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Characterization of FLOWERING LOCUS C Homologs in Apple as a Model for Fruit Trees

机译:苹果中开花基因座C同源​​物的特征作为果树模型

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To elucidate the molecular mechanism of juvenility and annual flowering of fruit trees, FLOWERING LOCUS C ( FLC ), an integrator of flowering signals, was investigated in apple as a model. We performed sequence and expression analyses and transgenic experiments related to juvenility with annual flowering to characterize the apple FLC homologs MdFLC . The phylogenetic tree analysis, which included other MADS-box genes, showed that both MdFLC1 and MdFLC3 belong to the same FLC group. MdFLC1c from one of the MdFLC1 splice variants and MdFLC3 contain the four conserved motives of an MIKC-type MADS protein. The mRNA of variants MdFLC1a and MdFLC1b contain intron sequences, and their deduced amino acid sequences lack K- and C-domains. The expression levels of MdFLC1a , MdFLC1b , and MdFLC1c decreased during the flowering induction period in a seasonal expression pattern in the adult trees, whereas the expression level of MdFLC3 did not decrease during that period. This suggests that MdFLC1 is involved in flowering induction in the annual growth cycle of adult trees. In apple seedlings, because phase change can be observed in individuals, seedlings can be used for analysis of expression during phase transition. The expression levels of MdFLC1b , MdFLC1c , and MdFLC3 were high during the juvenile phase and low during the transitional and adult phases. Because the expression pattern of MdFLC3 suggests that it plays a specific role in juvenility, MdFLC3 was subjected to functional analysis by transformation of Arabidopsis . The results revealed the function of MdFLC3 as a floral repressor. In addition, MdFT had CArG box-like sequences, putative targets for the suppression of flowering by MdFLC binding, in the introns and promoter regions. These results indicate that apple homologs of FLC, which might play a role upstream of the flowering signals, could be involved in juvenility as well as in annual flowering. Apples with sufficient genome-related information are useful as a model for studying phenomena unique to woody plants such as juvenility and annual flowering.
机译:为了阐明果树的幼苗和年开花的分子机制,开花基因座C(FLC)是开花信号的集成器,在苹果中被研究为模型。我们进行了与年度花卉有关的序列和表达分析和转基因实验,以表征苹果FLC同源物MDFLC。包括其他疯箱基因的系统发育树分析表明,MDFLC1和MDFLC3都属于同一FLC组。 MDFLC1C从其中一个MDFLC1剪接变体和MDFLC3含有MIC-Type MADS蛋白的四个保守动机。变体MDFLC1A和MDFLC1B的mRNA含有内含子序列,其推导的氨基酸序列缺乏K-和C-畴。 MDFLC1A,MDFLC1B和MDFLC1C的表达水平在成年树中的季节表达模式下开花诱导时段期间降低,而MDFLC3的表达水平在该时段期间没有减少。这表明MDFLC1参与了成人树的年生长周期的开花诱导。在苹果幼苗中,因为在个体中可以观察到相变,幼苗可用于在相转变期间的表达分析。 MDFLC1B,MDFLC1C和MDFLC3的表达水平在幼年相期间高,在过渡和成人阶段期间低。因为MDFLC3的表达模式表明它在幼年中发挥了特定作用,因此通过拟南芥的转化进行MDFLC3的功能分析。结果显示MDFLC3作为花卉阻遏物的功能。此外,MDFT具有呼吸盒状序列,用于通过MDFLC结合抑制开花的推定靶标,在内含子和启动子区域中。这些结果表明FLC的苹果同源物,它可能在开花信号上游发挥作用,可以参与少女以及年度开花。具有足够的基因组相关信息的苹果可用作研究木质植物特有的现象的模型,如少年和年度开花。

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