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Genome-wide analysis and evolutionary study of sucrose non-fermenting 1-related protein kinase 2 (SnRK2) gene family members in Arabidopsis and Oryza

机译:拟南芥和水稻中蔗糖非发酵型1相关蛋白激酶2(SnRK2)基因家族成员的全基因组分析和进化研究

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摘要

The over-expression of plant specific SnRK2 gene family members by hyperosmotic stress and some by abscisic acid is well established. In this report, we have analyzed the evolution of SnRK2 gene family in different plant lineages including green algae, moss, lycophyte, dicot and monocot. Our results provide some evidences to indicate that the natural selection pressure had considerable influence on ris-regulatory promoter region and coding region of SnRK2 members in Arabidopsis and Oryza independently through time. Observed degree of sequence/motif conservation amongst SnRK2 homolog in all the analyzed plant lineages strongly supported their inclusion as members of this family. The chromosomal distributions of duplicated SnRK2 members have also been analyzed in Arabidopsis and Oryza. Massively Parallel Signature Sequencing (MPSS) database derived expression data and the presence of abiotic stress related promoter elements within the 1 kb upstream promoter region of these SnRK2 family members further strengthen the observations of previous workers. Additionally, the phylogenetic relationships of SnRK2 have been studied in all plant lineages along with their respective exon-intron structural patterns. Our results indicate that the ancestral SnRK2 gene of land plants gradually evolved by duplication and diversification and modified itself through exon-intron loss events to survive under environmental stress conditions.
机译:高渗胁迫和脱落酸对植物特异性SnRK2基因家族成员的过度表达是公认的。在本报告中,我们分析了SnRK2基因家族在不同植物谱系中的进化,包括绿藻,苔藓,苔藓植物,双子叶植物和单子叶植物。我们的结果提供了一些证据表明,自然选择压力随时间独立地对拟南芥和稻中SnRK2成员的ris-调节启动子区域和编码区域具有相当大的影响。在所有分析的植物谱系中观察到的SnRK2同源序列中的序列/基序保守程度强烈支持它们被纳入该家族。在拟南芥和稻中也分析了重复的SnRK2成员的染色体分布。大规模并行签名测序(MPSS)数据库获得的表达数据以及这些SnRK2家族成员1 kb上游启动子区域内存在非生物胁迫相关启动子元件,进一步加强了以前工作人员的观察力。另外,已经在所有植物谱系中研究了SnRK2的系统发育关系以及它们各自的外显子-内含子结构模式。我们的结果表明,陆地植物的祖先SnRK2基因通过复制和多样化逐渐进化,并通过外显子-内含子损失事件进行了自我修饰,以在环境胁迫条件下生存。

著录项

  • 来源
    《Computational biology and chemistry》 |2014年第4期|59-70|共12页
  • 作者单位

    Department of Biological Sciences (Section Biotechnology), Presidency University, 86/1 College Street, Kolkata 700073, India,Department of Biological Sciences (Section Botany), Presidency University, 86/1 College Street, Kolkata 700073, India;

    Department of Biological Sciences (Section Biotechnology), Presidency University, 86/1 College Street, Kolkata 700073, India;

    Department of Biological Sciences (Section Biotechnology), Presidency University, 86/1 College Street, Kolkata 700073, India,Department of Biological Sciences (Section Botany), Presidency University, 86/1 College Street, Kolkata 700073, India;

    Department of Biological Sciences (Section Botany), Presidency University, 86/1 College Street, Kolkata 700073, India;

    Department of Biological Sciences (Section Biotechnology), Presidency University, 86/1 College Street, Kolkata 700073, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Abiotic stress; Phylogenetic tree; Promoter element; SNF1-related protein kinase 2; SnRK2;

    机译:非生物胁迫;系统发育树;启动子;SNF1相关蛋白激酶2;SnRK2;

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