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首页> 外文期刊>BMC Genomics >The CCCH zinc finger family of soybean (Glycine max L.): genome-wide identification, expression, domestication, GWAS and haplotype analysis
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The CCCH zinc finger family of soybean (Glycine max L.): genome-wide identification, expression, domestication, GWAS and haplotype analysis

机译:CCCH锌手指大豆(Glycine Max L.):基因组鉴定,表达,驯化,GWAS和单倍型分析

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摘要

The CCCH zinc finger (zf_CCCH) is a unique subfamily featured one or more zinc finger motif(s) comprising of three Cys and one His residues. The zf_CCCH family have been reported involving in various processes of plant development and adaptation. In this study, the zf_CCCH genes were identified via a genome-wide search and were systematically analyzed. 116 Gmzf_CCCHs were obtained and classified into seventeen subfamilies. Gene duplication and expansion analysis showed that tandem and segmental duplications contributed to the expansion of the Gmzf_CCCH gene family, and that segmental duplication play the main role. The expression patterns of Gmzf_CCCH genes were tissue-specific. Eleven domesticated genes were detected involved in the regulation of seed oil and protein synthesis as well as growth and development of soybean through GWAS and haplotype analysis for Gmzf_CCCH genes among the 164 of 302 soybeans resequencing data. Among which, 8 genes play an important role in the synthesis of seed oil or fatty acid, and the frequency of their elite haplotypes changes significantly among wild, landrace and improved cultivars, indicating that they have been strongly selected in the process of soybean domestication. This study provides a scientific foundation for the comprehensive understanding, future cloning and functional studies of Gmzf_CCCH genes in soybean, meanwhile, it was also helpful for the improvement of soybean with high oil content.
机译:CCCH锌手指(ZF_CCCH)是一种独特的亚家族特征,其特征在于一个或多个锌手指基序,包括三个Cys和他的残留物。据报道,ZF_CCCH家族涉及各种工厂发展和适应过程。在该研究中,通过基因组搜索鉴定ZF_CCCH基因并系统地分析。获得116 GMZF_CCCHS并分为十七个亚属。基因复制和扩展分析表明,串联和节段性重复促成了GMZF_CCCH基因家族的扩展,并且该节段重复发挥主要作用。 GMZF_CCCH基因的表达模式是组织特异性的。检测到11种驯化基因,参与种子油和蛋白质合成的调节以及通过GWAS和Haplotype分析的大豆和单倍型分析在302只大豆重组数据中的164个中的GMZF_CCCH基因的生长和发育。其中,8个基因在种子油或脂肪酸的合成中发挥着重要作用,并且它们的Elite单倍型的频率在野生,兰德和改善的品种中显着变化,表明它们在大豆驯化过程中被强烈选择。本研究为大豆GMZF_CCCH基因的全面理解,未来克隆和功能研究提供了科学基础,同时,在高油含量的改善也有助于改善大豆。

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