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首页> 外文期刊>Functional & integrative genomics >Characterization on the conservation and diversification of miRNA156 gene family from lower to higher plant species based on phylogenetic analysis at the whole genomic level
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Characterization on the conservation and diversification of miRNA156 gene family from lower to higher plant species based on phylogenetic analysis at the whole genomic level

机译:基于整个基因组水平的系统发育分析,对MiRNA156基因家族的养护和多样化的特征

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miRNA156 family members (miR156s) participate in regulating the transition of plant vegetative and reproductive growth, flower development, and formation of berry skin color by negatively modulating their target gene SPLs. However, the evolution and functional diversification of miR156s in plants remain elusive. Phylogenetic analysis on 310 miR156s from 51 plant species on miRBase 21.0 showed that only miR156a could be conserved in the 51 plant species, but their sequences exhibited variation; another set of miR156s, such as miR156m/n/o/p/q/r/s/t/u/v/w/x/y/z, was identified only in certain special plant species (Glycine max and Malus); also, all base variations in the sequences of 310 miR156s occurred within one miR156 seed sequence, "TGACAGAAGAGAGTGAGCAC," and the changed base sites were mainly located at the 11th and 14th bases from the 5 ' end of the miR156 seed sequence, in which some base variations of miR156s resulted in a difference in miR156 targeting modes; by contrast, miR156 precursor sequences are highly divergent across diverse species. Similarly, cis-regulatory motifs on the promoter sequence of MIR156s in various plants also exhibited significant discrepancy. The intragenic MIR156 genes overlapped their target SBP genes, thereby suggesting that some microRNAs (miRNAs) originate from duplication of target genes. These traits might be the reasons of the conservation and diversification of miR156 gene family. This study identified the conserved seed sequence "TGACAGAAGAGAGTGAGCAC," and the sequence variation characterization, of miR156 family evolution, also investigated the varied traits of their promoters, precursors, and mature sequences in sequence evolutions and found some miRNAs might originate from duplication of target genes. Our findings will contribute to our understanding of the functional diversification of miRNAs and the interactions of miRNA/target pairs based on the evolutionary history of miRNA genes.
机译:MiRNA156家庭成员(MIR156S)通过对其靶基因SPL进行负面调节来调节植物营养和生殖生长,花卉开发和形成浆果肤色的转型。然而,植物中miR156s的演化和功能多样化仍然难以捉摸。 51种MiRBase 21.0从51种植物物种310 miR156s的系统发育分析表明,只有MiR156a可以在51种植物物种中保存,但它们的序列表现出变化;另一组MIR156S,例如MiR156M / N / O / P / Q / R / S / T / U / V / W / X / Y / Z仅在某些特殊植物物种(甘氨酸Max和Malus)中鉴定出来;此外,在一个miR156种子序列中发生310 miR156s的序列中的所有基础变化,“Tgacagaagagagtgagcac,”和改变的基本位点主要位于MiR156种子序列的5'末端的第11和第14族基座中,其中一些MiR156S的基础变化导致miR156靶向模式的差异;相比之下,MiR156前体序列在不同物种上具有高度分歧。类似地,各种植物MiR156s的启动子序列的顺式调节基序也表现出显着的差异。腺瘤MiR156基因重叠其靶SBP基因,从而表明一些微小RNA(miRNA)源自靶基因的重复。这些特征可能是MiR156基因家族的保护和多样化的原因。该研究确定了MiR156家族演化的保守的种子序列“TgacagaagagagagGagcac,”和序列变异表征,也研究了序列演进中的促进剂,前体和成熟序列的变化性状,发现一些miRNA可能来自重复靶基因。我们的研究结果将有助于我们对MiRNA的功能多样化以及基于MiRNA基因的进化史的miRNA /目标对的相互作用。

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