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细菌鞭毛蛋白诱导的模式触发免疫过程中的时间序列转录组

Time-series transcriptome of during bacterial flagellin-induced pattern-triggered immunity.

作者信息

Ogasahara Tsubasa, Kouzai Yusuke, Watanabe Megumi, Takahashi Akihiro, Takahagi Kotaro, Kim June-Sik, Matsui Hidenori, Yamamoto Mikihiro, Toyoda Kazuhiro, Ichinose Yuki, Mochida Keiichi, Noutoshi Yoshiteru

机构信息

Graduate School of Environmental and Life Science, Okayama University, Okayama, Japan.

Bioproductivity Informatics Research Team, RIKEN Center for Sustainable Resource Science, Yokohama, Japan.

出版信息

Front Plant Sci. 2022 Sep 15;13:1004184. doi: 10.3389/fpls.2022.1004184. eCollection 2022.

Abstract

Plants protect themselves from microorganisms by inducing pattern-triggered immunity (PTI) recognizing microbe-associated molecular patterns (MAMPs), conserved across many microbes. Although the MAMP perception mechanism and initial events during PTI have been well-characterized, knowledge of the transcriptomic changes in plants, especially monocots, is limited during the intermediate and terminal stages of PTI. Here, we report a time-series high-resolution RNA-sequencing (RNA-seq) analysis during PTI in the leaf disks of . We identified 6,039 differentially expressed genes (DEGs) in leaves sampled at 0, 0.5, 1, 3, 6, and 12 hours after treatment (hat) with the bacterial flagellin peptide flg22. The k-means clustering method classified these DEGs into 10 clusters (6 upregulated and 4 downregulated). Based on the results, we selected 10 PTI marker genes in . Gene ontology (GO) analysis suggested a tradeoff between defense responses and photosynthesis during PTI. The data indicated the recovery of photosynthesis started at least at 12 hat. Over-representation analysis of transcription factor genes and cis-regulatory elements in DEG promoters implied the contribution of 12 WRKY transcription factors in plant defense at the early stage of PTI induction.

摘要

植物通过诱导模式触发免疫(PTI)来保护自身免受微生物侵害,PTI可识别许多微生物中保守的微生物相关分子模式(MAMP)。尽管MAMP识别机制和PTI过程中的初始事件已得到充分表征,但在PTI的中期和末期阶段,植物尤其是单子叶植物转录组变化的相关知识仍然有限。在此,我们报告了在……叶片圆片中PTI过程中的时间序列高分辨率RNA测序(RNA-seq)分析。我们在使用细菌鞭毛蛋白肽flg22处理后0、0.5、1、3、6和12小时(处理后小时数,hat)采集的叶片中鉴定出6039个差异表达基因(DEG)。k均值聚类方法将这些DEG分为10个簇(6个上调和4个下调)。基于这些结果,我们在……中选择了10个PTI标记基因。基因本体(GO)分析表明,PTI过程中防御反应和光合作用之间存在权衡。数据表明光合作用的恢复至少在处理后12小时开始。对DEG启动子中转录因子基因和顺式调控元件的过表达分析表明,12个WRKY转录因子在PTI诱导早期的植物防御中发挥了作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9783/9521188/1b6db9707370/fpls-13-1004184-g001.jpg

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