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Molecular Evolution of Trehalose-6-Phosphate Synthase (TPS) Gene Family in Populus Arabidopsis and Rice

机译:在杨树拟南芥和水稻海藻糖-6-磷酸合成酶(Tps)基因家族的分子进化

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摘要

Trehalose-6-phosphate synthase (TPS) plays important roles in trehalose metabolism and signaling. Plant TPS proteins contain both a TPS and a trehalose-6-phosphate phosphatase (TPP) domain, which are coded by a multi-gene family. The plant TPS gene family has been divided into class I and class II. A previous study showed that the Populus, Arabidopsis, and rice genomes have seven class I and 27 class II TPS genes. In this study, we found that all class I TPS genes had 16 introns within the protein-coding region, whereas class II TPS genes had two introns. A significant sequence difference between the two classes of TPS proteins was observed by pairwise sequence comparisons of the 34 TPS proteins. A phylogenetic analysis revealed that at least seven TPS genes were present in the monocot–dicot common ancestor. Segmental duplications contributed significantly to the expansion of this gene family. At least five and three TPS genes were created by segmental duplication events in the Populus and rice genomes, respectively. Both the TPS and TPP domains of 34 TPS genes have evolved under purifying selection, but the selective constraint on the TPP domain was more relaxed than that on the TPS domain. Among 34 TPS genes from Populus, Arabidopsis, and rice, four class I TPS genes (AtTPS1, OsTPS1, PtTPS1, and PtTPS2) were under stronger purifying selection, whereas three Arabidopsis class I TPS genes (AtTPS2, 3, and 4) apparently evolved under relaxed selective constraint. Additionally, a reverse transcription polymerase chain reaction analysis showed the expression divergence of the TPS gene family in Populus, Arabidopsis, and rice under normal growth conditions and in response to stressors. Our findings provide new insights into the mechanisms of gene family expansion and functional evolution.
机译:6-海藻糖磷酸合酶(TPS)在海藻糖代谢和信号传导中起重要作用。植物TPS蛋白同时包含TPS和6-磷酸海藻糖磷酸酶(TPP)域,这些域由多基因家族编码。植物TPS基因家族被分为I类和II类。先前的研究表明,胡杨,拟南芥和水稻基因组具有7个I类和27个TPS类基因。在这项研究中,我们发现所有I类TPS基因在蛋白质编码区内均具有16个内含子,而II类TPS基因具有两个内含子。通过对34种TPS蛋白的成对序列比较,观察到两类TPS蛋白之间的显着序列差异。系统发育分析表明,在单子叶植物—双子共同祖先中至少存在7个TPS基因。节段重复显着促进​​了该基因家族的扩展。分别通过在胡杨和水稻基因组中的区段复制事件产生了至少五个和三个TPS基因。 34个TPS基因的TPS和TPP结构域在纯化选择下均已进化,但对TPP结构域的选择约束比对TPS结构域的选择约束更为宽松。在来自胡杨,拟南芥和水稻的34个TPS基因中,有四个I类TPS基因(AtTPS1,OsTPS1, PtTPS1 PtTPS2 )处于较强的纯化选择之下,而三个em>拟南芥 I类 TPS 基因( AtTPS2 3 4 )显然在宽松的选择性约束。此外,逆转录聚合酶链反应分析表明,在正常生长条件下,拟南芥和水稻中 TPS 基因家族的表达差异并应对压力源。我们的发现为基因家族扩展和功能进化的机制提供了新的见解。

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