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Transcriptional profiling of wheat (Triticum aestivum L.) during a compatible interaction with the cereal cyst nematode Heterodera avenae

机译:在与谷类囊肿线虫Heterodera avenae相容相互作用期间小麦(Triticum aestivum L.)的转录谱分析

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摘要

Cereal cyst nematode (CCN, Heterodera avenae) presents severe challenges to wheat (Triticum aestivum L.) production worldwide. An investigation of the interaction between wheat and CCN can greatly improve our understanding of how nematodes alter wheat root metabolic pathways for their development and could contribute to new control strategies against CCN. In this study, we conducted transcriptome analyses of wheat cv. Wen 19 (Wen19) by using RNA-Seq during the compatible interaction with CCN at 1, 3 and 8 days past inoculation (dpi). In total, 71,569 transcripts were identified, and 10,929 of them were examined as differentially expressed genes (DEGs) in response to CCN infection. Based on the functional annotation and orthologous findings, the protein phosphorylation, oxidation-reduction process, regulation of transcription, metabolic process, transport, and response process as well as many other pathways previously reported were enriched at the transcriptional level. Plant cell wall hydrolysis and modifying proteins, auxin biosynthesis, signalling and transporter genes were up-regulated by CCN infection to facilitate penetration, migration and syncytium establishment. Genes responding to wounding and jasmonic acid stimuli were enriched at 1 dpi. We found 16 NBS-LRR genes, 12 of which were down-regulated, indicating the repression of resistance. The expression of genes encoding antioxidant enzymes, glutathione S-transferases and UDP-glucosyltransferase was significantly up-regulated during CCN infection, indicating that they may play key roles in the compatible interaction of wheat with CCN. Taken together, the results obtained from the transcriptome analyses indicate that the genes involved in oxidation-reduction processes, induction and suppression of resistance, metabolism, transport and syncytium establishment may be involved in the compatible interaction of Wen 19 with CCN. This study provides new insights into the responses of wheat to CCN infection. These insights could facilitate the elucidation of the potential mechanisms of wheat responses to CCN.
机译:谷物囊肿线虫(CCN,杂种菊)对全世界的小麦(Triticum aestivum L.)生产提出了严峻挑战。对小麦和CCN之间相互作用的研究可以极大地增进我们对线虫如何改变小麦根部代谢途径以促进其发育的了解,并可能有助于针对CCN的新控制策略。在这项研究中,我们进行了小麦简历的转录组分析。 Wen 19(Wen19)在接种(dpi)后1、3和8天与CCN的相容性相互作用期间使用RNA-Seq。总共鉴定出71,569个转录本,其中10,929个被检测为响应CCN感染的差异表达基因(DEG)。基于功能注释和直系同源的发现,蛋白质磷酸化,氧化还原过程,转录调控,代谢过程,转运和应答过程以及先前报道的许多其他途径在转录水平上得到了丰富。植物细胞壁的水解和修饰蛋白,植物生长素的生物合成,信号传导和转运蛋白基因被CCN感染上调,以促进渗透,迁移和合胞体的建立。响应创伤和茉莉酸刺激的基因在1 dpi富集。我们发现了16个NBS-LRR基因,其中12个被下调,表明抗性被抑制。在CCN感染期间,编码抗氧化酶,谷胱甘肽S-转移酶和UDP-葡萄糖基转移酶的基因的表达显着上调,表明它们可能在小麦与CCN的相容性相互作用中起关键作用。两者合计,从转录组分析获得的结果表明,涉及氧化还原过程,诱导和抑制抗性,代谢,转运和合胞体建立的基因可能参与了Wen 19与CCN的相容相互作用。这项研究为小麦对CCN感染的反应提供了新的见解。这些见解可以帮助阐明小麦对CCN反应的潜在机制。

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