Zhang Yang, Xu Yanmin, Mao Yulu, Tan Xiaodi, Tian Yuan, Ma Xiaofei, Ji Hutai, Zhang Dingyi
Wheat Research Institute, Shanxi Agricultural University, Linfen 041000, China.
Agricultural College, Shanxi Agricultural University, Jinzhong 030810, China.
Int J Mol Sci. 2024 Dec 27;26(1):133. doi: 10.3390/ijms26010133.
The gene family is a highly conserved transcription factor that plays a crucial role in regulating plant growth, development, and responses to various stresses. Despite extensive studies in multiple plants, there has been a dearth of focused and systematic analysis on NF-YA genes in wheat grains. In this study, we carried out a comprehensive bioinformatics analysis of the gene family in wheat, using the latest genomic data from the Chinese Spring. A total of 19 genes were identified. An analysis of conserved domains, phylogenetic relationships, and gene structure indicated a significant degree of conservation among TaNF-YAs. A gene collinearity analysis demonstrated that fragment duplication was the predominant mechanism driving the amplification of . Furthermore, -acting elements within the promoters of were found to be implicated in grain development. Subsequently, SNP analysis revealed the genetic variation in the gene family in different wheat. Moreover, published RNA-seq data were used and RNA-seqs of Pinyu8155, Yaomai30, Yaomai36, and Pinyu8175 were performed to identify influencing grain development. Finally, it was found that had no self-activating activity in wheat. This study provides key candidate genes for the exploration of grain development in the wheat filling stage and also lays a foundation for further research on the regulation of starch and protein synthesis and accumulation.
该基因家族是一种高度保守的转录因子,在调节植物生长、发育以及对各种胁迫的响应中发挥着关键作用。尽管在多种植物中进行了广泛研究,但对小麦籽粒中的NF-YA基因缺乏针对性的系统分析。在本研究中,我们利用中国春小麦的最新基因组数据,对小麦中的该基因家族进行了全面的生物信息学分析。共鉴定出19个该基因。对保守结构域、系统发育关系和基因结构的分析表明,TaNF-YA基因之间存在高度保守性。基因共线性分析表明,片段重复是驱动该基因家族扩增的主要机制。此外,发现该基因启动子内的顺式作用元件与籽粒发育有关。随后,SNP分析揭示了不同小麦中该基因家族的遗传变异。此外,利用已发表的RNA-seq数据,并对PinYu8155、尧麦30、尧麦36和PinYu8175进行RNA测序,以鉴定影响籽粒发育的基因。最后,发现该基因在小麦中没有自激活活性。本研究为探索小麦灌浆期籽粒发育提供了关键候选基因,也为进一步研究淀粉和蛋白质合成与积累的调控奠定了基础。