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AAC as a Potential Target Gene to Control Verticillium dahliae

机译:AAC作为控制黄萎病的潜在靶基因

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摘要

Verticillium dahliae invades the roots of host plants and causes vascular wilt, which seriously diminishes the yield of cotton and other important crops. The protein AAC (ADP, ATP carrier) is responsible for transferring ATP from the mitochondria into the cytoplasm. When V. dahliae protoplasts were transformed with short interfering RNAs (siRNAs) targeting the VdAAC gene, fungal growth and sporulation were significantly inhibited. To further confirm a role for VdAAC in fungal development, we generated knockout mutants (ΔVdACC). Compared with wild-type V. dahliae (Vd wt), ΔVdAAC was impaired in germination and virulence; these impairments were rescued in the complementary strains (ΔVdAAC-C). Moreover, when an RNAi construct of VdAAC under the control of the 35S promoter was used to transform Nicotiana benthamiana, the expression of VdAAC was downregulated in the transgenic seedlings, and they had elevated resistance against V. dahliae. The results of this study suggest that VdAAC contributes to fungal development, virulence and is a promising candidate gene to control V. dahliae. In addition, RNAi is a highly efficient way to silence fungal genes and provides a novel strategy to improve disease resistance in plants.
机译:黄萎病菌侵染寄主植物的根部并引起维管束枯萎,严重降低棉花和其他重要农作物的产量。蛋白质AAC(ADP,ATP载体)负责将ATP从线粒体转移到细胞质中。当用靶向VdAAC基因的短干扰RNA(siRNA)转化大丽菌原生质体时,真菌的生长和孢子形成被显着抑制。为了进一步确认VdAAC在真菌发育中的作用,我们生成了敲除突变体(ΔVdACC)。与野生型V. dahliae(Vd wt)相比,ΔVdAAC的发芽和毒力受损;这些损伤在互补株(ΔVdAAC-C)中得以挽救。此外,当在35S启动子控制下的VdAAC的RNAi构建体被用于转化烟草Nicotiana benthamiana时,VdAAC的表达在转基因幼苗中被下调,并且它们对大丽花弧菌具有升高的抗性。这项研究的结果表明,VdAAC有助于真菌的发育,致病力,并且是控制大丽弧菌的有前途的候选基因。此外,RNAi是沉默真菌基因的高效方法,并提供了提高植物抗病性的新策略。

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