Genome-wide identification of StU-box gene family and assessment of their expression in developmental stages of Solanum tuberosum.

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Zahra Hajibarat, Abbas Saidi, Mehrshad Zeinalabedini, Ahmad Mosuapour Gorji, Mohammad Reza Ghaffari, Vahid Shariati, Rahim Ahmadvand
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引用次数: 7

Abstract

Background: The Plant U-box (PUB), ubiquitin ligase gene, has a highly conserved domain in potato. However, little information is available about U-box genes in potato (Solanum tuberosum). In this study, 62 U-box genes were detected in the potato genome using bioinformatics methods. Further, motif analysis, gene structure, gene expression, TFBS, and synteny analysis were performed on the U-box genes.

Results: Based on in silico analysis, most of StU-boxs included a U-box domain; however, some of them lacked harbored domain the ARM, Pkinase_Tyr, and other domains. Based on their phylogenetic relationships, the StU-box family members were categorized into four classes. Analysis of transcription factor binding sites (TFBS) in the promoter region of StU-box genes revealed that StU-box genes had the highest and the lowest number of TFBS in MYB and CSD, respectively. Moreover, based on in silico and gene expression data, variable frequencies of TFBS in StU-box genes could indicate that these genes control different developmental stages and are involved in complex regulatory mechanisms. The number of exons in U-box genes ranged from one to sixteen. For most U-box genes, the exon-intron compositions and conserved motifs composition in most proteins in each group were similar. The intron-exon patterns and the composition of conserved motifs validated the U-box genes phylogenetic classification. Based on the results of genome distribution, StU-box genes were distributed unevenly on the 12 S. tuberosum chromosomes. The results showed that gene duplication may possess a significant role in genome expansion of S. tuberosum. Furthermore, genome evolution of S. tuberosum was surveyed using identification of orthologous and paralogous. We identified 40 orthologous gene pairs between S. tuberosum with Solanum lycopersicum, Oryza sativa, Triticum aestivum, Gossypium hirsutum, Zea maize, Coriaria mytifolia, and Arabidopsis thaliana as well as eight duplicated genes (paralogous) in S. tuberosum. StU-box 51 gene is one of the important gene among other StU-boxes in S. tuberosum under drought stress which was expressed in tuber and leaf under drought stress. Furthermore, StU-box 51 gene has the highest expression levels in four tissue-specific (stem, root, leaf, and tuber) in potato as well as it had the highest number of TFBS in promoter region. Based on our results, StU-box 51 can introduce to researcher to utilize in breeding program and genetic engineering in potato.

Conclusions: The results of this survey will be useful for further investigation of the probable role and molecular mechanisms of U-box genes in response to different stresses.

Abstract Image

Abstract Image

Abstract Image

茄u -box基因家族的全基因组鉴定及其在发育阶段的表达分析。
背景:植物U-box (PUB)是马铃薯中一个高度保守的泛素连接酶基因。然而,关于马铃薯(Solanum tuberosum) U-box基因的信息很少。本研究利用生物信息学方法在马铃薯基因组中检测到62个U-box基因。进一步对U-box基因进行基序分析、基因结构分析、基因表达分析、TFBS分析和同源性分析。结果:基于芯片分析,大多数stu -box包含一个U-box域;然而,其中一些缺乏ARM, Pkinase_Tyr等域。根据其系统发育关系,将StU-box家族成员划分为4个纲。对StU-box基因启动子区域的转录因子结合位点(TFBS)分析发现,在MYB和CSD中,StU-box基因的TFBS数量分别最高和最低。此外,基于芯片和基因表达数据,StU-box基因中TFBS的不同频率可能表明这些基因控制着不同的发育阶段,并参与复杂的调控机制。U-box基因的外显子数从1到16不等。对于大多数U-box基因,各组中大多数蛋白的外显子-内含子组成和保守基序组成相似。内含子-外显子模式和保守基序的组成验证了U-box基因的系统发育分类。根据基因组分布结果,在12条结核葡萄染色体上,StU-box基因分布不均匀。结果表明,基因复制可能在tuberosum基因组扩增中起着重要作用。此外,还利用同源和同源的鉴定方法,对结核葡萄球菌的基因组进化进行了研究。结果表明,在番茄茄、稻谷、小麦、棉花、玉米、密叶科里亚和拟南芥中发现了40对同源基因,在结核葡萄中发现了8对同源基因。干旱胁迫下,StU-box 51基因在薯蓣块茎和叶片中表达,是干旱胁迫下其他StU-box基因中的重要基因之一。此外,StU-box 51基因在马铃薯茎、根、叶和块茎4个组织特异性中表达量最高,启动子区TFBS数量最多。研究结果表明,stubox51可在马铃薯育种规划和基因工程中推广应用。结论:本研究结果为进一步探讨U-box基因在不同胁迫下的作用及其分子机制提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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