Genome-wide identification, evolution, and expression level analysis of the TALE gene family in Sorghum bicolor.

IF 4.8 2区 生物学 Q1 PLANT SCIENCES BMC Plant Biology Pub Date : 2024-11-30 DOI:10.1186/s12870-024-05735-9
Xin Yao, Sanwei Yang, Dili Lai, Wenfeng Weng, Yu Fan, Weijiao Wu, Chao Ma, Jianping Cheng, Meiliang Zhou, Jingjun Ruan
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Abstract

Background: The three-amino-acid-loop-extension (TALE) is a ubiquitous homeodomain transcription factor among plant species involved in regulating plant growth, development, and environmental responses. However, this has not been systematically analyzed or reported in sorghum.

Results: In this study, 23 SbTALE genes were identified using bioinformatics and other methods at the genome level of sorghum, classified into two families, KNOX and BEL1-like family, and localized on ten chromosomes. One pair of tandem duplicated and seven pairs of segmentally duplicated genes were found, and the conserved motifs of SbTALEs among the same subfamilies were highly conserved, with highly conserved gene structures. SbTALEs genes have the most collinear genes with monocotyledonous Zea mays and are more closely related; SbTALEs have undergone purification and diversification selection in the evolutionary process. Overall, except for SbTALE21 and SbTALE23, the expression of the other six SbTALEs was higher in the stems, whereas the expression of SbTALE21 and SbTALE23 was higher in the leaves. In sorghum grain development, the lowest relative expression of SbTALEs was observed in grains in the late stage, and the expression of SbTALE21 was higher in grains in the early stage and husks in the late stage. In addition, SbTALE14 and SbTALE21 showed higher expression in the roots and stems under the cold treatment, and SbTALE02 and SbTALE12 showed higher expression in the roots and stems under the PEG treatment. Under the four hormone treatments, the expression of eight SbTALEs was relatively low in stems, the expression of SbTALE13 was higher in leaves than in roots and stems, and the expression of SbTALE23 was higher under the MeJA and SA treatments.

Conclusion: This study lays a theoretical foundation for the study of the biological function and mechanism of SbTALE genes and is of great significance for the mining of resistance genes and trait improvement.

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高粱双色TALE基因家族的全基因组鉴定、进化及表达水平分析。
背景:三氨基酸环延伸因子(three-amino-acid-loop-extension, TALE)是一种在植物中普遍存在的同源结构域转录因子,参与调节植物的生长、发育和环境反应。然而,这在高粱中还没有系统的分析或报道。结果:本研究利用生物信息学等方法在高粱基因组水平上鉴定出23个SbTALE基因,分为KNOX和bel1样家族两个家族,定位在10条染色体上。发现1对串联重复基因和7对分段重复基因,在同一亚科中,SbTALEs的保守基序高度保守,基因结构高度保守。SbTALEs基因与单子叶玉米基因共线性最多,亲缘关系更近;物种在进化过程中经历了纯化和多样化选择。总体而言,除SbTALE21和SbTALE23外,其余6个sbtale在茎中的表达量较高,而SbTALE21和SbTALE23在叶片中的表达量较高。在高粱籽粒发育过程中,SbTALE21在籽粒发育后期的相对表达量最低,而在籽粒发育早期和籽壳发育后期的相对表达量较高。此外,低温处理下SbTALE14和SbTALE21在根和茎中表达量较高,PEG处理下SbTALE02和SbTALE12在根和茎中表达量较高。在4种激素处理下,8种SbTALEs在茎中的表达量相对较低,SbTALE13在叶片中的表达量高于根和茎,SbTALE23在MeJA和SA处理下的表达量较高。结论:本研究为研究SbTALE基因的生物学功能和机制奠定了理论基础,对抗性基因的挖掘和性状改良具有重要意义。
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来源期刊
BMC Plant Biology
BMC Plant Biology 生物-植物科学
CiteScore
8.40
自引率
3.80%
发文量
539
审稿时长
3.8 months
期刊介绍: BMC Plant Biology is an open access, peer-reviewed journal that considers articles on all aspects of plant biology, including molecular, cellular, tissue, organ and whole organism research.
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