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Genome-wide survey of B-box proteins in potato (Solanum tuberosum)—Identification characterization and expression patterns during diurnal cycle etiolation and de-etiolation

机译:马铃薯(马铃薯)B-box蛋白的全基因组调查—日循环黄化和去黄化过程中的鉴定特征和表达方式

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摘要

Plant B-box domain proteins (BBX) mediate many light-influenced developmental processes including seedling photomorphogenesis, seed germination, shade avoidance and photoperiodic regulation of flowering. Despite the wide range of potential functions, the current knowledge regarding BBX proteins in major crop plants is scarce. In this study, we identify and characterize the StBBX gene family in potato, which is composed of 30 members, with regard to structural properties and expression profiles under diurnal cycle, etiolation and de-etiolations. Based on domain organization and phylogenetic relationships, StBBX genes have been classified into five groups. Using real-time quantitative PCR, we found that expression of most of them oscillates following a 24-h rhythm; however, large differences in expression profiles were observed between the genes regarding amplitude and position of the maximal and minimal expression levels in the dayight cycle. On the basis of the time-of-day/time-of-night, we distinguished three expression groups specifically expressed during the light and two during the dark phase. In addition, we showed that the expression of several StBBX genes is under the control of the circadian clock and that some others are specifically associated with the etiolation and de-etiolation conditions. Thus, we concluded that StBBX proteins are likely key players involved in the complex diurnal and circadian networks regulating plant development as a function of light conditions and day duration.
机译:植物B-box域蛋白(BBX)介导许多受光影响的发育过程,包括幼苗光形态发生,种子发芽,避光和开花的光周期调节。尽管潜在的功能范围很广,但有关主要农作物中BBX蛋白的当前知识很少。在这项研究中,我们确定和表征了由30个成员组成的马铃薯StBBX基因家族,涉及其在昼夜循环,黄化和去黄化作用下的结构特性和表达谱。基于域组织和系统发育关系,StBBX基因已分为五类。使用实时定量PCR,我们发现其中大多数的表达在24小时节律后发生振荡。然而,在昼夜循环中,关于最大和最小表达水平的幅度和位置,在基因之间观察到表达谱上的巨大差异。根据一天中的时间/夜晚的时间,我们区分了三个在亮时阶段表达的表达组和两个在暗时阶段表达的表达组。此外,我们显示了几个StBBX基因的表达受昼夜节律的控制,而其他一些则与黄化和去黄化条件特别相关。因此,我们得出的结论是,StBBX蛋白可能是复杂的昼夜和昼夜节律网络中的关键参与者,昼夜节律和昼夜节律网络根据光照条件和日间长短来调节植物的发育。

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