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首页> 外文期刊>Frontiers in Plant Science >Characterization and Expression Analysis of PtAGL24, a SHORT VEGETATIVE PHASE/ AGAMOUS-LIKE 24 (SVP/AGL24)-Type MADS-Box Gene from Trifoliate Orange ( Poncirus trifoliata L. Raf.)
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Characterization and Expression Analysis of PtAGL24, a SHORT VEGETATIVE PHASE/ AGAMOUS-LIKE 24 (SVP/AGL24)-Type MADS-Box Gene from Trifoliate Orange ( Poncirus trifoliata L. Raf.)

机译:<斜斜体> pTAG124 ,<斜体>短营养阶段 / <斜体>静态诱导24(SVP / AGL24 ) - 来自Trifoliate的癫痫盒基因的表征及表达分析橙色(<斜视> poncirus trifoliata l。 raf。)

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摘要

The transition from vegetative to reproductive growth in perennial woody plants does not occur until after several years of repeated seasonal changes and alternative growth. To better understand the molecular basis of flowering regulation in citrus, a MADS-box gene was isolated from trifoliate orange (precocious trifoliate orange, Poncirus trifoliata L. Raf.). Sequence alignment and phylogenetic analysis showed that the MADS-box gene is more closely related to the homologs of the AGAMOUS-LIKE 24 ( AGL24 ) lineage than to any of the other MADS-box lineages known from Arabidopsis ; it is named PtAGL24 . Expression analysis indicated that PtAGL24 was widely expressed in the most organs of trifoliate orange, with the higher expression in mature flowers discovered by real-time PCR. Ectopic expression of PtAGL24 in wild-type Arabidopsis promoted early flowering and caused morphological changes in class I transgenic Arabidopsis . Yeast two-hybrid assay revealed that PtAGL24 interacted with Arabidopsis AtAGL24 and other partners of AtAGL24, suggesting that the abnormal morphology of PtAGL24 overexpression in transgenic Arabidopsis was likely due to the inappropriate interactions between exogenous and endogenous proteins. Also, PtAGL24 interacted with SUPPRESSOR OF OVEREXPRESSION OF CONSTANS1 (PtSOC1) and APETALA1 (PtAP1) of citrus. These results suggest that PtAGL24 may play an important role in the process of floral transition but may have diverse functions in citrus development.
机译:在多年的反复季节变化和替代生长之后,直到多年落体木质植物中的植物生长生长的过渡不会发生。为了更好地了解柑橘中开花调节的分子基础,从Trifoliate橙(早熟的Trifoliate橙,Poncirus Trifoliata L. Raf中分离了一种疯狂的盒基因。序列对准和系统发育分析表明,疯箱基因与酰胺状24(AgL24)谱系的同源物更密切相关,而不是从拟南芥中已知的任何其他疯饮盒谱系;它被命名为ptagl24。表达分析表明,PTAG124广泛表达于Trifoliate橙色的最多官宫,具有通过实时PCR发现的成熟花的表达更高。 PTAG124在野生型拟南芥中的异位表达促进了初级开花并导致I类转基因拟南芥的形态变化。酵母双杂化测定显示PTAG124与Arabidopsis Atagl24和Atagl24的其他合作伙伴相互作用,表明转基因拟南芥中的PTAG124过表达的异常形态可能是由于外源和内源性蛋白质之间的不恰当相互作用。此外,PTAG124与柑橘的硫氧化体1(PTSoC1)和Apetala1(PTAP1)的过表达的抑制剂相互作用。这些结果表明PTAGL24可能在花卉过渡过程中发挥重要作用,但在柑橘开发中可能具有多样化的功能。

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