首页> 外文期刊>BMC Plant Biology >Response of phytohormone mediated plant homeodomain (PHD) family to abiotic stress in upland cotton ( Gossypium hirsutum spp.)
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Response of phytohormone mediated plant homeodomain (PHD) family to abiotic stress in upland cotton ( Gossypium hirsutum spp.)

机译:植物激素介导的植物同性恋(博士)家族对旱地棉花的非生物胁迫(Gossypium hirsutum spp。)

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The sequencing and annotations of cotton genomes provide powerful theoretical support to unravel more physiological and functional information. Plant homeodomain (PHD) protein family has been reported to be involved in regulating various biological processes in plants. However, their functional studies have not yet been carried out in cotton. In this study, 108, 55, and 52 PHD genes were identified in G. hirsutum, G. raimondii, and G. arboreum, respectively. A total of 297 PHD genes from three cotton species, Arabidopsis, and rice were divided into five groups. We performed chromosomal location, phylogenetic relationship, gene structure, and conserved domain analysis for GhPHD genes. GhPHD genes were unevenly distributed on each chromosome. However, more GhPHD genes were distributed on At_05, Dt_05, and At_07 chromosomes. GhPHD proteins depicted conserved domains, and GhPHD genes exhibiting similar gene structure were clustered together. Further, whole genome duplication (WGD) analysis indicated that purification selection greatly contributed to the functional maintenance of GhPHD gene family. Expression pattern analysis based on RNA-seq data showed that most GhPHD genes showed clear tissue-specific spatiotemporal expression patterns elucidating the multiple functions of GhPHDs in plant growth and development. Moreover, analysis of cis-acting elements revealed that GhPHDs may respond to a variety of abiotic and phytohormonal stresses. In this regard, some GhPHD genes showed good response against abiotic and phytohormonal stresses. Additionally, co-expression network analysis indicated that GhPHDs are essential for plant growth and development, while GhPHD genes response against abiotic and phytohormonal stresses may help to improve plant tolerance in adverse environmental conditions. This study will provide useful information to facilitate further research related to the vital roles of GhPHD gene family in plant growth and development.
机译:棉花基因组的测序和注释提供了强大的理论支持,以解开更多的生理和功能信息。据报道,植物同性恋(博士)蛋白质家庭参与调节植物中的各种生物过程。然而,他们的功能研究尚未在棉花中进行。在本研究中,分别以108,55和52个PHD基因分别鉴定在G.Hirsutum,G. Raimondii和G. Arboreum中。共有297种棉花种类,拟南芥和米饭的博士学位分为五组。我们对GHPHD基因进行了染色体位置,系统发育关系,基因结构和保守结构域分析。在每种染色体上不均匀地分布GHPHD基因。然而,更多GHPHD基因在AT_05,DT_05和AT_07染色体上分布。将所描述的GHPHD蛋白质所示的保守结构域,并且将表现出类似的基因结构的GHPHD基因聚集在一起。此外,全基因组重复(WGD)分析表明,纯化选择大大导致GHPHD基因家族的功能性维持。基于RNA-SEQ数据的表达模式分析表明,大多数GHPHD基因显示出清晰的组织特异性时尚表达模式,阐明了GHPDS在植物生长和发育中的多种功能。此外,CIS作用元素的分析表明,GHPDS可能对各种非生物和植物激素应力作出反应。在这方面,一些GHPHD基因表现出对非生物和植物激烈的应激的良好反应。此外,共表达网络分析表明,GHPD对于植物生长和发育至关重要,而GHPLD基因对非生物和植物激情应激的反应可能有助于改善不良环境条件的植物耐受性。本研究将提供有用的信息,以促进与GHPHD基因家族在植物生长和发展中的重要作用有关的进一步研究。

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