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蜡蚧轮枝菌JMC-01介导的甘蓝抗桃蚜效应

颜晓曦 田浩然 李金鹏 洪波 贾彦霞

生态学杂志2026,Vol.45Issue(3):968-976,9.
生态学杂志2026,Vol.45Issue(3):968-976,9.DOI:10.13292/j.1000-4890.202603.005

蜡蚧轮枝菌JMC-01介导的甘蓝抗桃蚜效应

Resistance of Brassica oleracea var.capitata to Myzus persicae mediated by JMC-01

颜晓曦 1田浩然 1李金鹏 1洪波 1贾彦霞1

作者信息

  • 1. 宁夏大学农学院,宁夏大学农业昆虫与害虫防治实验室,银川 750021
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摘要

Abstract

Lecanicillium lecanii(JMC-01)can form symbionts after colonizing cabbage plants to defend against My-zus persicae.We tested the toxicity of JMC-01 and JMC-01-cabbage symbionts to Myzus persicae by leaf spraying method and observed the infection of JMC-01 to Myzus persicae.We further analyzed the defense-related pathway changes of cabbage plants after colonization by JMC-01 by transcriptomic sequencing.JMC-01 showed 75%viru-lence against adult aphids at five days post-infection,while the JMC-01-cabbage symbiont induced 58.67%and 66.67%mortality in adults and 1st-instar nymphs,respectively.Nymphal mortality was significantly higher than that of adult aphids.The infection patterns of mycelial in Myzus persicae depended on the inoculation method,either through direct spraying with JMC-01 spore suspension or via feeding on colonized leaves.Direct application of spore suspension demonstrated superior infection efficacy and mortality rates against Myzus persicae.Furthermore,cabbage plants inoculated with JMC-01 exhibited altered defense-related gene expression,with a total of 989 differentially expressed genes being identified.GO enrichment and KEGG pathway analyses revealed significant alterations in de-fense-related pathways,including hydrolytic enzyme activity acting on glycosyl bonds,cell wall metabolism,photo-synthesis-antenna proteins,glucosinolate biosynthesis,MAPK signaling-plant pathway,and sulfur metabolism.Le-canicillium lecanii(JMC-01)can enhance plant resistance through endophytic colonization,with significant poten-tial for application in biological control systems.

关键词

内生性真菌/互作/共生体

Key words

endogenous fungi/interaction/symbiont

引用本文复制引用

颜晓曦,田浩然,李金鹏,洪波,贾彦霞..蜡蚧轮枝菌JMC-01介导的甘蓝抗桃蚜效应[J].生态学杂志,2026,45(3):968-976,9.

基金项目

宁夏自然科学基金项目(2023AAC03073)、宁夏自治区重点研发计划项目(2024BBF02025)和2025年宁夏大学研究生创新项目(CXXM2025055)资助. (2023AAC03073)

生态学杂志

1000-4890

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