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首页> 外文期刊>Plant Biotechnology Journal >Virus-induced gene silencing of Withania somnifera squalene synthase negatively regulates sterol and defence-related genes resulting in reduced withanolides and biotic stress tolerance
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Virus-induced gene silencing of Withania somnifera squalene synthase negatively regulates sterol and defence-related genes resulting in reduced withanolides and biotic stress tolerance

机译:病毒诱导的含有Somnifera Squalene Synalene Synthase的基因沉默负调节甾醇和防御相关基因,导致随着泛醇和生物应力耐受性降低

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Withania somnifera (L.) Dunal is an important Indian medicinal plant that produces withanolides, which are triterpenoid steroidal lactones having diverse biological activities. To enable fast and efficient functional characterization of genes in this slow-growing and difficult-to-transform plant, a virus-induced gene silencing (VIGS) was established by silencing phytoene desaturase (PDS) and squalene synthase (SQS). VIGS of the gene encoding SQS, which provides precursors for triterpenoids, resulted in significant reduction of squalene and withanolides, demonstrating its application in studying withanolides biosynthesis in W. somnifera leaves. A comprehensive analysis of gene expression and sterol pathway intermediates in WsSQS-vigs plants revealed transcriptional modulation with positive feedback regulation of mevalonate pathway genes, and negative feed-forward regulation of downstream sterol pathway genes including DWF1 (delta-24-sterol reductase) and CYP710A1 (C-22-sterol desaturase), resulting in significant reduction of sitosterol, campesterol and stigmasterol. However, there was little effect of SQS silencing on cholesterol, indicating the contribution of sitosterol, campesterol and stigmasterol, but not of cholesterol, towards withanolides formation. Branch-point oxidosqualene synthases in WsSQS-vigs plants exhibited differential regulation with reduced CAS (cycloartenol synthase) and cycloartenol, and induced BAS (beta-amyrin synthase) and b-amyrin. Moreover, SQS silencing also led to the down-regulation of brassinosteroid-6-oxidase-2 (BR6OX2), pathogenesis-related (PR) and nonexpressor of PR (NPR) genes, resulting in reduced tolerance to bacterial and fungal infection as well as to insect feeding. Taken together, SQS silencing negatively regulated sterol and defence-related genes leading to reduced phytosterols, withanolides and biotic stress tolerance, thus implicating the application of VIGS for functional analysis of genes related to withanolides formation in W. somnifera leaves.
机译:WITANIA SOMNIFERA(L.)DUNAL是一种重要的印度药用植物,生产甘蔗糖苷,这是具有多种生物活性的三萜类固醇蛋白质。为了在这种缓慢增长和难以变化的植物中实现基因的快速有效的功能表征,通过沉默植物去饱和酶(Pds)和Squalene合酶(SQS)来建立病毒诱导的基因沉默(Vigs)。编码SQS的基因的Vigs,它为三萜类化合物提供前体,导致角鲨烯和甘氨酸的显着降低,证明了其在W. Somnifera叶中的Weallides生物合成研究中的应用。 WSSQS-Vigs植物中基因表达和甾醇途径中间体的综合分析显示了甲羟戊酯途径基因的阳性反馈调节,以及下游甾醇途径基因的负前向调节,包括DWF1(Delta-24-甾醇还原酶)和CYP710A1 (C-22甾醇去饱和酶),导致谷甾醇,炉甾醇和斯蒂姆甾醇显着减少。然而,SQS沉默对胆固醇的影响几乎没有效果,表明谷甾醇,炉甾醇和甾醇,而不是胆固醇的贡献,往甘醇醇地形成。 WSSQS-Vigs植物中的分支点氧化喹啉合成酶用缩小的CAS(环丁烯醇合成酶)和环丁烯酚,以及诱导的BAS(β-淀粉合酶)和B-丙烯,表现出差分调节。此外,SQS沉默也导致了PR(NPR)基因的芸苔类固醇-6-氧化酶-2(BR6Ox2),发病相关(PR)和非重症体的下调,导致对细菌和真菌感染的耐受性降低以及鸟类喂养。 SQS沉默的SQS沉默的调节甾醇和防御相关基因导致植物甾醇,随胰岛素和生物应激耐受性降低,从而暗示在W.Semnifera叶中与甘露糖苷形成相关的基因的功能分析。

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