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首页> 外文期刊>BMC Genomics >Genome-wide identification, phylogeny, evolutionary expansion and expression analyses of bZIP transcription factor family in tartary buckwheat
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Genome-wide identification, phylogeny, evolutionary expansion and expression analyses of bZIP transcription factor family in tartary buckwheat

机译:基因组鉴定,文学转录因子家庭在季后落荞麦面家庭的鉴定,系统发育,进化膨胀及表达分析

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In reported plants, the bZIP family is one of the largest transcription factor families. bZIP genes play roles in the light signal, seed maturation, flower development, cell elongation, seed accumulation protein, abiotic and biological stress and other biological processes. While, no detailed identification and genome-wide analysis of bZIP family genes in Fagopyum talaricum (tartary buckwheat) has previously been published. The recently reported genome sequence of tartary buckwheat provides theoretical basis for us to study and discuss the characteristics and expression of bZIP genes in tartary buckwheat based on the whole genome. In this study, 96 FtbZIP genes named from FtbZIP1 to FtbZIP96 were identified and divided into 11 subfamilies according to their genetic relationship with 70 bZIPs of A. thaliana. FtbZIP genes are not evenly distributed on the chromosomes, and we found tandem and segmental duplication events of FtbZIP genes on 8 tartary buckwheat chromosomes. According to the results of gene and motif composition, FtbZIP located in the same group contained analogous intron/exon organizations and motif composition. By qRT-PCR, we quantified the expression of FtbZIP members in stem, root, leaf, fruit, and flower and during fruit development. Exogenous ABA treatment increased the weight of tartary buckwheat fruit and changed the expressions of FtbZIP genes in group A. Through our study, we identified 96 FtbZIP genes in tartary buckwheat and synthetically further analyzed the structure composition, evolution analysis and expression pattern of FtbZIP proteins. The expression pattern indicates that FtbZIP is important in the course of plant growth and development of tartary buckwheat. Through comprehensively analyzing fruit weight and FtbZIP genes expression after ABA treatment and endogenous ABA content of tartary buckwheat fruit, ABA may regulate downstream gene expression by regulating the expression of FtPinG0003523300.01 and FtPinG0003196200.01, thus indirectly affecting the fruit development of tartary buckwheat. This will help us to further study the function of FtbZIP genes in the tartary buckwheat growth and improve the fruit of tartary buckwheat.
机译:在报道的植物中,BZIP系列是最大的转录因子家族之一。 Bzip基因在光信号,种子成熟,花发育,细胞伸长,种子积累蛋白,非生物和生物应激等生物过程中发挥作用。虽然,在Fagopyum Talicum(Tartary Buckwheat)中没有对Bzip家族基因进行详细的鉴定和基因组分析。最近报道了季后荞麦的基因组序列为我们提供了基于全基因组的Tartary Buckfeat中Bzip基因的特征和表达的理论依据。在本研究中,将96个FTBzip基因从FTBZIP1命名为FTBZIP96,并根据其与70 bzinaA的70 bziana的遗传关系分为11个亚壳。 FTBZIP基因均匀分布在染色体上,我们发现了在8个季后荞麦染色体上的FTBZIP基因的串联和节段性重复事件。根据基因和基序组合物的结果,位于同一组的FTBZIP含有类似的内含子/外显子组织和基序组合物。通过QRT-PCR,我们量化了茎,根,叶,水果和花的FTBzip成员的表达以及果实开发期间。外源性ABA治疗增加了季后落荞麦果的重量,并改变了A组中FTBzip基因的表达。通过我们的研究,我们在季后血荞麦面中鉴定了96个FTBzip基因,合成进一步分析了FTBZIP蛋白的结构组成,演化分析和表达模式。表达模式表明FTBZIP在植物生长和季后遇荞麦的发展过程中是重要的。通过全面分析ABA治疗和内源性ABA含量的果实重量和FTBZIP基因表达,ABA可以通过调节FTPY0003523300.01和FTPY0003196200.01的表达来调节下游基因表达,从而间接地影响Tartary荞麦的果实发育。这将有助于我们进一步研究Ftbzip基因在季后遇荞麦生长中的功能,改善了甘蓝荞麦的果实。

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