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首页> 外文期刊>BMC Genomics >Comparative analysis of plant MKK gene family reveals novel expansion mechanism of the members and sheds new light on functional conservation
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Comparative analysis of plant MKK gene family reveals novel expansion mechanism of the members and sheds new light on functional conservation

机译:植物MKK基因家族的比较分析揭示了成员的新扩展机制,并为功能保守提供了新的思路。

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Mitogen-activated protein kinase (MAPK) cascades play critical functions in almost every aspect of plant growth and development, which regulates many physiological and biochemical processes. As a middle nodal point of the MAPK cascades, although evolutionary analysis of MKK from individual plant families had some reports, their evolutionary history in entire plants is still not clear. To better understand the evolution and function of plant MKKs, we performed systematical molecular evolutionary analysis of the MAPKK gene family and also surveyed their gene organizations, sequence features and expression patterns in different subfamilies. Phylogenetic analysis showed that plant MAPKK fall into five different groups (Group A–E). Majority orthology groups seemed to be a single or low-copy genes in all plant species analyzed in Group B, C and D, whereas group A MKKs undergo several duplication events, generating multiple gene copies. Further analysis showed that these duplication events were on account of whole genome duplications (WGDs) in plants and the duplicate genes maybe have undergone functional divergence. We also found that group E MKKs had mutation with one change of serine or theronine might lead to inactivity originated through the ancient tandem duplicates in monocots. Moreover, we also identified MKK3 integrated NTF2 domain that might have gradually lost the cytoplasmic-nuclear trafficking activity, which suggests that they may involve with the gene function more and more sophistication in the evolutionary process. Moreover, expression analyses indicated that plant MKK genes play probable roles in UV-B signaling. In general, ancient gene and genome duplications are significantly conducive to the expansion of the plant MKK gene family. Our study reveals two distinct evolutionary patterns for plant MKK proteins and sheds new light on the functional evolution of this gene family.
机译:丝裂原激活的蛋白激酶(MAPK)级联在植物生长和发育的几乎每个方面都起着至关重要的作用,它调节了许多生理和生化过程。作为MAPK级联的中间节点,尽管有来自单个植物家族的MKK进化分析报告,但它们在整个植物中的进化历史仍不清楚。为了更好地了解植物MKK的进化和功能,我们对MAPKK基因家族进行了系统的分子进化分析,并调查了它们的基因组织,序列特征和在不同亚家族中的表达模式。系统发育分析表明,植物MAPKK分为五个不同的组(A–E组)。在B,C和D组中分析的大多数植物物种中,多数正交组似乎是单个或低拷贝基因,而A组MKK经历了多次复制事件,产生了多个基因拷贝。进一步的分析表明,这些重复事件是由于植物中的全基因组重复(WGD)引起的,并且重复的基因可能已经发生了功能差异。我们还发现,E MKK组发生了突变,其中丝氨酸或丝氨酸发生了一种变化,这可能导致无活动性起源于单子叶植物中的古代串联复制。此外,我们还鉴定了可能逐渐失去细胞质-核运输活性的MKK3整合的NTF2结构域,这表明它们可能在进化过程中与基因功能越来越复杂。此外,表达分析表明植物MKK基因可能在UV-B信号传导中发挥作用。通常,古老的基因和基因组重复显着有利于植物MKK基因家族的扩展。我们的研究揭示了植物MKK蛋白的两种不同的进化模式,并为该基因家族的功能进化提供了新的思路。

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