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分析 ASR 和 LP3 同源基因家族揭示了 LP3-3 基因的正选择作用。

Analysis of the ASR and LP3 homologous gene families reveal positive selection acting on LP3-3 gene.

机构信息

Department of Forest Genetics and Plant physiology, Umeå Plant Science Centre, Swedish University of Agricultural Sciences, SE-901 83 Umeå, Sweden.

出版信息

Gene. 2023 Jan 20;850:146935. doi: 10.1016/j.gene.2022.146935. Epub 2022 Sep 29.

Abstract

Drought has long been established as a major environmental stress for plants which have in turn developed several coping strategies, ranging from physiological to molecular mechanisms. LP3 that was first discovered in loblolly pine (Pinus taeda L.) is a homolog of the Abscisic Acid, Stress and Ripening (ASR) gene belonging to the ABA/WDS gene family that was first detected in tomato. LP3 has been shown to be present in four different paralogs in loblolly pine called LP3-0, LP3-1, LP3-2 and LP3-3. LP3 in loblolly pine has not been as extensively studied as the ASR in tomato. Similar to ASR, the different LP3 paralogs have been shown to be upregulated in response to water deficit stress and to act as transcription factors for genes likely involved in hexose transport. In the current study, we have investigated the evolutionary history of LP3 gene family, with the aim of relating it to that of ASR from a phylogenetic perspective and comparing the differences in selective pressure and codon usage. Phylogenetic trees revealed that LP3 is less divergent across species than ASR even when the trees were solely based on the different sub-sections of the gene. Phylogenetic, GC content, codon usage and selective pressure analyses suggest that LP3-3 is undergoing positive selection.

摘要

干旱长期以来一直被认为是植物的主要环境压力,植物也因此发展出了几种应对策略,从生理机制到分子机制都有涉及。LP3 最初是在火炬松(Pinus taeda L.)中发现的,它是脱落酸、应激和成熟(ASR)基因的同源物,该基因最初在番茄中被检测到。LP3 已被证明在火炬松中有四个不同的同源基因,分别称为 LP3-0、LP3-1、LP3-2 和 LP3-3。与番茄中的 ASR 相比,LP3 在火炬松中的研究还不够广泛。与 ASR 相似,不同的 LP3 同源基因在受到水分亏缺胁迫时被上调,并作为可能参与己糖转运的基因的转录因子发挥作用。在本研究中,我们调查了 LP3 基因家族的进化历史,旨在从系统发育的角度将其与 ASR 相关联,并比较选择压力和密码子使用的差异。系统发育树表明,LP3 在物种间的分化程度低于 ASR,即使这些树仅基于基因的不同亚区。系统发育、GC 含量、密码子使用和选择压力分析表明,LP3-3 正在经历正选择。

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