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MiR396 regulatory network and its expression during grain development in wheat

机译:MIR396监管网络及其在小麦粮食开发期间的表达

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Wheat contains the largest number of miR396 family with 17 miR396 inPoaceae. MiR396 regulatory network underlying wheat grain development has not comprehensively been explored. Our results showed that precursor miR396 family inPoaceaeexhibited not only conservativeness but also diversification especially in wheat. Five haplotypes were detected inPoaceaespecies, while 4 haplotypes in wheat with Hap-4 (miR396a) and Hap-5 (miR396n) unique to wheat. GO enrichment analysis of target genes showed that the first 20 enrichment functions of miR396a and miR396n are completely different from each other, and also completely different from miR396(b-g), miR396(h-m), and miR396(o-q). Functional annotation on the 18 target genes shared by miR396(b-g), miR396(h-m), and miR396(o-q) found that 11 of the 18 target genes are growth-regulating factor (GRF) genes. Our results indicated that, during the grain filling stage of wheat, miR396 is involved in the development of grains by regulating the expression of GRF genes (GRF1, GRF6, and GRF9). Although the enrichment function of miR396(b-g), miR396(h-m), and miR396(o-q) is the same, the gene functional networks they formed differ greatly. Our results indicated that polyploidization enriches not only the diversity of miR396 family and its target genes but also gene functional networks in wheat. These results laid foundation for further elucidating function of miR396 gene family underlying wheat grain development.
机译:小麦是miR396家族中数量最多的一个,其中有17个在科中。MiR396调控网络在小麦籽粒发育中的作用尚未得到全面研究。我们的研究结果表明,海洋中的前体miR396家族不仅表现出保守性,而且表现出多样性,尤其是在小麦中。在海洋物种中检测到5种单倍型,而在小麦中检测到4种单倍型,分别具有小麦特有的Hap-4(miR396a)和Hap-5(miR396n)。对靶基因的GO富集分析表明,miR396a和miR396n的前20个富集功能完全不同,也与miR396(b-g)、miR396(h-m)和miR396(o-q)完全不同。对miR396(b-g)、miR396(h-m)和miR396(o-q)共有的18个靶基因的功能注释发现,18个靶基因中有11个是生长调节因子(GRF)基因。我们的研究结果表明,在小麦灌浆期,miR396通过调节GRF基因(GRF1、GRF6和GRF9)的表达参与籽粒发育。尽管miR396(b-g)、miR396(h-m)和miR396(o-q)的富集功能相同,但它们形成的基因功能网络却有很大差异。我们的结果表明,多倍体不仅丰富了miR396家族及其靶基因的多样性,而且丰富了小麦的基因功能网络。这些结果为进一步阐明miR36基因家族在小麦籽粒发育中的作用奠定了基础。

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