首页> 外文期刊>Frontiers in Chemistry >Comparative Analysis of CDPK Family in Maize, Arabidopsis, Rice, and Sorghum Revealed Potential Targets for Drought Tolerance Improvement
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Comparative Analysis of CDPK Family in Maize, Arabidopsis, Rice, and Sorghum Revealed Potential Targets for Drought Tolerance Improvement

机译:玉米,拟南芥,水稻和高粱中CDPK家族的比较分析显示了改善耐旱性的潜在目标

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Calcium dependent protein kinases (CDPKs) play major role in regulation of plant growth and development in response to various stresses including drought. A set of 32 CDPK genes identified in maize were further used for searching of orthologs in the model plant Arabidopsis (72) and major food crops such as rice (78) and sorghum (91). We comprehensively investigated the phylogenetic relationship, annotations, gene duplications, gene structure, divergence time, 3-D protein structures and tissue-specific drought induced expression of CDPK genes in all four species. Variation in intron frequency among these species likely contributed to the functional diversity of CDPK genes to various stress responses. Protein kinase and protein kinase C phosphorylation site domains were the most conserved motifs identified in all species. Four groups were identified from the sequence-based phylogenetic analysis, in which maize CDPKs were clustered in group III. The time of divergence (Ka/Ks) analysis revealed that the CDPKs were evolved through stabilizing selection. Expression data showed that the CDPK genes were highly expressed in leaf of maize, rice, and sorghum whereas in Arabidopsis the maximum expression was observed in root. 3-D protein structure were predicted for the nine genes (Arabidopsis: 2, maize: 2, rice: 3 and sorghum: 2) showing differential expression in at least three species. The predicted 3-D structures were further evaluated and validated by Ramachandran plot, ANOLEA, ProSA and Verify-3D. The superimposed 3-D structure of drought-related orthologous proteins retained similar folding pattern owing to their conserved nature. Functional annotation revealed the involvement of CDPK genes in various pathways such as osmotic homeostasis, cell protection and root growth. The interactions of CDPK genes in various pathways play crucial role in imparting drought tolerance through different ABA and MAPK signalling cascades. Our studies suggest that these selected candidate genes could be targeted in development of drought tolerant cultivars in maize, rice and sorghum through appropriate breeding approaches. Our comparative experiments of CDPK genes could also be extended in the drought stress breeding programmes of the related species.
机译:钙依赖性蛋白激酶(CDPK)在调节植物生长和发育中起主要作用,以应对包括干旱在内的各种胁迫。在玉米中鉴定出的一组32个CDPK基因被进一步用于在模型植物拟南芥(72)和主要粮食作物如水稻(78)和高粱(91)中搜索直系同源物。我们全面研究了这四个物种中CDPK基因的系统发生关系,注释,基因重复,基因结构,发散时间,3-D蛋白结构和组织特异性干旱诱导的表达。这些物种中内含子频率的变化可能有助于CDPK基因对各种应激反应的功能多样性。蛋白激酶和蛋白激酶C的磷酸化位点域是所有物种中最保守的基序。从基于序列的系统发育分析中鉴定出四组,其中玉米CDPKs聚集在第三组中。发散时间(Ka / Ks)分析显示,CDPKs通过稳定选择而进化。表达数据表明,CDPK基因在玉米,水稻和高粱的叶中高度表达,而在拟南芥中,根部表达最高。预测了九个基因(拟南芥:2,玉米:2,水稻:3和高粱:2)的3-D蛋白结构,这些基因在至少三个物种中表达差异。通过Ramachandran图,ANOLEA,ProSA和Verify-3D对预测的3-D结构进行了进一步评估和验证。干旱相关直系同源蛋白质的叠加3-D结构由于其保守性质而保留了相似的折叠模式。功能注释显示CDPK基因参与各种途径,如渗透稳态,细胞保护和根系生长。 CDPK基因在各种途径中的相互作用在通过不同的ABA和MAPK信号级联传递耐旱性中起着至关重要的作用。我们的研究表明,通过适当的育种方法,可以将这些选定的候选基因作为玉米,水稻和高粱中耐旱品种的开发目标。我们对CDPK基因的比较实验也可以扩展到相关物种的干旱胁迫育种程序中。

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