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In silico structural homology modeling of nif A protein of rhizobial strains in selective legume plants

机译:选择性豆科植物中根瘤菌菌株nif A蛋白的计算机结构同源性建模

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摘要

Symbiosis is a complex genetic regulatory biological evolution which is highly specific pertaining to plant species and microbial strains. Biological nitrogen fixation in legumes is a functional combination of nodulation by nod genes and regulation by nif, fix genes. Three rhizobial strains (Rhizobium leguminosarum, Bradyrhizobium japonicum, and Mesorhizobium ciceri) that we considered for in silico analysis of nif A are proved to be the best isolates with respect to N2 fixing for ground nut, chick pea and soya bean (in vitro) out of 47 forest soil samples. An attempt has been made to understand the structural characteristics and variations of nif genes that may reveal the factors influencing the nitrogen fixation. The primary, secondary and tertiary structure of nif A protein was analyzed by using multiple bioinformatics tools such as chou-Fasman, GOR, ExPasy ProtParam tools, Prosa -web. Literature shows that the homology modeling of nif A protein have not been explored yet which insisted the immediate development for better understanding of nif A structure and its influence on biological nitrogen fixation. In the present predicted 3D structure, the nif A protein was analyzed by three different software tools (Phyre2, Swiss model, Modeller) and validated accordingly which can be considered as an acceptable model. However further in silico studies are suggested to determine the specific factors responsible for nitrogen fixing in the present three rhizobial strains.
机译:共生是一种复杂的遗传调控生物学进化,与植物物种和微生物菌株有关,具有高度特异性。豆科植物的生物固氮作用是nod基因固结和nif fix基因调控的功能组合。我们考虑对nif A进行计算机分析时考虑的三种根瘤菌菌株(豆科根瘤菌,日本根瘤菌和中间根瘤菌)是分离N2固定花生,鹰嘴豆和大豆(体外)的最佳菌株。 47种森林土壤样品。试图了解nif基因的结构特征和变异可能揭示影响固氮的因素。通过使用多种生物信息学工具(例如chou-Fasman,GOR,ExPasy ProtParam工具,Prosa -web)分析了nif A蛋白的一级,二级和三级结构。文献表明,nif A蛋白的同源性模型尚未探索,它要求立即发展以更好地了解nif A结构及其对生物固氮的影响。在目前预测的3D结构中,通过三种不同的软件工具(Phyre2,Swiss模型,Modeller)对nif A蛋白进行了分析,并进行了相应的验证,可以将其视为可接受的模型。但是,建议进行进一步的计算机研究,以确定造成当前三种根瘤菌菌株中固氮的具体因素。

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