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来自芸苔属植物的MIRNA164启动子的序列和功能特征表明,同源基因之间存在拷贝数依赖性的调控多样化。

Sequence and functional characterization of MIRNA164 promoters from Brassica shows copy number dependent regulatory diversification among homeologs.

作者信息

Jain Aditi, Anand Saurabh, Singh Neer K, Das Sandip

机构信息

Department of Botany, University of Delhi, New Delhi, 110007, India.

Department of Biotechnology, TERI University, Plot No. 10, Institutional Area, Vasant Kunj, New Delhi, 110070, India.

出版信息

Funct Integr Genomics. 2018 Jul;18(4):369-383. doi: 10.1007/s10142-018-0598-8. Epub 2018 Mar 12.

Abstract

The impact of polyploidy on functional diversification of cis-regulatory elements is poorly understood. This is primarily on account of lack of well-defined structure of cis-elements and a universal regulatory code. To the best of our knowledge, this is the first report on characterization of sequence and functional diversification of paralogous and homeologous promoter elements associated with MIR164 from Brassica. The availability of whole genome sequence allowed us to identify and isolate a total of 42 homologous copies of MIR164 from diploid species-Brassica rapa (A-genome), Brassica nigra (B-genome), Brassica oleracea (C-genome), and allopolyploids-Brassica juncea (AB-genome), Brassica carinata (BC-genome) and Brassica napus (AC-genome). Additionally, we retrieved homologous sequences based on comparative genomics from Arabidopsis lyrata, Capsella rubella, and Thellungiella halophila, spanning ca. 45 million years of evolutionary history of Brassicaceae. Sequence comparison across Brassicaceae revealed lineage-, karyotype, species-, and sub-genome specific changes providing a snapshot of evolutionary dynamics of miRNA promoters in polyploids. Tree topology of cis-elements associated with MIR164 was found to re-capitulate the species and family evolutionary history. Phylogenetic shadowing identified transcription factor binding sites (TFBS) conserved across Brassicaceae, of which, some are already known as regulators of MIR164 expression. Some of the TFBS were found to be distributed in a sub-genome specific (e.g., SOX specific to promoter of MIR164c from MF2 sub-genome), lineage-specific (YABBY binding motif, specific to C. rubella in MIR164b), or species-specific (e.g., VOZ in A. thaliana MIR164a) manner which might contribute towards genetic and adaptive variation. Reporter activity driven by promoters associated with MIR164 paralogs and homeologs was majorly in agreement with known role of miR164 in leaf shaping, regulation of lateral root development and senescence, and one previously un-described novel role in trichome. The impact of polyploidy was most profound when reporter activity across three MIR164c homeologs were compared that revealed negligible overlap, whereas reporter activity among two homeologs of MIR164a displays significant overlap. A copy number dependent cis-regulatory divergence thus exists in MIR164 genes in Brassica juncea. The full extent of regulatory diversification towards adaptive strategies will only be known when future endeavors analyze the promoter function under duress of stress and hormonal regimes.

摘要

多倍体对顺式调控元件功能多样化的影响目前尚不清楚。这主要是由于顺式元件缺乏明确的结构以及通用的调控密码。据我们所知,这是关于芸苔属中与MIR164相关的旁系同源和部分同源启动子元件的序列及功能多样化特征的首次报道。全基因组序列的可得性使我们能够从二倍体物种——白菜型油菜(A基因组)、黑芥(B基因组)、甘蓝(C基因组)以及异源多倍体——芥菜(AB基因组)、埃塞俄比亚芥(BC基因组)和甘蓝型油菜(AC基因组)中总共鉴定并分离出42个MIR164的同源拷贝。此外,我们基于比较基因组学从琴叶拟南芥、微小拟南芥和盐芥中检索到同源序列,这些物种跨越了约4500万年的十字花科进化历史。十字花科内的序列比较揭示了谱系、核型、物种和亚基因组特异性变化,提供了多倍体中miRNA启动子进化动态的一个快照。发现与MIR164相关的顺式元件的树形拓扑结构概括了物种和科的进化历史。系统发育阴影分析确定了十字花科中保守的转录因子结合位点(TFBS),其中一些已经被认为是MIR164表达的调节因子。发现一些TFBS以亚基因组特异性(例如,MF2亚基因组中MIR164c启动子特有的SOX)、谱系特异性(YABBY结合基序,在MIR164b中特定于微小拟南芥)或物种特异性(例如,拟南芥MIR164a中的VOZ)的方式分布,这可能有助于遗传和适应性变异。由与MIR164旁系同源和部分同源基因相关的启动子驱动的报告基因活性主要与已知的miR164在叶片形态塑造、侧根发育和衰老调节中的作用一致,以及在一个先前未描述的在毛状体中的新作用。当比较三个MIR164c部分同源基因的报告基因活性时,发现多倍体的影响最为显著,结果显示重叠可忽略不计,而MIR164a的两个部分同源基因之间的报告基因活性显示出显著重叠。因此,芥菜中的MIR164基因存在拷贝数依赖性的顺式调控差异。只有当未来的研究在胁迫和激素处理的压力下分析启动子功能时,才能了解适应性策略中调控多样化的全部程度。

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