首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Genome-Wide Identification Molecular Evolution and Expression Profiling Analysis of Pectin Methylesterase Inhibitor Genes in Brassica campestris ssp. chinensis
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Genome-Wide Identification Molecular Evolution and Expression Profiling Analysis of Pectin Methylesterase Inhibitor Genes in Brassica campestris ssp. chinensis

机译:甘蓝型油菜果胶中果胶甲酯酶抑制剂基因的全基因组鉴定分子进化和表达谱分析中华

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摘要

Pectin methylesterase inhibitor genes (PMEIs) are a large multigene family and play crucial roles in cell wall modifications in plant growth and development. Here, a comprehensive analysis of the PMEI gene family in Brassica campestris, an important leaf vegetable, was performed. We identified 100 Brassica campestris PMEI genes (BcPMEIs), among which 96 BcPMEIs were unevenly distributed on 10 chromosomes and nine tandem arrays containing 20 BcPMEIs were found. We also detected 80 pairs of syntenic PMEI orthologs. These findings indicated that whole-genome triplication (WGT) and tandem duplication (TD) were the main mechanisms accounting for the current number of BcPMEIs. In evolution, BcPMEIs were retained preferentially and biasedly, consistent with the gene balance hypothesis and two-step theory, respectively. The molecular evolution analysis of BcPMEIs manifested that they evolved through purifying selection and the divergence time is in accordance with the WGT data of B. campestris. To obtain the functional information of BcPMEIs, the expression patterns in five tissues and the cis-elements distributed in promoter regions were investigated. This work can provide a better understanding of the molecular evolution and biological function of PMEIs in B. campestris.
机译:果胶甲基酯酶抑制剂基因(PMEIs)是一个大型多基因家族,在植物生长和发育中的细胞壁修饰中起关键作用。在这里,对一种重要的叶菜菜油菜PMEI基因家族进行了全面分析。我们鉴定了100个芸苔属植物PMEI基因(BcPMEIs),其中96个BcPMEIs在10个染色体上分布不均,发现了9个串联的包含20个BcPMEIs的阵列。我们还检测了80对同步PMEI直系同源物。这些发现表明,全基因组三重复(WGT)和串联重复(TD)是解释当前BcPMEI数量的主要机制。在进化中,BcPMEIs被优先和有偏地保留,分别与基因平衡假设和两步理论相一致。 BcPMEIs的分子进化分析表明,它们是通过纯化选择而进化的,其发散时间与野油菜的WGT数据一致。为了获得BcPMEIs的功能信息,研究了在五个组织中的表达模式和在启动子区域分布的顺式元件。这项工作可以更好地理解 B中PMEI的分子进化和生物学功能。桔梗

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