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首页> 外文期刊>Genomics >Genome-wide analyses of ATP sulfurylase (ATPS) genes in higher plants and expression profiles in sorghum (Sorghum bicolor) under cadmium and salinity stresses
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Genome-wide analyses of ATP sulfurylase (ATPS) genes in higher plants and expression profiles in sorghum (Sorghum bicolor) under cadmium and salinity stresses

机译:高粱(高粱双子升温型高粱(高粱双子)在高粱(高粱双子)中的ATP硫核(ATP)基因的基因组分析

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ATP sulfurylase (ATPS, EC: 2.7.7.4) is a crucial enzyme for sulfate assimilation pathway in both plastids and cytosol in plants. In this study, genome-wide and comparative analyses of ATPSs in 11 higher plant species, including sequence and structural analyses have been performed. Expression of ATPS genes in sorghum under cadmium (Cd) and salinity (NaCl) stresses were also investigated to provide a model experimental data for the regulation of ATPS genes under stress conditions. Thirty-one ATPS genes from 11 plant species were found. It showed that ATPSs from different species have high sequence divergences, which cause structural differences among them. Phylogenetic analysis has shown that there are two major types of ATPSs evolved in dicots while monocots were evolved to have one type of ATPs. Finally, expression analysis of ATPS genes revealed tissue and stress dependent expression pattern, which indicates expressions of ATPS genes are tightly regulated.
机译:ATP硫磺化酶(ATP,EC:2.7.7.4)是植物中血压性和细胞溶溶胶中的硫酸盐同化途径的关键酶。在本研究中,已经进行了11种高等植物物种中的ATPS的基因组和对比分析,包括序列和结构分析。还研究了镉(CD)和盐度下高粱中ATPS基因的表达,为胁迫条件下的ATPS基因进行了调节的模型实验数据。发现了来自11种植物物种的三十一只ATP基因。它表明,来自不同物种的ATPS具有高序列分流,这导致它们之间的结构差异。系统发育分析表明,在Dicots中存在两种主要类型的ATPS,而单像进化以具有一种类型的ATP。最后,ATPS基因的表达分析显示出组织和应激依赖性表达模式,其表明ATPS基因的表达是紧密调节的。

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