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首页> 外文期刊>Molecular Genetics and Genomics >Evolution of non-specific lipid transfer protein (nsLTP) genes in the Poaceae family: their duplication and diversity
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Evolution of non-specific lipid transfer protein (nsLTP) genes in the Poaceae family: their duplication and diversity

机译:禾本科家族中非特异性脂质转移蛋白(nsLTP)基因的进化:它们的重复和多样性

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摘要

Previously, the genes encoding non-specific lipid transfer proteins (nsLTPs) of the Poaceae family appear to evidence different genomic distribution and somewhat different shares of EST clones, which is suggestive of independent duplication(s) followed by functional diversity. To further evaluate the evolutionary fate of the Poaceae nsLTP genes, we have identified Ka/Ks values, conserved, mutated or lost cis-regulatory elements, responses to several elicitors, genome-wide expression profiles, and nsLTP gene-coexpression networks of both (or either) wheat and rice. The Ka/Ks values within each group and between groups appeared to be similar, but not identical, in both species. The conserved cis-regulatory elements, e.g. the RY repeat (CATGCA) element related to ABA regulation in group A, might be reflected in some degree of long-term conservation in transcriptional regulation postdating speciation. In group A, wheat nsLTP genes, with the exception of TaLTP4, evidenced responses similar to those of plant elicitors; however, the rice nsLTP genes evidenced differences in expression profiles, even though the genes of both species have undergone purifying selection, thereby suggesting their independent functional diversity. The expression profiles of rice nsLTP genes with a microarray dataset of 155 gene expression omnibus sample (GSM) plates suggest that subfunctionalization is not the sole mechanism inherent to the evolutionary history of nsLTP genes but may, rather, function in concert with other mechanism(s). As inferred by the nsLTP gene-coexpression networks, the functional diversity of nsLTP genes appears not to be randomized, but rather to be specialized in the direction of specific biological processes over evolutionary time.
机译:以前,禾本科(Poaceae)家族的编码非特异性脂质转移蛋白(nsLTPs)的基因似乎证明了不同的基因组分布和EST克隆的份额有所不同,这暗示了独立的复制以及随后的功能多样性。为了进一步评估禾本科nsLTP基因的进化命运,我们确定了Ka / Ks值,保守,突变或丢失的顺式调控元件,对几种引发子的反应,全基因组表达谱以及两者的nsLTP基因共表达网络(或小麦和大米。在两个物种中,每个组内以及组之间的Ka / Ks值似乎相似但不相同。保守的顺式调节元件,例如。 A组中与ABA调控有关的RY重复(CATGCA)元素可能反映在物种形成后转录调控的一定程度的长期保守性中。在A组中,除TaLTP4外,小麦nsLTP基因的应答与植物诱导子相似。然而,即使两个物种的基因都经过纯化选择,水稻nsLTP基因也显示出表达谱的差异,从而表明它们具有独立的功能多样性。水稻nsLTP基因的表达谱具有155个基因表达综合样品(GSM)板的微阵列数据集,表明亚功能化不是nsLTP基因进化史固有的唯一机制,而是可能与其他机制协同作用)。正如nsLTP基因共表达网络所推断的那样,nsLTP基因的功能多样性似乎不是随机的,而是专门针对进化过程中特定生物学过程的方向。

著录项

  • 来源
    《Molecular Genetics and Genomics》 |2008年第5期|481-497|共17页
  • 作者单位

    Institute of Life Science and Natural Resources Korea University Seoul 136-713 South Korea;

    Department of Plant Biotechnology Dongguk University Seoul 100-715 South Korea;

    Department of Plant Biotechnology Dongguk University Seoul 100-715 South Korea;

    Division of Biotechnology Korea University Seoul 136-713 South Korea;

    Division of Biotechnology Korea University Seoul 136-713 South Korea;

    Department of Plant Biotechnology Dongguk University Seoul 100-715 South Korea;

    Division of Biotechnology Korea University Seoul 136-713 South Korea;

    Division of Biotechnology Korea University Seoul 136-713 South Korea;

    Division of Biotechnology Korea University Seoul 136-713 South Korea;

    Division of Biotechnology Korea University Seoul 136-713 South Korea;

    Department of Plant Biotechnology Dongguk University Seoul 100-715 South Korea;

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

    Duplication; Evolutionary fate; Functional diversity; Gene family; nsLTP; Poaceae;

    机译:复制进化命运功能多样性基因家族nsLTP禾本科;

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