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Cloning and molecular characterization of a glycerol-3-phosphate O-acyltransferase (GPAT) gene from Echium (Boraginaceae) involved in the biosynthesis of cutin polyesters

机译:Echium(蔷薇科)甘油3-磷酸O-酰基转移酶(GPAT)基因的克隆和分子表征

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The glycerol-based lipid polyester called cutin is a main component of cuticle, the protective interface of aerial plant organs also controlling compound exchange with the environment. Though recent progress towards understanding of cutin biosynthesis has been made in Arabidopsis thaliana, little is known in other plants. One key step in this process is the acyl transfer reaction to the glycerol backbone. Here we report the cloning and molecular characterization of EpGPAT1, a gene encoding a glycerol-3-phosphate O-acyltransferase (GPAT) from Echium pitardii (Boraginaceae) with high similarity to the AtGPAT4/AtGPAT8 of Arabidopsis. Quantitative analysis by qRT-PCR showed highest expression of EpGPAT1 in seeds, roots, young leaves and flowers. Acyltransferase activity of EpGPAT1 was evidenced by heterologous expression in yeast. Ectopic expression in leaves of tobacco plants lead to an increase of C16 and C18 hydroxyacids and α,ω-diacids in the cell wall fraction, indicating a role in the biosynthesis of polyesters. Analysis of the genomic organization in Echium revealed the presence of EpGPAT2, a closely related gene which was found to be mostly expressed in developing leaves and flowers. The presence of a conserved HAD-like domain at the N-terminal moiety of GPATs from Echium, Arabidopsis and other plant species suggests a possible phosphohydrolase activity in addition to the reported acyltransferase activity. Evolutive implications of this finding are discussed.
机译:称为角质的甘油基脂质聚酯是角质层的主要成分,空中植物器官的保护界面也控制着化合物与环境的交换。尽管在拟南芥中对了解角质生物合成的最新进展,在其他植物中知之甚少。该过程中的一个关键步骤是酰基转移至甘油骨架的反应。在这里,我们报告EpGPAT1的克隆和分子表征,EpGPAT1是一种编码与拟南芥AtGPAT4 / AtGPAT8高度相似的,来自Echium pitardii(Boraginaceae)的甘油3-磷酸O-酰基转移酶(GPAT)的基因。通过qRT-PCR进行的定量分析显示EpGPAT1在种子,根,幼叶和花朵中的表达最高。通过酵母中的异源表达证明了EpGPAT1的酰基转移酶活性。烟草植物叶片中的异位表达导致细胞壁组分中C16和C18羟酸和α,ω-二酸的增加,表明在聚酯的生物合成中起作用。对Echium中的基因组组织进行分析后发现,存在一个紧密相关的基因EpGPAT2,该基因主要在发育中的叶子和花朵中表达。在来自Echium,拟南芥和其他植物物种的GPAT的N-末端部分存在保守的HAD样结构域,这表明除了报道的酰基转移酶活性之外,还可能存在磷酸水解酶活性。讨论了这一发现的进化意义。

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