首页> 美国卫生研究院文献>Scientific Reports >Transcript expression profiling in two contrasting cultivars and molecular cloning of a SKP-1 like gene a component of SCF-ubiquitin proteasome system from mungbean Vigna radiate L.
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Transcript expression profiling in two contrasting cultivars and molecular cloning of a SKP-1 like gene a component of SCF-ubiquitin proteasome system from mungbean Vigna radiate L.

机译:在两个相反的品种中进行转录表达谱分析并克隆了一个SKP-1样基因该基因是来自绿豆Vi豆的SCF-泛素蛋白酶体系统的一个组成部分。

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摘要

Protein degradation and turnover under various environmental stresses is basically regulated by ubiquitin-proteasome system (UPS), of which SKP1 is a very essential component. Isolation and cloning of an identified potential stress responsive candidate gene SKP1, was successfully done for the first time to fathom the role of SKP1 in drought tolerance at genetic level in drought tolerant mungbean cultivar Pratap, which was screened after a detailed physio-biochemical screening amongst seven popular mungbean cultivars. The cloned gene SKP1 (accession number ) is 550 bp in length, encodes 114 amino acids. It shows high sequence homology with SKP1 from Zea mays (). The protein expression of isolated SKP1 was confirmed by GUS fused expression using a Histochemical assay under control as well as under drought stress. Further, up-regulation in relative expression level of SKP1 in different plant parts under drought stress confirmed its utility as a potential drought responsive candidate gene certainly demanding extensive genetic research for further incorporation in breeding programs. Moreover, the structure of VrSKP1 (Vigna radiata SKP1) has been modelled, validated and an Essential Dynamics (ED) was done on the Molecular Dynamics (MD) simulation trajectories for filtering large-scale concerted motions. Free-energy calculations on the ED revealed a complex free-energy landscape (FEL) implying the conformational diversity of the modelled VrSPK1 protein.
机译:蛋白质在各种环境压力下的降解和周转基本上是由泛素-蛋白酶体系统(UPS)调控的,其中SKP1是非常重要的组成部分。首次成功地完成了已鉴定的潜在胁迫响应候选基因SKP1的分离和克隆,以从遗传水平上了解耐旱绿豆品种Pratap中SKP1在抗旱性中的作用,该过程在经过详细的生理生化筛选后进行了筛选七个受欢迎的绿豆品种。克隆的基因SKP1(登录号)长550 bp,编码114个氨基酸。它显示了与玉米(Zea mays)的SKP1的高序列同源性。通过在控制下以及干旱胁迫下的组织化学测定,通过GUS融合表达来证实分离的SKP1的蛋白表达。此外,干旱胁迫下不同植物部位SKP1相对表达水平的上调证实了其作为潜在的干旱响应候选基因的效用,无疑需要广泛的遗传学研究才能进一步纳入育种程序。此外,已经对VrSKP1(Vigna radiata SKP1)的结构进行了建模,验证,并在分子动力学(MD)模拟轨迹上完成了基本动力学(ED),以过滤大规模的协调运动。 ED上的自由能计算显示了复杂的自由能态势(FEL),这意味着建模的VrSPK1蛋白的构象多样性。

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