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在基部真双子叶植物模型中对R2R3-MYB转录因子的计算机模拟分析

In silico analysis of R2R3-MYB transcription factors in the basal eudicot model, .

作者信息

Phukela Banisha, Leonard Hanna, Sapir Yuval

机构信息

The Botanical Garden, School of Plant Sciences and Food Security, Faculty of Life Sciences, Tel Aviv University, Tel Aviv, Israel.

Department of Botany, Miami University, Oxford, OH 45056 USA.

出版信息

3 Biotech. 2024 Nov;14(11):284. doi: 10.1007/s13205-024-04119-y. Epub 2024 Oct 29.

Abstract

UNLABELLED

R2R3-MYBs are an important group of transcription factors that regulate crucial developmental processes across the plant kingdom; yet no comprehensive analysis of the R2R3-MYBs in the early-diverging eudicot clade of Ranunculaceae has been conducted so far. In the present study,  is chosen to understand the extent of conservation and divergence of R2R3-MYBs as a representative of the family by analysing the genomic distribution, organization, gene structure, physiochemical properties, protein architecture, evolution and possible mode of expansion. Genome-wide analysis showed the presence of 82 putative homologues classified into 21 subgroups, based on phylogenetic analysis of full-length protein sequences. The domain has remained largely conserved across all homologues with few differences from the characterized  R2R3-MYBs. The topology of the phylogenetic tree remains the same when full-length protein sequences are used, indicating that the evolution of R2R3-MYBs is driven by the domain region only. This is supported by the presence of similar structures of exon-intron and conserved motifs within the same subgroup. Furthermore, comparisons of the AqcoeR2R3-MYB members with monocots and core-eudicots revealed the evolutionary expansion of a few functional clades, such as  R2R3-MYB subgroup 6 (SG6), the upstream regulatory factors of floral pigment biosynthesis and floral color. The reconstructed evolutionary history of SG6-like genes across angiosperms highlights the occurrence of independent duplication events in the genus . AqcoeR2R3-MYB genes are present in all seven chromosomes of , most of which result from local and segmental duplications. Selection analysis of these duplicated gene pairs indicates purifying selection except one, and the physiochemical analyses of R2R3-MYBs reveal differences among the MYBs signifying their functional diversification. This study paves the way for further investigation of paralogous copies and their probable role in the evolution of different floral traits in . It lays the foundation for functional genomic studies of R2R3-MYBs in the basal eudicots and facilitates comparative studies among angiosperms. The work also provides a framework for deciphering novel genetic regulatory pathways that govern the diversity of floral morphology.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s13205-024-04119-y.

摘要

未标注

R2R3-MYB是一类重要的转录因子,调控着植物界关键的发育过程;然而,迄今为止尚未对毛茛科早期分化的真双子叶植物分支中的R2R3-MYB进行全面分析。在本研究中,选择[具体物种名称未给出]作为该科的代表,通过分析基因组分布、组织、基因结构、理化性质、蛋白质结构、进化和可能的扩增模式,来了解R2R3-MYB的保守程度和差异。全基因组分析显示,基于全长蛋白质序列的系统发育分析,存在82个推定的同源物,分为21个亚组。该结构域在所有同源物中基本保持保守,与已表征的R2R3-MYB仅有少数差异。当使用全长蛋白质序列时,系统发育树的拓扑结构保持不变,表明R2R3-MYB的进化仅由结构域区域驱动。同一亚组内存在相似的外显子-内含子结构和保守基序,支持了这一点。此外,将[具体物种名称未给出]的R2R3-MYB成员与单子叶植物和核心真双子叶植物进行比较,揭示了一些功能进化枝的进化扩张,如R2R3-MYB亚组6(SG6),它是花色素生物合成和花色的上游调控因子。重建的被子植物中类似SG6基因的进化历史突出了[具体属名未给出]属中独立复制事件的发生。[具体物种名称未给出]的R2R3-MYB基因存在于其所有七条染色体上,其中大部分来自局部和片段重复。对这些重复基因对的选择分析表明,除了一对外均为纯化选择,R2R3-MYB的理化分析揭示了MYB之间的差异,表明它们功能的多样化。本研究为进一步研究旁系同源拷贝及其在[具体物种名称未给出]不同花性状进化中的可能作用铺平了道路。它为基部真双子叶植物中R2R3-MYB的功能基因组学研究奠定了基础,并促进了被子植物之间的比较研究。这项工作还提供了一个框架,用于解读控制花形态多样性的新遗传调控途径。

补充信息

在线版本包含可在10.1007/s13205-024-04119-y获取的补充材料。

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