首页> 外文期刊>Plant Molecular Biology >Molecular cloning and functional characterization of AcGST1, an anthocyanin-related glutathione S-transferase gene in kiwifruit (Actinidia chinensis)
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Molecular cloning and functional characterization of AcGST1, an anthocyanin-related glutathione S-transferase gene in kiwifruit (Actinidia chinensis)

机译:ACGST1的分子克隆和官能表征,猕猴桃(Actinidia Chinensis)中的花青素相关谷胱甘肽S-转移酶基因。

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Key messageAcGST1, an anthocyanin-related GST, may functions as a carrier to transport anthocyanins from ER to tonoplast in kiwifruit. It was positively regulated by AcMYBF110 through directly binding to its promoter.AbstractAnthocyanins are synthesized in the cytoplasmic surface of the endoplasmic reticulum but accumulate predominantly in the vacuole. Previous studies in model and ornamental plants have suggested that a member of the glutathione S-transferase (GST) gene family is involved in sequestration of anthocyanins into the vacuole. However, little is known about anthocyanin-related GST protein in kiwifruit. Here, four putative AcGSTs were identified from the genome of the red-fleshed Actinidia chinensis cv Hongyang'. Expression analyses reveal only the expression of AcGST1 was highly consistent with anthocyanin accumulation. Molecular complementation of Arabidopsis tt19 demonstrates AcGST1 can complement the anthocyanin-less phenotype of tt19. Transient expression in Actinidia arguta fruits further confirms that AcGST1 is functional in anthocyanin accumulation in kiwifruit. In vitro assays show the recombinant AcGST1 increases the water solubility of cyanidin-3-O-galactoside (C3Gal) and cyanidin-3-O-xylo-galactoside (C3XG). We further show that AcGST1 protein is localized not only in the ER but also on the tonoplast, indicating AcGST1 (like AtTT19) may functions as a carrier protein to transport anthocyanins to the tonoplast in kiwifruit. Moreover, the promoter of AcGST1 can be activated by AcMYBF110, based on results from transient dual-luciferase assays and yeast one-hybrid assays. EMSAs show that AcMYBF110 binds directly to CAGTTG and CCGTTG motifs in the AcGST1 promoter. These results indicate that AcMYBF110 plays an important role in transcriptional regulation of AcGST1 and, therefore, in controlling accumulation of anthocyanins in kiwifruit.
机译:关键Messageacgst1,一种非洲蛋白相关的GST,可以用作将青少年转移到猕猴桃的调色剂的载体。通过直接与其启动子直接结合,通过直接结合其阳性调节。在内质网的细胞质表面中合成了丁晶素,但主要在液泡中积聚。以前的模型和观赏植物的研究表明,谷胱甘肽S-转移酶(GST)基因家族的成员参与了花青素的螯合到液泡中。然而,很少是关于在猕猴桃中的花青素相关的GST蛋白质。在这里,从红肉猕猴桃CV Hongyang'的基因组中鉴定了四种推定的ACGSTS。表达分析显示,只有ACGST1的表达与花青素积累高度一致。 Arabidopsis TT19的分子互补证明ACGST1可以补充TT19的花青素表型。 Actinidia Arguta果实中的瞬时表达进一步证实,ACGST1是在猕猴桃的花青素积累中的功能性。体外测定显示重组ACGST1增加了Cyanidin-3-O-半乳糖苷(C3GAL)和Cyanidin-3-O- Xylo-半乳糖醇(C3XG)的水溶性。我们进一步表明,ACGST1蛋白不仅在ER中本地化,而且在调色剂上局部地定位,表明ACGST1(如ATTT19)可以用作载体蛋白,以将花青素运送到Kiwifruit中的调色剂。此外,基于瞬时双荧光素酶测定和酵母单杂化测定的结果,ACGST1的启动子可以通过ACMYBF110激活。 EMSAS表明ACMYBF110直接绑定到ACGST1启动子中的CAGTTG和CCGTTG主题。这些结果表明,ACMYBF110在ACGST1的转录调节中起重要作用,因此在控制猕猴桃中的花青素的积累。

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