Suppr超能文献

小麦及其近缘种中bZIP转录因子的全基因组鉴定、进化分析以及花药发育相关TabZIP基因的表达谱

Genome-wide identification and evolutionary analyses of bZIP transcription factors in wheat and its relatives and expression profiles of anther development related TabZIP genes.

作者信息

Li Xueyin, Gao Shiqing, Tang Yimiao, Li Lei, Zhang Fengjie, Feng Biane, Fang Zhaofeng, Ma Lingjian, Zhao Changping

机构信息

Beijing Engineering Research Center for Hybrid Wheat, Beijing Academy of Agriculture and Forestry Sciences, Beijing, 100097, China.

College of Agronomy, Northwest A & F University, Yangling, 712100, China.

出版信息

BMC Genomics. 2015 Nov 18;16:976. doi: 10.1186/s12864-015-2196-7.

Abstract

BACKGROUND

Among the largest and most diverse transcription factor families in plants, basic leucine zipper (bZIP) family participate in regulating various processes, including floral induction and development, stress and hormone signaling, photomorphogenesis, seed maturation and germination, and pathogen defense. Although common wheat (Triticum aestivum L.) is one of the most widely cultivated and consumed food crops in the world, there is no comprehensive analysis of bZIPs in wheat, especially those involved in anther development. Previous studies have demonstrated wheat, T. urartu, Ae. tauschii, barley and Brachypodium are evolutionarily close in Gramineae family, however, the real evolutionary relationship still remains mysterious.

RESULTS

In this study, 187 bZIP family genes were comprehensively identified from current wheat genome. 98, 96 and 107 members of bZIP family were also identified from the genomes of T.urartu, Ae.tauschii and barley, respectively. Orthology analyses suggested 69.4 % of TubZIPs were orthologous to 68.8 % of AetbZIPs and wheat had many more in-paralogs in the bZIP family than its relatives. It was deduced wheat had a closer phylogenetic relationship with barley and Brachypodium than T.urartu and Ae.tauschii. bZIP proteins in wheat, T.urartu and Ae.tauschii were divided into 14 subgroups based on phylogenetic analyses. Using Affymetrix microarray data, 48 differentially expressed TabZIP genes were identified to be related to anther development from comparison between the male sterility line and the restorer line. Genes with close evolutionary relationship tended to share similar gene structures. 15 of 23 selected TabZIP genes contained LTR elements in their promoter regions. Expression of 21 among these 23 TabZIP genes were obviously responsive to low temperature. These 23 TabZIP genes all exhibited distinct tissue-specific expression pattern. Among them, 11 TabZIP genes were predominantly expressed in anther and most of them showed over-dominance expression mode in the cross combination TY806 × BS366.

CONCLUSIONS

The genome-wide identification provided an overall insight of bZIP gene family in wheat and its relatives. The evolutionary relationship of wheat and its relatives was proposed based on orthology analyses. Microarray and expression analyses suggested the potential involvement of bZIP genes in anther development and facilitated selection of anther development related gene for further functional characterization.

摘要

背景

碱性亮氨酸拉链(bZIP)家族是植物中最大且最多样化的转录因子家族之一,参与调控多种生理过程,包括开花诱导与发育、胁迫和激素信号传导、光形态建成、种子成熟与萌发以及病原体防御。尽管普通小麦(Triticum aestivum L.)是世界上种植最广泛、消费最多的粮食作物之一,但尚未对小麦中的bZIPs进行全面分析,尤其是那些参与花药发育的bZIPs。先前的研究表明,小麦、乌拉尔图小麦、节节麦、大麦和短柄草在禾本科中进化关系密切,然而,它们真正的进化关系仍然不明。

结果

在本研究中,从当前的小麦基因组中全面鉴定出187个bZIP家族基因。在乌拉尔图小麦、节节麦和大麦的基因组中也分别鉴定出98、96和107个bZIP家族成员。直系同源分析表明,69.4%的乌拉尔图小麦bZIPs与68.8%的节节麦bZIPs直系同源,并且小麦在bZIP家族中的旁系同源基因比其亲缘物种更多。由此推断,与乌拉尔图小麦和节节麦相比,小麦与大麦和短柄草的系统发育关系更近。基于系统发育分析,将小麦、乌拉尔图小麦和节节麦中的bZIP蛋白分为14个亚组。利用Affymetrix微阵列数据,通过雄性不育系与恢复系的比较,鉴定出48个与花药发育相关的差异表达小麦bZIP基因。进化关系相近的基因往往具有相似的基因结构。在23个选定的小麦bZIP基因中,有15个在其启动子区域含有LTR元件。这23个小麦bZIP基因中有21个的表达明显受低温响应。这23个小麦bZIP基因均表现出明显的组织特异性表达模式。其中,11个小麦bZIP基因主要在花药中表达,并且在杂交组合TY806×BS366中大多表现为超显性表达模式。

结论

全基因组鉴定为小麦及其亲缘物种中的bZIP基因家族提供了全面的认识。基于直系同源分析提出了小麦及其亲缘物种的进化关系。微阵列和表达分析表明bZIP基因可能参与花药发育,并有助于选择与花药发育相关的基因进行进一步的功能表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21f3/4652339/3ae7e40fa1a5/12864_2015_2196_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验