首页> 外文期刊>BMC Plant Biology >Genome-wide identification of mitogen-activated protein kinase gene family in Gossypium raimondii and the function of their corresponding orthologs in tetraploid cultivated cotton
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Genome-wide identification of mitogen-activated protein kinase gene family in Gossypium raimondii and the function of their corresponding orthologs in tetraploid cultivated cotton

机译:雷蒙氏棉有丝分裂原活化蛋白激酶基因家族的全基因组鉴定及其在四倍体栽培棉中相应直向同源物的功能

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Background Mitogen-activated protein kinase (MAPK) cascades play a crucial role in plant growth and development as well as biotic and abiotic stress responses. Knowledge about the MAPK gene family in cotton is limited, and systematic investigation of MAPK family proteins has not been reported. Results By performing a bioinformatics homology search, we identified 28 putative MAPK genes in the Gossypium raimondii genome. These MAPK members were anchored onto 11 chromosomes in G. raimondii , with uneven distribution. Phylogenetic analysis showed that the MAPK candidates could be classified into the four known A, B, C and D groups, with more MAPKs containing the TEY phosphorylation site (18 members) than the TDY motif (10 members). Furthermore, 21 cDNA sequences of MAPKs with complete open reading frames (ORFs) were identified in G. hirsutum via PCR-based approaches, including 13 novel MAPKs and eight with homologs reported previously in tetraploid cotton. The expression patterns of 23 MAPK genes reveal their important roles in diverse functions in cotton, in both various developmental stages of vegetative and reproductive growth and in the stress response. Using a reverse genetics approach based on tobacco rattle virus-induced gene silencing (TRV-VIGS), we further verified that MPK9 , MPK13 and MPK25 confer resistance to defoliating isolates of Verticillium dahliae in cotton. Silencing of MPK9 , MPK13 and MPK25 can significantly enhance cotton susceptibility to this pathogen. Conclusions This study presents a comprehensive identification of 28 mitogen-activated protein kinase genes in G. raimondii . Their phylogenetic relationships, transcript expression patterns and responses to various stressors were verified. This study provides the first systematic analysis of MAPKs in cotton, improving our understanding of defense responses in general and laying the foundation for future crop improvement using MAPKs.
机译:背景丝裂原激活的蛋白激酶(MAPK)级联在植物生长发育以及生物和非生物胁迫响应中起着至关重要的作用。关于棉花中MAPK基因家族的知识是有限的,并且尚未报道MAPK家族蛋白的系统研究。结果通过进行生物信息学同源性搜索,我们在雷蒙氏棉基因组中鉴定出28个推定的MAPK基因。这些MAPK成员被锚定在雷蒙德氏酵母的11条染色体上,分布不均。系统发育分析表明,MAPK候选物可以分为四个已知的A,B,C和D组,其中包含TEY磷酸化位点(18个成员)的MAPK比TDY基序(10个成员)更多。此外,通过基于PCR的方法在陆地棉中鉴定了具有完全开放阅读框(ORF)的MAPK的21个cDNA序列,包括13种新颖的MAPK和8种先前报道的四倍体棉中的同源物。 23个MAPK基因的表达模式揭示了它们在棉花的各种功能中,营养生长和生殖生长的各个发育阶段以及胁迫响应中的重要作用。使用基于烟草嘎嘎声病毒引起的基因沉默(TRV-VIGS)的反向遗传学方法,我们进一步验证了MPK9,MPK13和MPK25赋予了棉花棉花黄萎病分离株抗性。沉默MPK9,MPK13和MPK25可以显着增强棉花对该病原体的敏感性。结论本研究对雷蒙德氏酵母中28个丝裂原激活的蛋白激酶基因进行了全面鉴定。验证了它们的系统发育关系,转录本表达模式以及对各种应激源的反应。这项研究提供了棉花中MAPKs的第一个系统分析,提高了我们对总体防御反应的理解,并为将来使用MAPKs改良作物奠定了基础。

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