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A Genome-Wide Analysis of the LBD (LATERAL ORGAN BOUNDARIES Domain) Gene Family in Malus domestica with a Functional Characterization of MdLBD11

机译:全基因组家蝇中LBD(横向器官边界域)基因家族的基因组分析,其功能特征为MdLBD11

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摘要

The plant-specific LBD (LATERAL ORGAN BOUNDARIES domain) genes belong to a major family of transcription factor that encode a zinc finger-like domain. It has been shown that LBD genes play crucial roles in the growth and development of Arabidopsis and other plant species. However, no detailed information concerning this family is available for apple. In the present study, we analyzed the apple (Malus domestica) genome and identified 58 LBD genes. This gene family was tested for its phylogenetic relationships with homologous genes in the Arabidopsis genome, as well as its location in the genome, structure and expression. We also transformed one MdLBD gene into Arabidopsis to evaluate its function. Like Arabidopsis, apple LBD genes also have a conserved CX2CX6CX3C zinc finger-like domain in the N terminus and can be divided into two classes. The expression profile indicated that apple LBD genes exhibited a variety of expression patterns, suggesting that they have diverse functions. At the same time, the expression analysis implied that members of this apple gene family were responsive to hormones and stress and that they may participate in hormone-mediated plant organogenesis, which was demonstrated with the overexpression of the apple LBD gene MdLBD11, resulting in an abnormal phenotype. This phenotype included upward curling leaves, delayed flowering, downward-pointing flowers, siliques and other abnormal traits. Based on these data, we concluded that the MdLBD genes may play an important role in apple growth and development as in Arabidopsis and other species.
机译:植物特异的LBD(横向器官边界域)基因属于编码锌指样结构域的主要转录因子家族。已经显示,LBD基因在拟南芥和其他植物物种的生长和发育中起关键作用。但是,没有有关该家族的详细信息可用于苹果。在本研究中,我们分析了苹果(Malus domestica)基因组并确定了58个LBD基因。测试了该基因家族与拟南芥基因组中同源基因的系统发育关系,以及其在基因组中的位置,结构和表达。我们还将一个MdLBD基因转化为拟南芥以评估其功能。与拟南芥一样,苹果LBD基因在N末端也有一个保守的CX2CX6CX3C锌指状结构域,可以分为两类。表达谱表明苹果LBD基因表现出多种表达模式,表明它们具有多种功能。同时,表达分析暗示该苹果基因家族的成员对激素和胁迫有反应,并且它们可能参与激素介导的植物器官发生,这通过苹果LBD基因MdLBD11的过表达得以证明。表型异常。该表型包括向上卷曲的叶子,延迟开花,朝下的花朵,长角果和其他异常性状。基于这些数据,我们得出结论,与拟南芥和其他物种一样,MdLBD基因可能在苹果的生长发育中起重要作用。

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