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选择压力导致胡桃科 SPL 基因家族的分化。

Selection pressure causes differentiation of the SPL gene family in the Juglandaceae.

机构信息

State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, No. 666 Wusu Road, Lin'an District, Hangzhou, 311300, Zhejiang, China.

Center for Genomics and Biotechnology, Fujian Agriculture and Forestry University, Fuzhou, Fujian, China.

出版信息

Mol Genet Genomics. 2019 Aug;294(4):1037-1048. doi: 10.1007/s00438-019-01562-y. Epub 2019 Apr 11.

Abstract

The SQUAMOSA promoter-binding protein-like (SPL) is a plant-specific transcription factor that influences flowering and vegetative development. Although the SPL genes have been functionally analyzed in many species, studies on the evolutionary history of the whole gene family, and in the Juglandaceae specifically, have been limited. Here, we conducted a phylogenetic relationship analysis of the Juglandaceae SPL gene family compared with other land plant species. Our results showed that the SPL genes were divided into three major clades, all of which were further divided into ten small clades. Selection pressure analysis suggested that all SPL genes were exposed to purifying selection pressure during evolution. The purifying selection was smaller for the Juglandaceae SPL genes than for other angiosperms, indicating a greater susceptibility to functional differentiation in the Juglandaceae. The SPL proteins encoded by Clade 1 contained a branch-specific transmembrane structure and many conserved motif combinations at the C-terminal. We also detected many selection sites in these motif combinations. Expression analysis showed that Clade 1 genes had spatial and temporal differences and were highly expressed in various organs. The expression profile was closely related to the selection sites and motif combinations at the C-terminal. These observations represent essential entry points for revealing the functional differentiation of the SPL gene family. Our data presented here may provide a basis for future investigations of SPL genes in the Juglandaceae, especially for flower development and perhaps crop yield improvement.

摘要

SQUAMOSA 启动子结合蛋白样(SPL)是一种植物特异性转录因子,影响开花和营养生长发育。尽管已经对许多物种的 SPL 基因进行了功能分析,但对整个基因家族的进化历史,特别是在胡桃科中的研究还很有限。在这里,我们对胡桃科 SPL 基因家族与其他陆地植物物种进行了系统发育关系分析。结果表明,SPL 基因分为三大类,每大类又进一步分为十个小类。选择压力分析表明,所有 SPL 基因在进化过程中都受到了纯化选择压力。与其他被子植物相比,胡桃科 SPL 基因受到的纯化选择压力较小,表明其更容易发生功能分化。第 1 类的 SPL 蛋白含有一个分支特异性的跨膜结构和许多 C 端保守的基序组合。我们还在这些基序组合中检测到许多选择位点。表达分析表明,第 1 类基因在空间和时间上存在差异,在各种器官中高度表达。表达谱与 C 端的选择位点和基序组合密切相关。这些观察结果为揭示 SPL 基因家族的功能分化提供了重要的切入点。我们这里提供的数据可能为未来在胡桃科中研究 SPL 基因提供基础,特别是对花发育和作物产量提高的研究。

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