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温度敏感 R 基因介导抗性的转录组学鉴定出一个 WAKL10 蛋白互作网络。

Transcriptomics of temperature-sensitive R gene-mediated resistance identifies a WAKL10 protein interaction network.

机构信息

Centre for Agriculture, Food and Environmental Management, University of Hertfordshire, Hatfield, AL10 9AB, UK.

LS Plant Breeding, North Barn, Manor Farm, Milton Road, Cambridge, CB24 9NG, UK.

出版信息

Sci Rep. 2024 Feb 29;14(1):5023. doi: 10.1038/s41598-024-53643-7.

Abstract

Understanding temperature-sensitivity of R gene-mediated resistance against apoplastic pathogens is important for sustainable food production in the face of global warming. Here, we show that resistance of Brassica napus cotyledons against Leptosphaeria maculans was temperature-sensitive in introgression line Topas-Rlm7 but temperature-resilient in Topas-Rlm4. A set of 1,646 host genes was differentially expressed in Topas-Rlm4 and Topas-Rlm7 in response to temperature. Amongst these were three WAKL10 genes, including BnaA07g20220D, representing the temperature-sensitive Rlm7-1 allele and Rlm4. Network analysis identified a WAKL10 protein interaction cluster specifically for Topas-Rlm7 at 25 °C. Diffusion analysis of the Topas-Rlm4 network identified WRKY22 as a putative regulatory target of the ESCRT-III complex-associated protein VPS60.1, which belongs to the WAKL10 protein interaction community. Combined enrichment analysis of gene ontology terms considering gene expression and network data linked vesicle-mediated transport to defence. Thus, dysregulation of effector-triggered defence in Topas-Rlm7 disrupts vesicle-associated resistance against the apoplastic pathogen L. maculans.

摘要

理解 R 基因介导的抗细胞外病原体抗性对全球变暖背景下可持续粮食生产的重要性。在这里,我们表明油菜子叶对茎点霉的抗性在导入系 Topas-Rlm7 中是对温度敏感的,但在 Topas-Rlm4 中是对温度有弹性的。一组 1646 个宿主基因在 Topas-Rlm4 和 Topas-Rlm7 中对温度表现出差异表达。其中包括三个 WAKL10 基因,包括 BnaA07g20220D,代表对温度敏感的 Rlm7-1 等位基因和 Rlm4。网络分析确定了一个特定于 Topas-Rlm7 在 25°C 的 WAKL10 蛋白相互作用簇。Topas-Rlm4 网络的扩散分析确定 WRKY22 是与 ESCRT-III 复合物相关蛋白 VPS60.1 相关的调节靶点,VPS60.1 属于 WAKL10 蛋白相互作用社区。综合考虑基因表达和网络数据的基因本体术语富集分析将囊泡介导的运输与防御联系起来。因此,Topas-Rlm7 中效应子触发的防御失调破坏了对细胞外病原体茎点霉的囊泡相关抗性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35d4/10904819/e963a6e5a542/41598_2024_53643_Fig1_HTML.jpg

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