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Salt tolerance response revealed by RNA-Seq in a diploid halophytic wild relative of sweet potato

机译:RNA-Seq揭示的甘薯二倍体盐生野生亲缘植物的耐盐反应

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摘要

Crop wild relatives harbor exotic and novel genetic resources, which hold great potential for crop improvement. Ipomoea imperati is a wild diploid relative of sweet potato with the capability of high salinity tolerance. We compared the transcriptomes of I. imperati under salt stress vs. control to identify candidate genes and pathways involved in salt response. De novo assembly produced 67,911 transcripts with a high depth of coverage. A total of 39,902 putative genes were assigned annotations, and 936 and 220 genes involved in salt response in roots and leaves, respectively. Functional analysis indicated a whole system response during salt stress in I. imperati, which included four metabolic processes: sensory initiation, transcriptional reprogramming, cellular protein component change, and cellular homeostasis regulation. We identified a number of candidate genes involved in the ABA signaling pathway, as well as transcription factors, transporters, antioxidant enzymes, and enzymes associated with metabolism of synthesis and catalysis. Furthermore, two membrane transporter genes, including vacuole cation/proton exchanger and inositol transporter, were considered to play important roles in salt tolerance. This study provided valuable information not only for understanding the genetic basis of ecological adaptation but also for future application in sweet potato and other crop improvements.
机译:作物野生近缘种具有外来的和新颖的遗传资源,它们具有改良作物的巨大潜力。 Impoea imperati是甘薯的野生二倍体近缘种,具有高耐盐性。我们比较了盐胁迫与对照下的I. imperati转录组,以鉴定参与盐反应的候选基因和途径。从头汇编产生了67,911个成绩单,覆盖面广。总共为39,902个推定基因分配了注释,分别有936和220个基因参与了根和叶的盐分响应。功能分析表明,在无盐鸢尾盐胁迫期间,整个系统响应包括四个代谢过程:感觉启动,转录重编程,细胞蛋白成分变化和细胞稳态调节。我们确定了许多与ABA信号通路有关的候选基因,以及转录因子,转运蛋白,抗氧化酶以及与合成和催化代谢相关的酶。此外,两个膜转运蛋白基因,包括液泡阳离子/质子交换剂和肌醇转运蛋白,被认为在耐盐性中起重要作用。这项研究不仅为了解生态适应的遗传基础,而且为将来在红薯和其他农作物改良中的应用提供了宝贵的信息。

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