Yang Tianhui, Gao Ting, Wang Chuang, Wang Xiaochun, Chen Caijin, Tian Mei, Yang Weidi
Institute of Animal Science, Ningxia Academy of Agriculture and Forestry Sciences, Yinchuan 750002, China.
Branch Institute of Guyuan, Ningxia Academy of Agriculture and Forestry Sciences, Guyuan 756000, China.
Genomics Inform. 2022 Jun;20(2):e19. doi: 10.5808/gi.22013. Epub 2022 May 30.
Alfalfa (Medicago sativa) is an important food and feed crop which rich in mineral sources. The WUSCHEL-related homeobox (WOX) gene family plays important roles in plant development and identification of putative gene families, their structure, and potential functions is a primary step for not only understanding the genetic mechanisms behind various biological process but also for genetic improvement. A variety of computational tools, including MAFFT, HMMER, hidden Markov models, Pfam, SMART, MEGA, ProtTest, BLASTn, and BRAD, among others, were used. We identified 34 MsWOX genes based on a systematic analysis of the alfalfa plant genome spread in eight chromosomes. This is an expansion of the gene family which we attribute to observed chromosomal duplications. Sequence alignment analysis revealed 61 conserved proteins containing a homeodomain. Phylogenetic study sung reveal five evolutionary clades with 15 motif distributions. Gene structure analysis reveals various exon, intron, and untranslated structures which are consistent in genes from similar clades. Functional analysis prediction of promoter regions reveals various transcription binding sites containing key growth, development, and stress-responsive transcription factor families such as MYB, ERF, AP2, and NAC which are spread across the genes. Most of the genes are predicted to be in the nucleus. Also, there are duplication events in some genes which explain the expansion of the family. The present research provides a clue on the potential roles of MsWOX family genes that will be useful for further understanding their functional roles in alfalfa plants.
紫花苜蓿(Medicago sativa)是一种重要的粮食和饲料作物,富含矿物质来源。WUSCHEL相关同源异型盒(WOX)基因家族在植物发育中起着重要作用,鉴定假定的基因家族、其结构和潜在功能不仅是理解各种生物学过程背后遗传机制的首要步骤,也是进行遗传改良的首要步骤。使用了多种计算工具,包括MAFFT、HMMER、隐马尔可夫模型、Pfam、SMART、MEGA、ProtTest、BLASTn和BRAD等。基于对分布在八条染色体上的紫花苜蓿植物基因组的系统分析,我们鉴定出34个MsWOX基因。这是该基因家族的一次扩展,我们将其归因于观察到的染色体重复。序列比对分析揭示了61个含有同源结构域的保守蛋白。系统发育研究表明有五个进化分支,具有15种基序分布。基因结构分析揭示了各种外显子、内含子和非翻译结构,这些结构在来自相似分支的基因中是一致的。对启动子区域的功能分析预测揭示了各种转录结合位点,其中包含关键的生长、发育和应激反应转录因子家族,如MYB、ERF、AP2和NAC,这些转录因子家族分布在各个基因中。大多数基因预计定位于细胞核中。此外,一些基因中存在重复事件,这解释了该家族的扩展。本研究为MsWOX家族基因的潜在作用提供了线索,这将有助于进一步了解它们在紫花苜蓿植物中的功能作用。