒转运蛋白”、“神经活性配体 - 受体相互作用 ”、“嘌呤代谢”、“精氨酸和脯氨酸代谢”、“β -丙氨酸代谢”、“溶酶体”和“碳代谢”可能参与了代谢水平的防御反应。对16S - rDNA和代谢组学数据的综合途径水平分析阐明了斜纹夜蛾的代谢反应与中肠微生物对绿僵菌感染的反应之间的联系和相互依赖性。这项工作强调了昆虫 - 病原体相互作用综合分析的价值,为未来研究这些相互作用的关键微生物和代谢决定因素提供了框架,为绿僵菌的可持续利用奠定了理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6236/11991939/0929d39db8b6/10123_2024_574_Fig1_HTML.jpg

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