首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Ectopic Expression of Jatropha curcas TREHALOSE-6-PHOSPHATE PHOSPHATASE J Causes Late-Flowering and Heterostylous Phenotypes in Arabidopsis but not in Jatropha
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Ectopic Expression of Jatropha curcas TREHALOSE-6-PHOSPHATE PHOSPHATASE J Causes Late-Flowering and Heterostylous Phenotypes in Arabidopsis but not in Jatropha

机译:麻疯树TREHALOSE-6-磷酸酯酶J的异位表达在拟南芥中引起迟开花和杂种表型但在麻疯树中不引起

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摘要

Trehalose-6-phosphate (T6P) phosphatase (TPP), a dephosphorylating enzyme, catalyzes the dephosphorylation of T6P, generating trehalose. In Jatropha, we found six members of the TPP family. Five of them JcTPPA, JcTPPC, JcTPPD, JcTPPG, and JcTPPJ are highly expressed in female flowers or male flowers, or both, suggesting that members of the JcTPP family may participate in flower development in Jatropha. The wide expression of JcTPPJ gene in various organs implied its versatile roles and thus was chosen for unraveling its biological functions during developmental process. We constructed an overexpression vector of JcTPPJ cDNA driven by the cauliflower mosaic virus (CaMV) 35S promoter for genetic transformation. Compared with control Arabidopsis plants, 35S:JcTPPJ transgenic Arabidopsis plants presented greater sucrose contents in their inflorescences and displayed late-flowering and heterostylous phenotypes. Exogenous application of sucrose to the inflorescence buds of wild-type Arabidopsis repressed the development of the perianth and filaments, with a phenocopy of the 35S:JcTPPJ transgenic Arabidopsis. These results suggested that the significantly increased sucrose level in the inflorescence caused (or induced) by JcTTPJ overexpression, was responsible for the formation of heterostylous flower phenotype. However, 35S:JcTPPJ transgenic Jatropha displayed no obvious phenotypic changes, implying that JcTPPJ alone may not be sufficient for regulating flower development in Jatropha. Our results are helpful for understanding the function of TPPs, which may regulate flower organ development by manipulating the sucrose status in plants.
机译:6磷酸海藻糖(T6P)磷酸酶(TPP)是一种去磷酸化酶,催化T6P的去磷酸化,生成海藻糖。在麻疯树中,我们发现了TPP家族的六名成员。其中五种JcTPPA,JcTPPC,JcTPPD,JcTPPG和JcTPPJ在雌花或雄花或两者中高表达,这表明JcTPP家族成员可能参与了麻风树的花发育。 JcTPPJ基因在各种器官中的广泛表达暗示了其广泛的作用,因此被选择为在发育过程中阐明其生物学功能。我们构建了由花椰菜花叶病毒(CaMV)35S启动子驱动的JcTPPJ cDNA的过表达载体,用于遗传转化。与对照拟南芥植物相比,转基因35S:JcTPPJ拟南芥植物在其花序中表现出更高的蔗糖含量,并表现出晚开花和异型表型。蔗糖在野生型拟南芥花序芽中的外源施用抑制了花被和花丝的发育,并具有35S:JcTPPJ转基因拟南芥的表型。这些结果表明, JcTTPJ 过表达引起(或诱导)的花序中蔗糖水平显着增加,这是造成异型花表型形成的原因。但是, 35S:JcTPPJ 转基因的麻风树没有表现出明显的表型变化,这表明仅 JcTPPJ 可能不足以调节中的花发育。麻风树。我们的结果有助于理解 TPPs 的功能,该功能可能通过操纵植物中的蔗糖状态来调节花器官的发育。

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