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中六倍体白菜14-3-3家族成员的类特异性进化与转录分化

Class-Specific Evolution and Transcriptional Differentiation of 14-3-3 Family Members in Mesohexaploid Brassica rapa.

作者信息

Chandna Ruby, Augustine Rehna, Kanchupati Praveena, Kumar Roshan, Kumar Pawan, Arya Gulab C, Bisht Naveen C

机构信息

National Institute of Plant Genome Research New Delhi, India.

出版信息

Front Plant Sci. 2016 Jan 26;7:12. doi: 10.3389/fpls.2016.00012. eCollection 2016.

Abstract

14-3-3s are highly conserved, multigene family proteins that have been implicated in modulating various biological processes. The presence of inherent polyploidy and genome complexity has limited the identification and characterization of 14-3-3 proteins from globally important Brassica crops. Through data mining of Brassica rapa, the model Brassica genome, we identified 21 members encoding 14-3-3 proteins namely, BraA.GRF14.a to BraA.GRF14.u. Phylogenetic analysis indicated that B. rapa contains both ε (epsilon) and non-ε 14-3-3 isoforms, having distinct intron-exon structural organization patterns. The non-ε isoforms showed lower divergence rate (Ks < 0.45) compared to ε protein isoforms (Ks > 0.48), suggesting class-specific divergence pattern. Synteny analysis revealed that mesohexaploid B. rapa genome has retained 1-5 orthologs of each Arabidopsis 14-3-3 gene, interspersed across its three fragmented sub-genomes. qRT-PCR analysis showed that 14 of the 21 BraA.GRF14 were expressed, wherein a higher abundance of non-ε transcripts was observed compared to the ε genes, indicating class-specific transcriptional bias. The BraA.GRF14 genes showed distinct expression pattern during plant developmental stages and in response to abiotic stress, phytohormone treatments, and nutrient deprivation conditions. Together, the distinct expression pattern and differential regulation of BraA.GRF14 genes indicated the occurrence of functional divergence of B. rapa 14-3-3 proteins during plant development and stress responses.

摘要

14-3-3蛋白是高度保守的多基因家族蛋白,参与调节多种生物学过程。由于存在固有的多倍性和基因组复杂性,限制了从全球重要的芸苔属作物中鉴定和表征14-3-3蛋白。通过对芸苔属模式基因组白菜型油菜进行数据挖掘,我们鉴定出21个编码14-3-3蛋白的成员,即BraA.GRF14.a至BraA.GRF14.u。系统发育分析表明,白菜型油菜同时含有ε(epsilon)和非ε 14-3-3亚型,具有不同的内含子-外显子结构组织模式。与ε蛋白亚型(Ks > 0.48)相比,非ε亚型显示出较低的分化率(Ks < 0.45),表明存在类别特异性的分化模式。共线性分析表明,中六倍体白菜型油菜基因组保留了每个拟南芥14-3-3基因的1-5个直系同源基因,散布在其三个片段化的亚基因组中。qRT-PCR分析表明,21个BraA.GRF14中有14个表达,其中观察到非ε转录本的丰度高于ε基因,表明存在类别特异性的转录偏向。BraA.GRF14基因在植物发育阶段以及对非生物胁迫、植物激素处理和营养缺乏条件的响应中表现出不同的表达模式。总之,BraA.GRF14基因独特的表达模式和差异调节表明,白菜型油菜14-3-3蛋白在植物发育和胁迫反应过程中发生了功能分化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0434/4726770/5941884a517e/fpls-07-00012-g0001.jpg

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