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Comparative genomic analysis of the Lipase3 gene family in five plant species reveals distinct evolutionary origins

机译:五种植物物种中脂肪酶3基因家族的比较基因组分析揭示了不同的进化起源

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摘要

Lipases are physiologically important and ubiquitous enzymes that share a conserved domain and are classified into eight different families based on their amino acid sequences and fundamental biological properties. The Lipase3 family of lipases was reported to possess a canonical fold typical of alpha/beta hydrolases and a typical catalytic triad, suggesting a distinct evolutionary origin for this family. Genes in the Lipase3 family do not have the same functions, but maintain the conserved Lipase3 domain. There have been extensive studies of Lipase3 structures and functions, but little is known about their evolutionary histories. In this study, all lipases within five plant species were identified, and their phylogenetic relationships and genetic properties were analyzed and used to group them into distinct evolutionary families. Each identified lipase family contained at least one dicot and monocot Lipase3 protein, indicating that the gene family was established before the split of dicots and monocots. Similar intron/exon numbers and predicted protein sequence lengths were found within individual groups. Twenty-four tandem Lipase3 gene duplications were identified, implying that the distinctive function of Lipase3 genes appears to be a consequence of translocation and neofunctionalization after gene duplication. The functional genes EDS1, PAD4, and SAG101 that are reportedly involved in pathogen response were all located in the same group. The nucleotide diversity (Dxy) and the ratio of nonsynonymous to synonymous nucleotide substitutions rates (Ka/Ks) of the three genes were significantly greater than the average across the genomes. We further observed evidence for selection maintaining diversity on three genes in the Toll-Interleukin-1 receptor type of nucleotide binding/leucine-rich repeat immune receptor (TIR-NBS LRR) immunity-response signaling pathway, indicating that they could be vulnerable to pathogen effectors.
机译:脂肪酶是生理学上的重要和普遍存在的酶,其共享保守结构域,并基于其氨基酸序列和基本的生物学性质分为八个不同的家族。据报道,脂肪酶3家族脂肪酶具有典型的α/β水解酶和典型的催化三合会的规范折叠,这表明这个家庭的不同进化起源。脂肪酶3家族中的基因没有相同的功能,但保持保守的脂肪酶3结构域。对脂肪酶3结构和功能进行了广泛的研究,但对其进化历史知之甚少。在这项研究中,鉴定了五种植物物种内的所有脂肪酶,分析了它们的系统发育关系和遗传性质并用于将它们分成不同的进化家族。每个鉴定的脂肪酶家族含有至少一个分子和单焦脂肪酶3蛋白,表明基因家族在分裂在分裂的分裂和单焦点之前。在各个组中发现类似的内含子/外显子数和预测的蛋白质序列长度。鉴定了二十四个串联脂肪酶3基因重复,暗示脂肪酶3基因的独特功能似乎是基因重复后的易位和新官能化的结果。据报道的函数基因EDS1,PAD4和SAG101涉及病原体反应的官僚主义均位于同一组中。核苷酸多样性(DXY)和非型核苷酸取代率(三种基因的二核苷酸率的比率明显大于基因组的平均值。我们进一步观察到在Toll-Interalukin-1受体类型核苷酸结合/亮氨酸的重复免疫受体(TiR-NBS LRR)免疫响应信号通路中的三种基因上选择维持多样性的证据表明它们可能易于病原体效果。

著录项

  • 来源
    《Genetica》 |2018年第2期|共7页
  • 作者单位

    Xuzhou Med Univ Sch Med Informat Xuzhou 221004 Peoples R China;

    Xuzhou Med Univ Neurobiol Res Ctr Sch Nursing Xuzhou 221004 Peoples R China;

    Xuzhou Med Univ Sch Med Informat Xuzhou 221004 Peoples R China;

    Xuzhou Med Univ Neurobiol Res Ctr Xuzhou 221004 Peoples R China;

    Xuzhou Med Univ Sch Med Informat Xuzhou 221004 Peoples R China;

    Xuzhou Med Univ Sch Med Informat Xuzhou 221004 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遗传学;
  • 关键词

    Lipase3; Gene family; Evolution; Tandem duplication;

    机译:脂肪酶3;基因家族;进化;串联复制;

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