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首页> 外文期刊>Planta >Identification and characterization of two Bamboo (Phyllostachys praecox) AP1/SQUA-like MADS-box genes during floral transition
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Identification and characterization of two Bamboo (Phyllostachys praecox) AP1/SQUA-like MADS-box genes during floral transition

机译:在花期转化过程中鉴定和鉴定两个竹子(Phyllostachys praecox)AP1 / SQUA样MADS-box基因

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Bamboo (Bambusoideae) is by far the largest member of the grass family Poaceae, which is vital to the economy of many countries in the tropics and subtropics. However, the mechanism of flowering of bamboo (Phyllostachys praecox) is still unknown. In this study, we isolated two novel genes from P. praecox and evaluated their functional characteristics. The sequence and phylogenetic analysis indicated that these two genes, named PpMADS1 and PpMADS2, belong to FUL3 and FUL1 clade of Poaceae AP1/SQUA-like genes, respectively. The PpMADS2 possesses a truncated C terminus lacking the highly conserved paleoAP1 motif. It was further confirmed that the truncated C-terminal region was produced by natural sequence deletion in exons, but not by alternative splicing. Ectopic expression of PpMADS1 and PpMADS2 significantly promoted early flowering through upregulation of AP1 in Arabidopsis. Yeast two-hybrid experiments demonstrated that AP1 protein can interact with PpMADS1 but not PpMADS2, suggesting that these two genes may act differently in signaling early flowering of bamboo plants. RT-qPCR and in situ hybridization analysis revealed distinct expression patterns of these two genes in vegetative and reproductive tissues of bamboo. Taken together, our results suggest that both PpMADS1 and PpMADS2 are involved in floral transition, and PpMADS2 might play more important roles than PpMADS1 in floral development of Phyllostachys praecox.
机译:到目前为止,竹子是禾本科禾本科的最大成员,禾本科对热带和亚热带许多国家的经济至关重要。然而,竹子(Phyllostachys praecox)开花的机制仍然未知。在这项研究中,我们从P. praecox中分离了两个新基因,并评估了它们的功能特性。序列分析和系统进化分析表明,这两个基因分别名为PpMADS1和PpMADS2,分别属于禾本科AP1 / SQUA样基因的FUL3和FUL1进化枝。 PpMADS2具有一个截短的C末端,缺少高度保守的paleoAP1基序。进一步证实,截短的C末端区域是通过外显子中的天然序列缺失而不是通过选择性剪接产生的。 PpMADS1和PpMADS2的异位表达通过拟南芥中AP1的上调显着促进了早期开花。酵母两杂交实验表明,AP1蛋白可以与PpMADS1相互作用,但不能与PpMADS2相互作用,这表明这两个基因在竹植物早期开花信号传递中的作用可能不同。 RT-qPCR和原位杂交分析揭示了这两个基因在竹子的营养和生殖组织中的独特表达模式。两者合计,我们的结果表明PpMADS1和PpMADS2都参与花期过渡,并且PpMADS2在毛竹的花发育中可能比PpMADS1更重要。

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