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在鼓槌树(Moringa oleifera Lam.)中,海藻糖-6-磷酸合酶基因家族的进化和表达模式。

Evolution and expression patterns of the trehalose-6-phosphate synthase gene family in drumstick tree (Moringa oleifera Lam.).

机构信息

State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, South China Agricultural University, Guangzhou, China.

Guangdong Key Laboratory for Innovative Development and Utilization of Forest Plant Germplasm, Guangzhou, China.

出版信息

Planta. 2018 Oct;248(4):999-1015. doi: 10.1007/s00425-018-2945-3. Epub 2018 Jul 13.

Abstract

Moringa oleifera TPSs were genome-wide identified for the first time, and a phylogenetic analysis was performed to investigate evolutionary divergence. The qRT-PCR data show that MoTPS genes response to different stress treatments. The trehalose-6-phosphate synthase (TPS) family is involved in a wide range of stress-resistance processes in plants. Its direct product, trehalose-6-phosphate, acts as a specific signal of sucrose status and a regulator to modulate carbon metabolism within the plant. In this study, eight TPS genes were identified and cloned based on the M. oleifera genome; only MoTPS1 exhibited TPS activity among Group I proteins. The characteristics of the MoTPS gene family were determined by analyzing phylogenetic relationships, gene structures, conserved motifs, selective forces, and expression patterns. The Group II MoTPS genes were under relaxed purifying selection or positive selection. The glycosyltransferase family 20 domains generally had lower Ka/Ks ratios and nonsynonymous (Ka) changes compared with those of trehalose-phosphatase domains, which is consistent with stronger purifying selection due to functional constraints in performing TPS enzyme activity. Phylogenetic analyses of TPS proteins from M. oleifera and 17 other plant species indicated that TPS were present before the monocot-dicot split, whereas Group II TPSs were duplicated after the separation of dicots and monocots. Quantitative real-time PCR analysis showed that the expression patterns of TPSs displayed group specificities in M. oleifera. Particularly, Group I MoTPS genes closely relate to reproductive development and Group II MoTPS genes closely relate to high temperature resistance in leaves, stem, stem tip and roots. This work provides a scientific classification of plant TPSs, dissects the internal relationships between their evolution and expressions, and promotes functional researches.

摘要

辣木 TPS 首次被全基因组鉴定,并进行了系统进化分析以研究进化分歧。qRT-PCR 数据显示,MoTPS 基因对不同胁迫处理有响应。海藻糖-6-磷酸合酶(TPS)家族参与植物的广泛抗逆过程。其直接产物海藻糖-6-磷酸作为蔗糖状态的特定信号,并调节植物内的碳代谢。在这项研究中,根据辣木叶基因组,鉴定并克隆了 8 个 TPS 基因;其中只有 MoTPS1 具有 I 组蛋白的 TPS 活性。通过分析系统进化关系、基因结构、保守基序、选择压力和表达模式,确定了 MoTPS 基因家族的特征。II 组 MoTPS 基因受到放松的净化选择或正选择。糖基转移酶家族 20 结构域一般具有比海藻糖磷酸酶结构域更低的 Ka/Ks 比值和非同义(Ka)变化,这与由于执行 TPS 酶活性的功能限制而导致更强的净化选择一致。辣木叶和 17 种其他植物的 TPS 蛋白的系统进化分析表明,TPS 存在于单子叶植物-双子叶植物分裂之前,而 II 组 TPS 则在双子叶植物和单子叶植物分离后发生了重复。定量实时 PCR 分析表明,TPS 的表达模式在辣木中表现出特定的分组特异性。特别是,I 组 MoTPS 基因与生殖发育密切相关,II 组 MoTPS 基因与叶片、茎、茎尖和根的耐高温性密切相关。这项工作为植物 TPS 提供了科学分类,剖析了它们的进化和表达之间的内在关系,并促进了功能研究。

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