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八种单子叶植物和三种双子叶植物中AGPase基因及编码蛋白的比较分析,重点研究小麦

Comparative Analysis of AGPase Genes and Encoded Proteins in Eight Monocots and Three Dicots with Emphasis on Wheat.

作者信息

Batra Ritu, Saripalli Gautam, Mohan Amita, Gupta Saurabh, Gill Kulvinder S, Varadwaj Pritish K, Balyan Harindra S, Gupta Pushpendra K

机构信息

Bioinformatics Infrastructure Facility (BIF) Laboratory, Department of Genetics and Plant Breeding, Ch. Charan Singh University Meerut, India.

Molecular Biology Laboratory, Department of Genetics and Plant Breeding, Ch. Charan Singh University Meerut, India.

出版信息

Front Plant Sci. 2017 Jan 24;8:19. doi: 10.3389/fpls.2017.00019. eCollection 2017.

Abstract

ADP-glucose pyrophosphorylase (AGPase) is a heterotetrameric enzyme with two large subunits (LS) and two small subunits (SS). It plays a critical role in starch biosynthesis. We are reporting here detailed structure, function and evolution of the genes encoding the LS and the SS among monocots and dicots. "True" orthologs of maize (AGPase LS) and (AGPase SS) were identified in seven other monocots and three dicots; structure of the enzyme at protein level was also studied. Novel findings of the current study include the following: () at the DNA level, the genes controlling the SS are more conserved than those controlling the LS; the variation in both is mainly due to intron number, intron length and intron phase distribution; () at protein level, the SS genes are more conserved relative to those for LS; () "QTCL" motif present in SS showed evolutionary differences in AGPase belonging to wheat 7BS, , rice and sorghum, while "LGGG" motif in LS was present in all species except and chickpea; SS provides thermostability to AGPase, while LS is involved in regulation of AGPase activity; heterotetrameric structure of AGPase was predicted and analyzed in real time environment through molecular dynamics simulation for all the species; () several cis-acting regulatory elements were identified in the AGPase promoters with their possible role in regulating spatial and temporal expression (endosperm and leaf tissue) and also the expression, in response to abiotic stresses; and () expression analysis revealed downregulation of both subunits under conditions of heat and drought stress. The results of the present study have allowed better understanding of structure and evolution of the genes and the encoded proteins and provided clues for exploitation of variability in these genes for engineering thermostable AGPase.

摘要

ADP - 葡萄糖焦磷酸化酶(AGPase)是一种异源四聚体酶,由两个大亚基(LS)和两个小亚基(SS)组成。它在淀粉生物合成中起着关键作用。我们在此报告单子叶植物和双子叶植物中编码LS和SS的基因的详细结构、功能及进化情况。在另外七种单子叶植物和三种双子叶植物中鉴定出了玉米(AGPase LS)和(AGPase SS)的“真正”直系同源基因;还研究了该酶在蛋白质水平的结构。本研究的新发现包括:(1)在DNA水平上,控制SS的基因比控制LS的基因更保守;两者的变异主要归因于内含子数量、内含子长度和内含子相位分布;(2)在蛋白质水平上,SS基因相对于LS基因更保守;(3)SS中存在的“QTCL”基序在属于小麦7BS、、水稻和高粱的AGPase中表现出进化差异,而LS中的“LGGG”基序存在于除和鹰嘴豆之外的所有物种中;SS为AGPase提供热稳定性,而LS参与AGPase活性的调节;通过分子动力学模拟在实时环境中对所有物种的AGPase异源四聚体结构进行了预测和分析;(4)在AGPase启动子中鉴定出了几个顺式作用调控元件,它们在调节空间和时间表达(胚乳和叶片组织)以及响应非生物胁迫的表达中可能发挥作用;(5)表达分析显示,在高温和干旱胁迫条件下,两个亚基的表达均下调。本研究结果有助于更好地理解这些基因及其编码蛋白质的结构和进化,并为利用这些基因的变异性来构建热稳定AGPase提供了线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e93/5259687/11636ef7be3b/fpls-08-00019-g0001.jpg

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