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芸薹属(Brassica juncea L.)细胞骨架丝状肌动蛋白基因家族的进化动态揭示了其在长角果发育和抗逆性中的作用。

Evolutionary dynamics of the cytoskeletal profilin gene family in Brassica juncea L. reveal its roles in silique development and stress resilience.

机构信息

School of Biotechnology, Gautam Buddha University, Greater Noida, U.P., India.

School of Life Sciences, Jawaharlal Nehru University, New Delhi, India.

出版信息

Int J Biol Macromol. 2024 May;266(Pt 2):131247. doi: 10.1016/j.ijbiomac.2024.131247. Epub 2024 Mar 31.

Abstract

Essential to plant adaptation, cell wall (CW) integrity is maintained by CW-biosynthesis genes. Cytoskeletal actin-(de)polymerizing, phospholipid-binding profilin (PRF) proteins play important roles in maintaining cellular homeostasis across kingdoms. However, evolutionary selection of PRF genes and their systematic characterization in family Brassicaceae, especially in Brassica juncea remain unexplored. Here, a comprehensive analysis of genome-wide identification of BjPRFs, their phylogenetic association, genomic localization, gene structure, and transcriptional profiling were performed in an evolutionary framework. Identification of 23 BjPRFs in B. juncea indicated an evolutionary conservation within Brassicaceae. The BjPRFs evolved through paralogous and orthologous gene formation in Brassica genomes. Evolutionary divergence of BjPRFs indicated purifying selection, with nonsynonymous (dN)/synonymous (dS) value of 0.090 for orthologous gene-pairs. Hybrid homology-modeling identified evolutionary distinct and conserved domains in BjPRFs which suggested that these proteins evolved following the divergence of monocot and eudicot plants. RNA-seq profiles of BjPRFs revealed their functional evolution in spatiotemporal manner during plant-development and stress-conditions in diploid/amphidiploid Brassica species. Real-Time PCR experiments in seedling, vegetative, floral and silique tissues of B. juncea suggested their essential roles in systematic plant development. These observations underscore the expansion of BjPRFs in B. juncea, and offer valuable evolutionary insights for exploring cellular mechanisms, and stress resilience.

摘要

细胞壁(CW)完整性对于植物适应至关重要,它由 CW 生物合成基因维持。细胞骨架肌动蛋白(去)聚合、磷脂结合丝氨酸(de)富含脯氨酸(PRF)蛋白在跨王国维持细胞内稳态方面发挥着重要作用。然而,PRF 基因的进化选择及其在十字花科,尤其是在 Brassica juncea 中的系统特征仍然未知。在这里,我们在进化框架内对 BjPRFs 的全基因组鉴定、系统发育关联、基因组定位、基因结构和转录谱进行了全面分析。在 B. juncea 中鉴定出 23 个 BjPRFs,表明在十字花科中具有进化保守性。BjPRFs 通过 Brassica 基因组中的旁系同源和直系同源基因形成而进化。BjPRFs 的进化分歧表明了纯化选择,直系同源基因对的非同义(dN)/同义(dS)值为 0.090。杂种同源建模鉴定出 BjPRFs 中进化独特和保守的结构域,表明这些蛋白质在单子叶植物和双子叶植物分化后进化。BjPRFs 的 RNA-seq 谱揭示了它们在二倍体/同源多倍体 Brassica 物种的植物发育和胁迫条件下的时空功能进化。B. juncea 幼苗、营养体、花和蒴果组织中的实时 PCR 实验表明,它们在系统植物发育中具有重要作用。这些观察结果强调了 BjPRFs 在 B. juncea 中的扩展,并为探索细胞机制和应激恢复提供了有价值的进化见解。

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