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小麦(L.)穗部和籽粒发育过程中TCP家族基因的全基因组鉴定与表达分析

Genome-Wide Identification and Expression Profiling of the TCP Family Genes in Spike and Grain Development of Wheat ( L.).

作者信息

Zhao Junmin, Zhai Zhiwen, Li Yanan, Geng Shuaifeng, Song Gaoyuan, Guan Jiantao, Jia Meiling, Wang Fang, Sun Guoliang, Feng Nan, Kong Xingchen, Chen Liang, Mao Long, Li Aili

机构信息

National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Science, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Front Plant Sci. 2018 Sep 10;9:1282. doi: 10.3389/fpls.2018.01282. eCollection 2018.

Abstract

The TCP family genes are plant-specific transcription factors and play important roles in plant development. TCPs have been evolutionarily and functionally studied in several plants. Although common wheat ( L.) is a major staple crop worldwide, no systematic analysis of TCPs in this important crop has been conducted. Here, we performed a genome-wide survey in wheat and found 66 TCP genes that belonged to 22 homoeologous groups. We then mapped these genes on wheat chromosomes and found that several TCP genes were duplicated in wheat including the ortholog of the maize . Expression study using both RT-PCR and hybridization assay showed that most wheat TCP genes were expressed throughout development of young spike and immature seed. -acting element survey along promoter regions suggests that subfunctionalization may have occurred for homoeologous genes. Moreover, protein-protein interaction experiments of three TCP proteins showed that they can form either homodimers or heterodimers. Finally, we characterized two mutants from tetraploid wheat. Each of these two mutant lines contained a premature stop codon in the A subgenome homoeolog that was dominantly expressed over the B subgenome homoeolog. We observed that mutation caused increased spike and grain lengths. Together, our analysis of the wheat TCP gene family provides a start point for further functional study of these important transcription factors in wheat.

摘要

TCP家族基因是植物特有的转录因子,在植物发育中发挥重要作用。TCP基因已在多种植物中进行了进化和功能研究。虽然普通小麦(Triticum aestivum L.)是全球主要的主食作物,但尚未对这种重要作物中的TCP基因进行系统分析。在此,我们在小麦中进行了全基因组调查,发现了66个TCP基因,它们属于22个同源群。然后我们将这些基因定位到小麦染色体上,发现小麦中有几个TCP基因发生了复制,包括玉米的直系同源基因。使用RT-PCR和杂交试验的表达研究表明,大多数小麦TCP基因在幼穗和未成熟种子的整个发育过程中都有表达。对启动子区域的顺式作用元件调查表明,同源基因可能发生了亚功能化。此外,三种TCP蛋白的蛋白质-蛋白质相互作用实验表明,它们可以形成同二聚体或异二聚体。最后,我们鉴定了来自四倍体小麦的两个突变体。这两个突变体系中的每一个在A亚基因组同源基因中都含有一个提前的终止密码子,该同源基因在B亚基因组同源基因上占主导地位表达。我们观察到突变导致穗长和粒长增加。总之,我们对小麦TCP基因家族的分析为进一步研究这些重要转录因子在小麦中的功能提供了一个起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2657/6160802/2538971a30ad/fpls-09-01282-g001.jpg

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