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首页> 外文期刊>Molecular Genetics and Genomics >Systematic analysis of NPK1-like genes in rice reveals a stress-inducible gene cluster co-localized with a quantitative trait locus of drought resistance
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Systematic analysis of NPK1-like genes in rice reveals a stress-inducible gene cluster co-localized with a quantitative trait locus of drought resistance

机译:对水稻中NPK1样基因的系统分析表明,与干旱抗性的数量性状基因座共定位的胁迫诱导性基因簇

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摘要

Phosphorylation by protein kinase is a ubiquitous key mechanism in translating external stimuli such as drought stress. NPK1 is a mitogen-activated protein kinase kinase kinase identified in Nicotiana tabacum and plays important roles in cytokinesis and auxin signaling transduction and responses to multiple stresses. Here we report the evolution, structure, and comprehensive expression profile of 21 NPK1-like genes in rice (Oryza sativa L.). Phylogenetic analysis of NPK1-like sequences in rice (OsNPKL), Arabidopsis, and other plants reveals that NPK1-like genes could be classified into three subgroups. Three OsNPKL gene clusters, located on chromosome 1 (OsNPKL1, 2, 3, and 4), 5 (OsNPKL14 and 15), and 10 (OsNPKL19 and 20), respectively, were identified in the rice genome. These clustered genes, which most likely evolved by tandem gene duplication, belong to the same phylogenetic subgroup, with similar genomic structures and conserved motifs in the kinase domain, which is unique to this subgroup. Expression analysis of OsNPKL genes under abiotic stresses suggests that the stress-responsive genes are mainly from the same subgroup. Especially interesting is that all the clustered genes are induced by drought, salt, or cold stress, and a few members are very strongly induced by drought. Some of the clustered genes are also induced by abscisic acid. The gene cluster on chromosome 1 is co-located with a quantitative trait locus (QTL) related to drought resistance. Although the drought-induced expression levels of the four genes in the cluster show no difference between the two parents used for QTL mapping, sequence variation in coding regions of the genes between the parents has provided some clues for further functional characterization of this gene cluster in abiotic stress tolerance in rice.
机译:蛋白激酶的磷酸化是翻译外部刺激(如干旱胁迫)的普遍机制。 NPK1是一种在烟草中鉴定的有丝分裂原活化的蛋白激酶激酶激酶,在胞质分裂和生长素信号转导以及对多种压力的应答中起重要作用。在这里,我们报道了水稻(Oryza sativa L.)中21个NPK1样基因的进化,结构和综合表达谱。对水稻(OsNPKL),拟南芥和其他植物中NPK1样序列的系统发育分析表明,NPK1样基因可以分为三个亚组。在水稻基因组中分别鉴定了位于染色体1(OsNPKL1、2、3和4),5(OsNPKL14和15)和10(OsNPKL19和20)染色体上的三个OsNPKL基因簇。这些簇状基因很可能是通过串联基因复制而进化的,属于同一系统发育亚组,在激酶结构域中具有相似的基因组结构和保守基序,这对该亚组是独特的。非生物胁迫下OsNPKL基因的表达分析表明,应激反应基因主要来自同一亚组。尤其有趣的是,所有聚类基因都是由干旱,盐或冷胁迫诱导的,而少数成员则受到干旱的强烈诱导。一些簇状基因也被脱落酸诱导。 1号染色体上的基因簇与与抗旱性相关的数量性状基因座(QTL)位于同一位置。尽管干旱诱导的簇中四个基因的表达水平在用于QTL定位的两个亲本之间没有差异,但是亲本之间基因编码区域的序列变异为进一步鉴定该基因簇的功能提供了一些线索。水稻非生物胁迫耐受性。

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