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番茄中谷胱甘肽S-转移酶基因家族的全基因组鉴定与表达分析:深入了解其生理功能和应激特异性作用

Genome-wide identification and expression analysis of glutathione S-transferase gene family in tomato: Gaining an insight to their physiological and stress-specific roles.

作者信息

Islam Shiful, Rahman Iffat Ara, Islam Tahmina, Ghosh Ajit

机构信息

Department of Biochemistry and Molecular Biology, Shahjalal University of Science and Technology, Sylhet, Bangladesh.

Plant Breeding and Biotechnology Laboratory, Department of Botany, University of Dhaka, Dhaka, Bangladesh.

出版信息

PLoS One. 2017 Nov 2;12(11):e0187504. doi: 10.1371/journal.pone.0187504. eCollection 2017.

Abstract

Glutathione S-transferase (GST) refers to one of the major detoxifying enzymes that plays an important role in different abiotic and biotic stress modulation pathways of plant. The present study aimed to a comprehensive genome-wide functional characterization of GST genes and proteins in tomato (Solanum lycopersicum L.). The whole genome sequence analysis revealed the presence of 90 GST genes in tomato, the largest GST gene family reported till date. Eight segmental duplicated gene pairs might contribute significantly to the expansion of SlGST gene family. Based on phylogenetic analysis of tomato, rice, and Arabidopsis GST proteins, GST family members could be further divided into ten classes. Members of each orthologous class showed high conservancy among themselves. Tau and lambda are the major classes of tomato; while tau and phi are the major classes for rice and Arabidopsis. Chromosomal localization revealed highly uneven distribution of SlGST genes in 13 different chromosomes, where chromosome 9 possessed the highest number of genes. Based on publicly available microarray data, expression analysis of 30 available SlGST genes exhibited a differential pattern in all the analyzed tissues and developmental stages. Moreover, most of the members showed highly induced expression in response to multiple biotic and abiotic stress inducers that could be harmonized with the increase in total GST enzyme activity under several stress conditions. Activity of tomato GST could be enhanced further by using some positive modulators (safeners) that have been predicted through molecular docking of SlGSTU5 and ligands. Moreover, tomato GST proteins are predicted to interact with a lot of other glutathione synthesizing and utilizing enzymes such as glutathione peroxidase, glutathione reductase, glutathione synthetase and γ-glutamyltransferase. This comprehensive genome-wide analysis and expression profiling would provide a rational platform and possibility to explore the versatile role of GST genes in crop engineering.

摘要

谷胱甘肽S-转移酶(GST)是主要的解毒酶之一,在植物不同的非生物和生物胁迫调节途径中发挥重要作用。本研究旨在对番茄(Solanum lycopersicum L.)中GST基因和蛋白质进行全面的全基因组功能鉴定。全基因组序列分析表明番茄中存在90个GST基因,这是迄今为止报道的最大的GST基因家族。八个片段重复基因对可能对SlGST基因家族的扩展有显著贡献。基于番茄、水稻和拟南芥GST蛋白的系统发育分析,GST家族成员可进一步分为十类。每个直系同源类的成员之间表现出高度保守性。Tau和lambda是番茄中的主要类别;而tau和phi是水稻和拟南芥中的主要类别。染色体定位显示SlGST基因在13条不同染色体上分布极不均匀,其中9号染色体上的基因数量最多。基于公开的微阵列数据,对30个可用的SlGST基因进行表达分析,结果显示在所有分析的组织和发育阶段呈现出差异表达模式。此外,大多数成员在多种生物和非生物胁迫诱导下表现出高度诱导表达,这与几种胁迫条件下总GST酶活性的增加相一致。通过对SlGSTU5和配体进行分子对接预测的一些阳性调节剂(安全剂)可进一步增强番茄GST的活性。此外,预测番茄GST蛋白会与许多其他谷胱甘肽合成和利用酶相互作用,如谷胱甘肽过氧化物酶、谷胱甘肽还原酶、谷胱甘肽合成酶和γ-谷氨酰转移酶。这种全面的全基因组分析和表达谱分析将为探索GST基因在作物工程中的多种作用提供一个合理的平台和可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fb7/5667761/a44eb7a48007/pone.0187504.g001.jpg

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