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生物信息学分析揭示多倍体甘蔗中参与海藻糖代谢的基因。

Bioinformatic analyses to uncover genes involved in trehalose metabolism in the polyploid sugarcane.

机构信息

Laboratório de Fisiologia Ecológica de Plantas, Departamento de Botânica, Instituto de Biociências, Universidade de São Paulo, São Paulo, Brazil.

Instituto Nacional de Ciência e Tecnologia do Bioetanol, São Paulo, Brazil.

出版信息

Sci Rep. 2022 May 7;12(1):7516. doi: 10.1038/s41598-022-11508-x.

Abstract

Trehalose-6-phosphate (T6P) is an intermediate of trehalose biosynthesis that plays an essential role in plant metabolism and development. Here, we comprehensively analyzed sequences from enzymes of trehalose metabolism in sugarcane, one of the main crops used for bioenergy production. We identified protein domains, phylogeny, and in silico expression levels for all classes of enzymes. However, post-translational modifications and residues involved in catalysis and substrate binding were analyzed only in trehalose-6-phosphate synthase (TPS) sequences. We retrieved 71 putative full-length TPS, 93 trehalose-6-phosphate phosphatase (TPP), and 3 trehalase (TRE) of sugarcane, showing all their conserved domains, respectively. Putative TPS (Classes I and II) and TPP sugarcane sequences were categorized into well-known groups reported in the literature. We measured the expression levels of the sequences from one sugarcane leaf transcriptomic dataset. Furthermore, TPS Class I has specific N-glycosylation sites inserted in conserved motifs and carries catalytic and binding residues in its TPS domain. Some of these residues are mutated in TPS Class II members, which implies loss of enzyme activity. Our approach retrieved many homo(eo)logous sequences for genes involved in trehalose metabolism, paving the way to discover the role of T6P signaling in sugarcane.

摘要

海藻糖-6-磷酸(T6P)是海藻糖生物合成的中间产物,在植物代谢和发育中起着至关重要的作用。在这里,我们全面分析了甘蔗中糖代谢酶的序列,甘蔗是用于生物能源生产的主要作物之一。我们确定了所有酶类的蛋白质结构域、系统发育和计算机表达水平。然而,仅在海藻糖-6-磷酸合酶(TPS)序列中分析了翻译后修饰以及参与催化和底物结合的残基。我们从甘蔗中检索到 71 个假定的全长 TPS、93 个海藻糖-6-磷酸磷酸酶(TPP)和 3 个海藻糖酶(TRE),分别显示了它们所有的保守结构域。假定的 TPS(I 类和 II 类)和 TPP 甘蔗序列被分类为文献中报道的已知组。我们测量了一个甘蔗叶片转录组数据集的序列表达水平。此外,TPS Class I 在保守基序中插入了特定的 N-糖基化位点,并在其 TPS 结构域中携带催化和结合残基。这些残基中的一些在 TPS Class II 成员中发生突变,这意味着酶活性丧失。我们的方法检索到许多与海藻糖代谢相关基因的同源(或同系物)序列,为发现 T6P 信号在甘蔗中的作用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/749b/9079074/42ebbcda8d74/41598_2022_11508_Fig1_HTML.jpg

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