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在 中鉴定和描述 - 响应的长非编码 RNA 的全基因组分析

Genome-Wide Identification and Characterization of -Responsive lncRNAs in .

机构信息

Laboratory of Plant Disease Control and Phytopharmacy, College of Plant Protection, Nanjing Agricultural University, Nanjing 210095, China.

The Key Laboratory of Plant Immunity, Nanjing Agricultural University, Nanjing 210095, China.

出版信息

Genes (Basel). 2020 Sep 27;11(10):1135. doi: 10.3390/genes11101135.

Abstract

Although the war between wheat and has been widely investigated for years, long noncoding RNAs (lncRNAs), which have been proven to regulate important processes in the development and stress responses of plants, are still poorly known in wheat against Herein, we systematically reveal the roles of wheat lncRNAs in the process of infection by high-throughput RNA sequencing. Well over 4130 of the total 4276 differentially expressed lncRNAs were already specifically expressed at 12 h postinoculation (hpi), but only 89 of these were specifically expressed at 24 hpi, indicating that the initial stage was the crucial stage for lncRNA-mediated gene regulation of wheat defense against . Target analysis showed the lncRNAs participated in various biological stress processes and had exclusive regulation models at different infection stages. Further HO accumulation and protein ubiquitination assays supported this idea. Moreover, two lncRNAs (XLOC_302848 and XLOC_321638) were identified as Fusarium seedling blight resistance candidates by lncRNA-target expression pattern validation, and two lncRNAs (XLOC_113815, XLOC_123624) were Fusarium head blight resistance potential regulators by cross-validating the RNAseq data with the refined meta-QTL of wheat FHB resistance. These findings extend our knowledge on wheat lncRNAs response to attack and provide new insights for the functional and molecular research of future interactions between wheat and .

摘要

尽管小麦与病原菌之间的战争已经被广泛研究多年,但长链非编码 RNA(lncRNA)在小麦抵御病原菌感染过程中的作用仍知之甚少。长链非编码 RNA 已被证明可调节植物发育和应激反应中的重要过程。在此,我们通过高通量 RNA 测序系统地揭示了小麦 lncRNA 在病原菌感染过程中的作用。在接种后 12 小时(hpi),总共有 4276 个差异表达的 lncRNA 中有超过 4130 个特异性表达,但只有 89 个在 24 hpi 特异性表达,这表明初始阶段是 lncRNA 介导的小麦防御病原菌基因调控的关键阶段。靶标分析表明,lncRNA 参与了各种生物应激过程,在不同的感染阶段具有独特的调控模式。进一步的 HO 积累和蛋白质泛素化测定支持了这一观点。此外,通过 lncRNA-靶标表达模式验证,鉴定出两个 lncRNA(XLOC_302848 和 XLOC_321638)为小麦赤霉病抗性候选基因,通过与小麦赤霉病抗性精细 meta-QTL 交叉验证,鉴定出两个 lncRNA(XLOC_113815、XLOC_123624)为小麦赤霉病抗性潜在调控因子。这些发现扩展了我们对小麦 lncRNA 对病原菌攻击响应的认识,并为未来小麦与病原菌相互作用的功能和分子研究提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/107f/7601646/de0a19dcd41b/genes-11-01135-g001.jpg

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