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Virus-induced gene silencing of Arabidopsis thaliana gene homologues in wheat identifies genes conferring improved drought tolerance

机译:小麦中病毒诱导的拟南芥基因同源物基因沉默鉴定出赋予抗旱性的基因

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摘要

In a non-model staple crop like wheat (Triticum aestivumI L.), functional validation of potential drought stress responsive genes identified in Arabidopsis could provide gene targets for breeding. Virus-induced gene silencing (VIGS) of genes of interest can overcome the inherent problems of polyploidy and limited transformation potential that hamper functional validation studies in wheat. In this study, three potential candidate genes shown to be involved in abiotic stress response pathways in Arabidopsis thaliana were selected for VIGS experiments in wheat. These include Era1 (enhanced response to abscisic acid), Cyp707a (ABA 8’-hydroxylase), and Sal1 (inositol polyphosphate 1-phosphatase). Gene homologues for these three genes were identified in wheat and cloned in the viral vector barley stripe mosaic virus (BSMV) in the antisense direction, followed by rub inoculation of BSMV viral RNA transcripts onto wheat plants. Quantitative real-time PCR showed that VIGS-treated wheat plants had significant reductions in target gene transcripts. When VIGS-treated plants generated for Era1 and Sal1 were subjected to limiting water conditions, they showed increased relative water content, improved water use efficiency, reduced gas exchange, and better vigour compared to water-stressed control plants inoculated with RNA from the empty viral vector (BSMV0). In comparison, the Cyp707a-silenced plants showed no improvement over BSMV0-inoculated plants under limited water condition. These results indicate that Era1 and Sal1 play important roles in conferring drought tolerance in wheat. Other traits affected by Era1 silencing were also studied. Delayed seed germination in Era1-silenced plants suggests this gene may be a useful target for developing resistance to pre-harvest sprouting.
机译:在像小麦(Triticum aestivum I L.)这样的非模式主食作物中,拟南芥中鉴定出的潜在干旱胁迫响应基因的功能验证可以为育种提供基因靶点。感兴趣基因的病毒诱导基因沉默(VIGS)可以克服多倍体固有的问题和有限的转化潜力,这些问题妨碍了小麦的功能验证研究。在这项研究中,选择了三个拟南芥非生物胁迫响应途径中涉及的潜在候选基因用于小麦的VIGS实验。其中包括Era1(对脱落酸的增强反应),Cyp707a(ABA 8'-羟化酶)和Sal1(肌醇多磷酸1-磷酸酶)。在小麦中鉴定了这三个基因的基因同源物,并以反义方向将其克隆到病毒载体大麦条纹花叶病毒(BSMV)中,然后将BSMV病毒RNA转录物摩擦接种到小麦植株上。实时定量PCR显示,VIGS处理的小麦植株的靶基因转录本明显减少。当将针对Era1和Sal1生成的VIGS处理的植物置于有限的水分条件下时,与用水胁迫的对照植物接种空病毒RNA相比,它们显示出更高的相对含水量,更高的水分利用效率,减少的气体交换以及更好的活力。向量(BSMV0)。相比之下,在有限的水分条件下,Cyp707a沉默的植物没有显示出比BSMV0接种的植物有所改善。这些结果表明,Era1和Sal1在赋予小麦耐旱性中起重要作用。还研究了受Era1沉默影响的其他特征。在被Era1沉默的植物中延迟的种子发芽表明该基因可能是发展对收获前发芽的抗性的有用靶标。

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