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Genome-wide identification and expression analysis of HSP90 gene family in Nicotiana tabacum

机译:烟草中HSP90基因家族的全基因组鉴定和表达分析

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Heat shock proteins 90 (HSP90s) are a highly conserved protein family of cellular chaperones widely found in plants; they play a fundamental role in response to biotic and abiotic stresses. The genome-wide analysis of HSP90 gene family has been completed for some species; however, it has been rarely reported for the tobacco HSP90 genes. In this study, we systematically conducted genome-wide identification and expression analysis of the tobacco HSP90 gene family, including gene structures, evolutionary relationships, chromosomal locations, conserved domains, and expression patterns. Twenty-one NtHSP90s were identified and classified into eleven categories (NtHSP90–1 to NtHSP90–11) based on phylogenetic analysis. The conserved structures and motifs of NtHSP90 proteins in the same subfamily were highly consistent. Most NtHSP90 proteins contained the ATPase domain, which was closely related to conserved motif 2. Motif 5 was a low complexity sequence and had the function of signal peptide. At least 6 pairs of NtHSP90 genes underwent gene duplication, which arose from segment duplication and tandem duplication events. Phylogenetic analysis showed that most species expanded according to their own species-specific approach during the evolution of HSP90s. Dynamic expression analysis indicated that some NtHSP90 genes may play fundamental roles in regulation of abiotic stress response. The expression of NtHSP90–4, NtHSP90–5, and NtHSP90–9 were up-regulated, while NtHSP90–6, and NtHSP90–7 were not induced by ABA, drought, salt, cold and heat stresses. Among the five treatments, NtHSP90s were most strongly induced by heat stress, and weakly activated by ABA treatment. There was a similar response pattern of NtHSP90s under osmotic stress, or extreme temperature stress. This is the first genome-wide analysis of Hsp90 in N. tabacum. These results indicate that each NtHSP90 member fulfilled distinct functions in response to various abiotic stresses.
机译:热休克蛋白90(HSP90s)是在植物中广泛发现的细胞伴侣的高度保守的蛋白家族。它们在应对生物和非生物胁迫方面起着基本作用。对某些物种的HSP90基因家族进行了全基因组分析。然而,很少有关于烟草HSP90基因的报道。在这项研究中,我们系统地进行了烟草HSP90基因家族的全基因组鉴定和表达分析,包括基因结构,进化关系,染色体位置,保守域和表达模式。根据系统发育分析,鉴定出21个NtHSP90,并将其分为11类(NtHSP90-1至NtHSP90-11)。在同一亚家族中,NtHSP90蛋白的保守结构和基序是高度一致的。大多数NtHSP90蛋白都包含ATPase结构域,该结构域与保守基序2密切相关。Motif 5是低复杂度序列,具有信号肽的功能。至少有6对NtHSP90基因经历了基因重复,这是由片段重复和串联重复事件引起的。系统发育分析表明,大多数物种在HSP90s进化过程中根据其自身的物种特异性方法扩展。动态表达分析表明,某些NtHSP90基因可能在非生物胁迫反应的调控中起基本作用。 NtHSP90-4,NtHSP90-5和NtHSP90-9的表达上调,而ABA,干旱,盐,冷和热胁迫都不诱导NtHSP90-6和NtHSP90-7的表达。在这五种处理中,NtHSP90s受热胁迫诱导最强,而受ABA处理则被弱激活。在渗透胁迫或极端温度胁迫下,NtHSP90s的响应模式相似。这是烟草中Hsp90的首次全基因组分析。这些结果表明,每个NtHSP90成员对各种非生物胁迫均具有不同的功能。

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