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Comprehensive analysis of NAC transcription factors uncovers their roles during fiber development and stress response in cotton

机译:对NAC转录因子的综合分析揭示了它们在棉花纤维发育和胁迫响应过程中的作用

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Transcription factors operate as important switches of transcription networks, and NAC (NAM, ATAF, and CUC) transcription factors are a plant-specific family involved in multiple biological processes. However, this gene family has not been systematically characterized in cotton. Here we identify a large number of genes with conservative NAC domains in four cotton species, with 147 found in Gossypium arboreum, 149 in G. raimondii, 267 in G. barbadense and 283 in G. hirsutum. Predicted membrane-bound NAC genes were also identified. Phylogenetic analysis showed that cotton NAC proteins clustered into seven subfamilies and homologous protein pairs showed similar characteristics. Evolutionary property analysis revealed that purifying selection of NAC genes occurred between diploid and polyploid cotton species, and variation analysis showed GhNAC genes may have been subjected to selection and domestication. NAC proteins showed extensive transactivation and this was dependent on the C-terminus. Some development and stress related cis-elements were enriched in the promoters of GhNAC genes. Comprehensive expression analysis indicated that 38 GhNAC genes were candidates for involvement in fiber development, and 120 in stress responses. Gene co-expression network analysis revealed relationships between fiber-associated NAC genes and secondary cell wall (SCW) biosynthesis genes. NAC genes were identified in diploid and tetraploid cotton, revealing new insights into their evolution, variation and homology relationships. Transcriptome analysis and co-expression network indicated roles for GhNAC genes in cotton fiber development and stress response, and NAC genes may prove useful in molecular breeding programmes.
机译:转录因子是转录网络的重要开关,而NAC(NAM,ATAF和CUC)转录因子是涉及多个生物学过程的植物特异家族。然而,该基因家族尚未在棉花中系统地表征。在这里,我们在四个棉花品种中鉴定了具有保守NAC域的大量基因,其中在棉花棉中发现147个,在雷蒙德氏菌中发现149个,在巴巴登塞氏菌中发现267个,在陆地棉中发现283个。还确定了预测的膜结合NAC基因。系统发育分析表明,棉花NAC蛋白聚集成七个亚科,同源蛋白对表现出相似的特征。进化特性分析表明,NAC基因的纯化选择发生在二倍体和多倍体棉种之间,变异分析表明GhNAC基因可能已经进行了选择和驯化。 NAC蛋白显示出广泛的反式激活,这取决于C端。 GhNAC基因的启动子丰富了一些发育和与压力有关的顺式元件。综合表达分析表明,有38个GhNAC基因是参与纤维发育的候选基因,有120个是应激反应的候选基因。基因共表达网络分析揭示了纤维相关的NAC基因与次级细胞壁(SCW)生物合成基因之间的关系。在二倍体和四倍体棉中鉴定出NAC基因,从而揭示了它们的进化,变异和同源关系的新见识。转录组分析和共表达网络表明GhNAC基因在棉纤维发育和胁迫响应中的作用,而NAC基因可能在分子育种计划中很有用。

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