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首页> 外文期刊>Frontiers in Plant Science >Comprehensive Cloning of Prunus mume Dormancy Associated MADS-Box Genes and Their Response in Flower Bud Development and Dormancy
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Comprehensive Cloning of Prunus mume Dormancy Associated MADS-Box Genes and Their Response in Flower Bud Development and Dormancy

机译:休眠相关MADS-box基因的完整克隆及其对花芽发育和休眠的响应

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Dormancy Associated MADS-box genes are SVP/MADs-box members and supposed to play crucial roles in plant dormancy of perennial species. In Prunus mume , PmDAM6 has been previously identified to induce plant dormancy. In the current study, six PmDAMs were cloned in P. mume and functionally analyzed in yeast and tobacco to detect the roles of the genes paralogous to PmDAM6 . The expression patterns together with sequence similarities indicate that PmDAMs are divided into two sub-clades within SVP group. Moreover, PmDAMs are verified to take part in the development of different plant organs, specifically the flower buds, in some intricate patterns. Furthermore, the PmDAM proteins are found to have special functions by forming corresponding protein complex during the development of flower bud and induction of dormancy. In particular, when PmDAM1 dominating in flower bud in the warm months, the protein complexes are consisted of PmDAM1 itself or with PmDAM2. With the decrease temperatures in the following months, PmDAM6 was found to be highly expressed and gradually changed the complex structure to PmDAM6-protein complex due to strong binding tendencies with PmDAM1 and PmDAM3. Finally, the homodimers of PmDAM6 prevailed to induce the dormancy. The results obtained in the current study highlight the functions of PmDAMs in the tissue development and dormancy, which provide available suggestions for further explorations of protein-complex functions in association with bud growth and dormancy.
机译:休眠相关的MADS-box基因是SVP / MADs-box的成员,应该在多年生植物的休眠中起关键作用。在樱桃李中,PmDAM6先前已被鉴定出可诱导植物休眠。在当前的研究中,六个PmDAMs被克隆到了P.mume中,并在酵母和烟草中进行了功能分析,以检测与PmDAM6同源的基因的作用。表达模式和序列相似性表明,PmDAM被分为SVP组内的两个子分支。此外,已验证PmDAM以复杂的方式参与了不同植物器官(特别是花蕾)的发育。此外,发现PmDAM蛋白通过在花蕾的发育和诱导休眠过程中形成相应的蛋白复合物而具有特殊功能。特别是,在温暖的月份,当PmDAM1在花蕾中占主导地位时,蛋白质复合物由PmDAM1本身或与PmDAM2组成。随着接下来几个月温度的降低,由于与PmDAM1和PmDAM3的强烈结合趋势,发现PmDAM6高表达并逐渐将复合物结构改变为PmDAM6-蛋白质复合物。最后,PmDAM6的同型二聚体占主导地位,以诱导休眠。本研究获得的结果突出了PmDAM在组织发育和休眠中的功能,为进一步探索与芽生长和休眠相关的蛋白质复合功能提供了建议。

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