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首页> 外文期刊>BMC Genomics >Genome-wide analysis of the Solanum tuberosum (potato) trehalose-6-phosphate synthase (TPS) gene family: evolution and differential expression during development and stress
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Genome-wide analysis of the Solanum tuberosum (potato) trehalose-6-phosphate synthase (TPS) gene family: evolution and differential expression during development and stress

机译:马铃薯(马铃薯)海藻糖6-磷酸合酶(TPS)基因家族的全基因组分析:在发育和胁迫过程中的进化和差异表达

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摘要

Trehalose-6-phosphate synthase (TPS) serves important functions in plant desiccation tolerance and response to environmental stimuli. At present, a comprehensive analysis, i.e. functional classification, molecular evolution, and expression patterns of this gene family are still lacking in Solanum tuberosum (potato). In this study, a comprehensive analysis of the TPS gene family was conducted in potato. A total of eight putative potato TPS genes (StTPSs) were identified by searching the latest potato genome sequence. The amino acid identity among eight StTPSs varied from 59.91 to 89.54%. Analysis of dN/dS ratios suggested that regions in the TPP (trehalose-6-phosphate phosphatase) domains evolved faster than the TPS domains. Although the sequence of the eight StTPSs showed high similarity (2571-2796 bp), their gene length is highly differentiated (3189-8406 bp). Many of the regulatory elements possibly related to phytohormones, abiotic stress and development were identified in different TPS genes. Based on the phylogenetic tree constructed using TPS genes of potato, and four other Solanaceae plants, TPS genes could be categorized into 6 distinct groups. Analysis revealed that purifying selection most likely played a major role during the evolution of this family. Amino acid changes detected in specific branches of the phylogenetic tree suggests relaxed constraints might have contributed to functional divergence among groups. Moreover, StTPSs were found to exhibit tissue and treatment specific expression patterns upon analysis of transcriptome data, and performing qRT-PCR. This study provides a reference for genome-wide identification of the potato TPS gene family and sets a framework for further functional studies of this important gene family in development and stress response.
机译:6磷酸海藻糖合酶(TPS)在植物脱水耐受性和对环境刺激的反应中起重要作用。目前,马铃薯(马铃薯)仍缺乏对该基因家族的综合分析,即功能分类,分子进化和表达模式。在这项研究中,对马铃薯中的TPS基因家族进行了全面分析。通过搜索最新的马铃薯基因组序列,总共鉴定出八个推定的马铃薯TPS基因(StTPSs)。八个StTPS之间的氨基酸同一性从59.91%到89.54%不等。 dN / dS比的分析表明,TPP(海藻糖-6磷酸磷酸酶)结构域中的区域进化得比TPS域更快。尽管八个StTPS的序列显示出高度相似性(2571-2796 bp),但它们的基因长度却高度分化(3189-8406 bp)。在不同的TPS基因中发现了许多可能与植物激素,非生物胁迫和发育有关的调控元件。基于使用马铃薯的TPS基因以及其他4种茄科植物构建的系统树,TPS基因可以分为6个不同的组。分析表明,纯化选择最有可能在该家族的进化过程中发挥重要作用。在系统发育树的特定分支中检测到的氨基酸变化表明,宽松的限制可能导致了各组之间的功能差异。此外,在分析转录组数据并进行qRT-PCR后,发现StTPS表现出组织和治疗特异性表达模式。这项研究为马铃薯TPS基因家族的全基因组鉴定提供了参考,并为该重要基因家族在发育和胁迫反应中的进一步功能研究奠定了框架。

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