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Computational internal sequence repeats analysis of accelerated evolution and the role of extensins under abiotic and biotic stresses

机译:计算内部序列重复分析非生物和生物胁迫下的加速进化和延伸蛋白的作用

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Abstract: Extensins are hydroxyproline-rich glycoproteins present in the plant cell wall. Accelerated evolution and the role of extensins involved in abiotic stresses, like gravitational stress and tension wood formation, and biotic stress, like pathogenic resistance, were investigated through computational internal sequence repeats analysis of their sequences. Multiple sequence alignment analysis of extensin-1 and extensin-2, present in both herbs and trees, was used to investigate their role in gravitational stress and tension wood formation. The role of extensins in pathogenic resistance was investigated by showing the existence of circular permutation in both extensin-1 and extensin-2 sequences between plants of Fabaceae. It was analyzed through Dot plots, and the study predicted that many partial circular permutations exist between sequences of different length. The clustering study of the internal sequence repeats of extensin family through phylogenetic analysis and reconstruction of patterns of repeat identities between sequences showed that unequal crossover exists in extensin-2. From the existence of unequal crossover nature in the circularly permuted extensin-2, accelerated evolution is indicated by the pattern of repeats in herbaceous plants of the Fabaceae family and trees of different taxa, in addition to pathogenic resistance.
机译:摘要:延伸蛋白是存在于植物细胞壁中的富含羟脯氨酸的糖蛋白。通过对序列进行内部序列重复分析,研究了引力蛋白在引力应力和张力木材形成等非生物胁迫中的加速进化和作用,以及诸如病原体抗性等生物胁迫。草本植物和树木中存在的extensin-1和extensin-2的多序列比对分析用于研究它们在重力和张力木材形成中的作用。通过显示Fabaceae植物之间extensin-1和extensin-2序列中存在环状排列,研究了extensins在致病性抗性中的作用。通过点图对其进行了分析,该研究预测在不同长度的序列之间存在许多部分圆形置换。通过系统进化分析和序列间重复同一性模式的重建,对extensin家族内部序列重复序列进行聚类研究,结果表明extensin-2存在不相等的交叉。由于圆形排列的extensin-2中存在不等的交换性质,因此,除了有致病性抗性外,Fabaceae家族的草本植物和不同分类单元的树木中的重复序列还表明了进化的加速。

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