首页> 外文期刊>Journal of Plant Growth Regulation >Genome-Wide Identification of the TCP Transcription Factor Family in Chickpea (Cicer arietinum L.) and Their Transcriptional Responses to Dehydration and Exogenous Abscisic Acid Treatments
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Genome-Wide Identification of the TCP Transcription Factor Family in Chickpea (Cicer arietinum L.) and Their Transcriptional Responses to Dehydration and Exogenous Abscisic Acid Treatments

机译:鹰嘴豆(Cicer Arietinum L.)中TCP转录因子家族的基因组鉴定及其对脱水和外源脱落酸处理的转录反应

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Chickpea (Cicer arietinum L.) is regarded asone of theimportant grainlegumes of the Fabaceae family and being consumed in many countries in the world. Water deficit is the most pivotal environmental factor constraining the worldwide productivity of chickpea. The TCP transcription factors can act as integrators of multiple growth and environmental stimuli. However, no information on this gene family in chickpea with regard to their potential roles in drought responses was reported. In this study, 23 CaTCP genes were identified and characterized in the chickpea genome. First, their major features, including chromosomal distribution, gene duplication, protein features, and conserved domains, were examined. Subsequently, phylogenetic analyses were used to study the relationship of the identified CaTCPs. Next, to gain an insight into the functions of the CaTCP genes, we examined their expression profiles in various tissues at different growth and developmental stages. Furthermore, we carried out expression analyses of the CaTCP genes in chickpea plants subjected to dehydration and abscisic acid (ABA) treatments using real-time quantitative PCR to identify dehydration- and/or ABA-responsive candidate genes that may be promising for further in planta analyses for potential applications in genetic engineering to develop improved drought-tolerant chickpea varieties. We found six and eight CaTCP genes up- and down-regulated, respectively, by at least twofold in chickpea leaves and/or roots by dehydration treatment, among which eight CaTCPs were also responsive to ABA in at least one of the examined organs. CaTCP07 was noted to be the most induced gene upon dehydration and ABA treatments. Our study is the first report on the comprehensive analysis of the CaTCP gene family in chickpea, and provides useful information for further functional characterizations of individual CaTCP genes in chickpea.
机译:Chickpea(Cicer Arietinum L.)被认为是Fabaceae家族的重要粒细胞,并在世界上许多国家消费。水资源赤字是限制鹰嘴豆全球生产率的最重要的环境因素。 TCP转录因子可以作为多重生长和环境刺激的集成商。然而,没有关于鹰嘴豆内的这种基因家族的信息,关于它们在干旱反应中的潜在作用。在该研究中,鉴定了23个CATCP基因并表征了鹰嘴豆基因组。首先,研究了它们的主要特征,包括染色体分布,基因重复,蛋白质特征和保守域。随后,使用系统发育分析来研究鉴定的CATCP的关系。接下来,为了深入了解CATCP基因的功能,我们在不同生长和发育阶段的各种组织中检查了它们的表达谱。此外,我们使用实时定量PCR在经受脱水和脱水酸(ABA)处理中的鹰嘴豆植物中的CATCP基因的表达分析,以鉴定可能在植物中进一步前进的脱水和/或ABA响应候选基因遗传工程潜在应用分析,促进耐旱鹰嘴豆品种。我们发现六和八种CATCP基因分别由鹰嘴豆叶和/或脱水处理中的至少两倍,其中八个CATCPS在至少一种检查器官中的至少一种时也响应ABA。 CATCP07被认为是脱水和ABA治疗中最诱导的基因。我们的研究是关于Chickpea的CATCP基因家族综合分析的第一份报告,并提供了鹰嘴豆中单个CATCP基因的进一步函数特征的有用信息。

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