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In Silico identification of SNP diversity in cultivated and wild tomato species: insight from molecular simulations

机译:在计算机模拟中鉴定栽培和野生番茄物种的SNP多样性:分子模拟的见解

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摘要

Single Nucleotide Polymorphisms (SNPs), an important source of genetic variations, are often used in crop improvement programme. The present study represented comprehensive In silico analysis of nucleotide polymorphisms in wild (Solanum habrochaites) and cultivated (Solanum lycopersicum) species of tomato to explore the consequence of substitutions both at sequence and structure level. A total of 8978 SNPs having Ts/Tv (Transition/Transversion) ratio 1.75 were identified from the Expressed Sequence Tag (EST) and Next Generation Sequence (NGS) data of both the species available in public databases. Out of these, 1838 SNPs were non-synonymous and distributed in 988 protein coding genes. Among these, 23 genes containing 96 SNPs were involved in traits markedly different between the two species. Furthermore, there were 28 deleterious SNPs distributed in 27 genes and a few of these genes were involved in plant pathogen interaction and plant hormone pathways. Molecular docking and simulations of several selected proteins showed the effect of SNPs in terms of compactness, conformation and interaction ability. Observed SNPs exhibited various types of motif binding effects due to nucleotide changes. SNPs that provide the evidence of differential motif binding and interaction behaviour could be effectively used for the crop improvement program.
机译:单核苷酸多态性(SNP)是遗传变异的重要来源,通常用于作物改良计划中。本研究代表了野生(Solanum habrochaites)和栽培(Solanum lycopersicum)番茄物种中核苷酸多态性的全面计算机模拟分析,以探索在序列和结构水平上取代的结果。从公共数据库中可用的两种物种的表达序列标签(EST)和下一代序列(NGS)数据中鉴定出总共8978个Ts / Tv(转化/转化)比率为1.75的SNP。其中的1838个SNP不是同义的,分布在988个蛋白质编码基因中。其中,包含96个SNP的23个基因参与了两个物种之间显着不同的性状。此外,有28个有害SNP分布在27个基因中,其中一些与植物病原体相互作用和植物激素途径有关。分子对接和几种选定蛋白质的模拟显示了SNP在紧密度,构象和相互作用能力方面的作用。观察到的SNP由于核苷酸变化而表现出各种类型的基序结合作用。提供差异基序结合和相互作用行为的证据的SNP可以有效地用于作物改良计划。

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