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Identification of Histone H3 (HH3) Genes in Gossypium hirsutum Revealed Diverse Expression During Ovule Development and Stress Responses

机译:胚乳发育和应激反应过程中表达的陆地棉中组蛋白H3(HH3)基因的鉴定

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摘要

Histone acts as the core for nucleosomes and is a key protein component of chromatin. Among different histone variants, histone H3 (HH3) variants have been reported to play vital roles in plant development. However, biological information and evolutionary relationships of HH3 genes in cotton remain to be elucidated. The current study identified 34 HH3 genes in Gossypium hirsutum. Phylogenetic analysis classified HH3 genes of 19 plant species into eight distinct clades. Sequence logos analysis among Arabidopsis, rice, and G. hirsutum amino acid residues showed higher conservation in amino acids. Using collinearity analysis, we identified 81 orthologous/paralogous gene pairs among the four genomes (A, D, At, and Dt) of cotton. Further, orthologous/paralogous and the Ka/Ks ratio demonstrated that cotton HH3 genes experienced strong purifying selection pressure with restricted functional divergence resulting from segmental and whole genome duplication. Expression pattern analysis indicated that GhHH3 genes were preferentially expressed in cotton ovule tissues. Additionally, GhHH3 gene expression can be regulated by abiotic stresses (cold, heat, sodium chloride (NaCl), and polyethylene glycol (PEG)) and phytohormonal (brassinolide (BL), gibberellic acid (GA), indole-3-acetic acid (IAA), salicylic acid (SA), and methyl jasmonate (MeJA)) treatments, suggesting that GhHH3 genes might play roles in abiotic and hormone stress resistance. Taken together, this work provides important information to decipher complete molecular and physiological functions of HH3 genes in cotton.
机译:组蛋白充当核小体的核心,并且是染色质的关键蛋白质成分。在不同的组蛋白变体中,据报道,组蛋白H3(HH3)变体在植物发育中起着至关重要的作用。然而,棉花中HH3基因的生物学信息和进化关系仍有待阐明。当前的研究在陆地棉中鉴定出34个HH3基因。系统发育分析将19种植物的HH3基因分为8个不同的进化枝。拟南芥,水稻和G. hirsutum氨基酸残基之间的序列徽标分析显示,氨基酸具有更高的保守性。使用共线性分析,我们在棉花的四个基因组(A,D,At和Dt)中鉴定了81个直系同源/旁系同源基因对。此外,直系同源/旁系同源和Ka / Ks比值表明,棉花HH3基因经历了强大的纯化选择压力,且由于节段和整个基因组重复而导致的功能差异受到限制。表达模式分析表明,GhHH3基因在棉花胚珠组织中优先表达。此外,GhHH3基因表达可以通过非生物胁迫(冷,热,氯化钠(NaCl)和聚乙二醇(PEG))和植物激素(油菜素内酯(BL),赤霉素(GA),吲哚-3-乙酸( IAA),水杨酸(SA)和茉莉酸甲酯(MeJA))处理,表明GhHH3基因可能在非生物和激素胁迫抗性中起作用。两者合计,这项工作提供了重要信息,以破译棉花中HH3基因的完整分子和生理功能。

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