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Genome-wide identification of bZIP transcription factors and their responses to abiotic stress in celery

机译:基因组鉴定Bzip转录因子及其对芹菜中非生物胁迫的反应

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Celery ( Apium graveolens L.) is one of the most important vegetables in the Apiaceae family, rich in nutrients and widely grown around the world. bZIP transcription factors family plays an important role in the transcription regulation of plant growth and development, as well as adaptation to the external environment. In this paper, 62 bZIP family transcription factors were screened and identified based on the whole genome sequence of celery. The bZIP proteins of celery and Arabidopsis thaliana were divided into 10 subfamilies according to the phylogenetic tree. Phylogenetic and evolutionary analysis showed that the number of bZIP family members gradually expanded from lower plants to higher plants during the long evolution process. Based on the homology of celery and A. thaliana bZIP genes, the interaction network between celery bZIP transcription factors and other proteins in the genome was constructed, and the correlation data of protein interaction were also obtained. The expression profiles of 12 selected AgbZIP genes were detected and analyzed under abiotic stress treatments and different tissues using RT-qPCR. The results showed that AgbZIP can respond to high temperature, low temperature, drought, and high salt stress.
机译:芹菜(Apium Graveolens L.)是艾滋病植物科家族中最重要的蔬菜之一,富含营养,并广泛种植世界。 Bzip转录因子家族在植物生长和发展的转录调节中起着重要作用,以及适应外部环境。本文基于芹菜的全基因组序列,筛选和鉴定了62种Bzip族转录因子。根据系统发育树,芹菜和拟南芥的Bzip蛋白蛋白分为10个亚属。系统发育和进化分析表明,在长时间进化过程中,Bzip家族成员的数量从低层植物逐渐扩增到高等植物中。基于芹菜和A.拟南芥基因的同源性,构建了基因组中芹菜BZIP转录因子和其他蛋白质之间的相互作用网络,并获得了蛋白质相互作用的相关数据。使用RT-QPCR在非生物应激处理和不同组织下检测和分析12种选定的Agbzip基因的表达谱。结果表明,agbzip可以响应高温,低温,干旱和高盐胁迫。

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