In Silico Identification and Characterization of B12D Family Proteins in Viridiplantae.

Evolutionary Bioinformatics Online Pub Date : 2022-06-14 eCollection Date: 2022-01-01 DOI:10.1177/11769343221106795
Zainab M Almutairi
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引用次数: 1

Abstract

B12D family proteins are transmembrane proteins that contain the B12D domain involved in membrane trafficking. Plants comprise several members of the B12D family, but these members' numbers and specific functions are not determined. This study aims to identify and characterize the members of B12D protein family in plants. Phytozome database was retrieved for B12D proteins from 14 species. The total 66 B12D proteins were analyzed in silico for gene structure, motifs, gene expression, duplication events, and phylogenetics. In general, B12D proteins are between 86 and 98 aa in length, have 2 or 3 exons, and comprise a single transmembrane helix. Motif prediction and multiple sequence alignment show strong conservation among B12D proteins of 11 flowering plants species. Despite that, the phylogenetic tree revealed a distinct cluster of 16 B12D proteins that have high conservation across flowering plants. Motif prediction revealed 41 aa motif conserved in 58 of the analyzed B12D proteins similar to the bZIP motif, confirming that in the predicted biological process and molecular function, B12D proteins are DNA-binding proteins. Cis-regulatory elements screening in putative B12D promoters found various responsive elements for light, abscisic acid, methyl jasmonate, cytokinin, drought, and heat. Despite that, there is specific elements for cold stress, cell cycle, circadian, auxin, salicylic acid, and gibberellic acid in the promoter of a few B12D genes indicating for functional diversification for B12D family members. The digital expression shows that B12D genes of Glycine max have similar expression patterns consistent with their clustering in the phylogenetic tree. However, the expression of B12D genes of Hordeum vulgure appears inconsistent with their clustering in the tree. Despite the strong conservation of the B12D proteins of Viridiplantae, gene association analysis, promoter analysis, and digital expression indicate different roles for the members of the B12D family during plant developmental stages.

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绿芽植物B12D家族蛋白的计算机鉴定与特性研究。
B12D家族蛋白是跨膜蛋白,包含参与膜运输的B12D结构域。植物包括B12D家族的几个成员,但这些成员的数量和具体功能尚不确定。本研究旨在鉴定和鉴定植物B12D蛋白家族成员。在Phytozome数据库中检索了14个物种的B12D蛋白。对共66个B12D蛋白进行了基因结构、基序、基因表达、重复事件和系统发育分析。一般来说,B12D蛋白的长度在86 - 98 aa之间,有2 - 3个外显子,由单个跨膜螺旋组成。Motif预测和多序列比对表明,11种开花植物B12D蛋白具有较强的保守性。尽管如此,系统发育树揭示了一个独特的16个B12D蛋白簇,在开花植物中具有高度保守性。Motif预测显示,58个B12D蛋白中有41个aa基序与bZIP基序相似,证实了在预测的生物学过程和分子功能中,B12D蛋白是dna结合蛋白。对B12D启动子的顺式调控元件筛选发现,对光、脱落酸、茉莉酸甲酯、细胞分裂素、干旱和高温有多种响应元件。尽管如此,在一些B12D基因的启动子中存在冷胁迫、细胞周期、昼夜节律、生长素、水杨酸和赤霉素等特定元素,表明B12D家族成员的功能多样化。数字表达表明,Glycine max的B12D基因具有相似的表达模式,这与它们在系统发育树上的聚类一致。然而,黑荆B12D基因的表达似乎与它们在树中的聚集性不一致。尽管Viridiplantae的B12D蛋白具有很强的保守性,但基因关联分析、启动子分析和数字表达表明,B12D家族成员在植物发育阶段发挥着不同的作用。
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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