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转录组分析阐明了甜瓜对辣椒疫霉抗性相关的基因。

Transcriptome analysis clarified genes involved in resistance to Phytophthora capsici in melon.

机构信息

Zhengzhou Fruit Research Institute, Chinese Academy of Agricultural Sciences, Zhengzhou, Henan Province, China.

Hainan Sanya Trial Center for Crops Breeding of Xinjiang Academy of Agricultural Sciences, Sanya, Hainan Province, China.

出版信息

PLoS One. 2020 Feb 12;15(2):e0227284. doi: 10.1371/journal.pone.0227284. eCollection 2020.

Abstract

Phytophthora blight caused by Phytophthora capsici is a devastating disease for melon plant. However, the underlying resistance mechanisms are still poorly understood. In this study, the transcriptome differences between the resistant ZQK9 and susceptible E31 at 0, 3, and 5 days post-inoculation (dpi) were identified by RNA-seq. A total of 1,195 and 6,595 differentially expressed genes (DEGs) were identified in ZQK9 and E31, respectively. P. capsici infection triggered massive transcript changes in the inoculated tissues. Genes related to plant defense responses were activated, which was reflected by a lot of up-regulated DEGs involved in pathogenesis-related (PR) genes, hormones biosynthesis and signal transduction, secondary metabolites biosynthesis and cell wall modification in resistant ZQK9. The dataset generated in this study may provide a basis for identifying candidate resistant genes in melon against P. capsici and lay a foundation for further research on the molecular mechanisms.

摘要

辣椒疫霉引起的疫病是一种毁灭性的甜瓜病害。然而,其潜在的抗性机制仍知之甚少。在这项研究中,通过 RNA-seq 鉴定了抗性 ZQK9 和敏感 E31 在接种后 0、3 和 5 天(dpi)的转录组差异。分别在 ZQK9 和 E31 中鉴定到 1195 和 6595 个差异表达基因(DEGs)。辣椒疫霉感染在接种组织中引发了大量的转录变化。与植物防御反应相关的基因被激活,这反映在大量上调的 DEGs 中,这些基因涉及到与发病机制相关(PR)基因、激素生物合成和信号转导、次生代谢物生物合成和细胞壁修饰有关。本研究中生成的数据集可能为鉴定甜瓜对辣椒疫霉的抗性候选基因提供基础,并为进一步研究分子机制奠定基础。

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