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首页> 外文期刊>Journal of Plant Research >Genome-wide analysis identifies chickpea ( Cicer arietinum) heat stress transcription factors ( Hsfs) responsive to heat stress at the pod development stage
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Genome-wide analysis identifies chickpea ( Cicer arietinum) heat stress transcription factors ( Hsfs) responsive to heat stress at the pod development stage

机译:基因组 - 范围分析识别鸡肝(<重点型=“斜体”> Cicer Arietinum )热应激转录因子(<重点型=“斜体”> HSFS )响应于POD开发阶段的热应力

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摘要

The heat stress transcription factors ( Hsfs ) play a prominent role in thermotolerance and eliciting the heat stress response in plants. Identification and expression analysis of Hsfs gene family members in chickpea would provide valuable information on heat stress responsive Hsfs . A genome-wide analysis of Hsfs gene family resulted in the identification of 22 Hsf genes in chickpea in both desi and kabuli genome. Phylogenetic analysis distinctly separated 12 A, 9 B, and 1 C class Hsfs , respectively. An analysis of cis-regulatory elements in the upstream region of the genes identified many stress responsive elements such as heat stress elements (HSE), abscisic acid responsive element (ABRE) etc. In silico expression analysis showed nine and three Hsfs were also expressed in drought and salinity stresses, respectively. Q-PCR expression analysis of Hsfs under heat stress at pod development and at 15?days old seedling stage showed that CarHsfA2, A6 , and B2 were significantly upregulated in both the stages of crop growth and other four Hsfs ( CarHsfA2, A6a, A6c, B2a ) showed early transcriptional upregulation for heat stress at seedling stage of chickpea. These subclasses of Hsfs identified in this study can be further evaluated as candidate genes in the characterization of heat stress response in chickpea.
机译:热应激转录因子(HSF)在热调节中起着突出的作用,并引发植物中的热应激反应。 HSFS基因家族成员在鹰嘴豆中的鉴定和表达分析将提供有关热应激响应性HSF的有价值的信息。对HSFS基因家族的基因组分析导致DESI和Kabuli基因组中鹰嘴豆中的22个HSF基因。系统发育分析清楚地分别分别分离12A,9b和1c级HSF。对基因上游区域中的顺式调节元件的分析鉴定了许多应激响应元件,例如热应激元件(HSE),脱落酸响应元件(ABRE)等。在硅表达分析中显示出九次和三个HSF也被表达干旱和盐度应力分别。 Q-PCR在POD发育中热应激和15?天龄幼苗阶段的Q-PCR表达分析,显示Carhsfa2,A6和B2在作物生长和其他四种HSF(Carhsfa2,A6a,A6C, B2A)显示鹰嘴豆幼苗阶段的热应激早期转录上调。可以进一步评估本研究中鉴定的HSF的这些亚类作为鸡豆中热应激反应表征的候选基因。

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