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同步分析宿主和病原体的转录组揭示芸薹属植物与核盘菌的互作关系。

Simultaneous Transcriptome Analysis of Host and Pathogen Highlights the Interaction Between Brassica oleracea and Sclerotinia sclerotiorum.

机构信息

1 College of Agronomy and Biotechnology, Southwest University, Chongqing 400715, China.

2 Academy of Agricultural Sciences, Southwest University, Chongqing 400715, China.

出版信息

Phytopathology. 2019 Apr;109(4):542-550. doi: 10.1094/PHYTO-06-18-0204-R. Epub 2019 Mar 12.

Abstract

White mold disease caused by Sclerotinia sclerotiorum is a devastating disease of Brassica crops. Here, we simultaneously assessed the transcriptome changes from lesions produced by S. sclerotiorum on disease-resistant (R) and -susceptible (S) B. oleracea pools bulked from a resistance-segregating F2 population. Virulence genes of S. sclerotiorum, including polygalacturonans, chitin synthase, secretory proteins, and oxalic acid biosynthesis, were significantly repressed in lesions of R B. oleracea at 12 h postinoculation (hpi) but exhibited similar expression patterns in R and S B. oleracea at 24 hpi. Resistant B. oleracea induced expression of receptors potentially to perceive Sclerotinia signals during 0 to 12 hpi and deployed complex strategies to suppress the pathogen establishment, including the quick accumulation of reactive oxygen species via activating Ca signaling and suppressing pathogen oxalic acid generation in S. sclerotiorum. In addition, cell wall degradation was inhibited in the resistant B. oleracea potentially to prevent the expansion of Sclerotinia hyphae. The transcriptome changes in S. sclerotiorum and host revealed that resistant B. oleracea produces strong responses against S. sclerotiorum during early infection.

摘要

由核盘菌引起的白霉病是十字花科作物的一种毁灭性疾病。在这里,我们同时评估了来自抗性(R)和易感(S)甘蓝型油菜混合群体的病变中由 S. sclerotiorum 引起的转录组变化,该群体是从一个抗性分离的 F2 群体中混合而来的。核盘菌的毒力基因,包括多聚半乳糖醛酸酶、几丁质合成酶、分泌蛋白和草酸生物合成,在接种后 12 小时(hpi)的 R 甘蓝型油菜病变中显著受到抑制,但在 24 hpi 时在 R 和 S 甘蓝型油菜中表现出相似的表达模式。抗性甘蓝型油菜在 0 到 12 hpi 期间诱导了潜在的受体表达,以感知核盘菌信号,并部署了复杂的策略来抑制病原体的建立,包括通过激活 Ca 信号快速积累活性氧物质,并抑制 S. sclerotiorum 中的病原体草酸生成。此外,抗性甘蓝型油菜中的细胞壁降解受到抑制,可能是为了防止核盘菌菌丝的扩展。核盘菌和宿主的转录组变化表明,抗性甘蓝型油菜在早期感染中对 S. sclerotiorum 产生了强烈的反应。

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