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High spatial resolution imaging of the dynamics of cuticular lipid deposition during Arabidopsis flower development

机译:拟南芥花卉发育中有孜孜性沉积动力学的高空间分辨率成像

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The extensive collection of glossy ( gl ) and eceriferum ( cer ) mutants of maize and Arabidopsis have proven invaluable in dissecting the branched metabolic pathways that support cuticular lipid deposition. This bifurcated pathway integrates a fatty acid elongation‐decarbonylative branch and a fatty acid elongation‐reductive branch, which collectively has the capacity to generate hundreds of cuticular lipid metabolites. In this study, a combined transgenic and biochemical strategy was implemented to explore and compare the physiological function of three homologous genes, Gl2 , Gl2‐like , and CER2 , in the context of this branched pathway. These biochemical characterizations integrated new extraction chromatographic procedures with high spatial resolution mass spectrometric imaging methods to profile the cuticular lipids on developing floral tissues transgenically expressing these transgenes in wild‐type or cer2 mutant lines of Arabidopsis. Collectively, these datasets establish that both the maize Gl2 and Gl2‐like genes are functional homologs of the Arabidopsis CER2 gene. In addition, the dynamic distribution of cuticular lipid deposition follows distinct floral organ localization patterns indicating that the fatty acid elongation‐decarbonylative branch of the pathway is differentially localized from the fatty acid elongation‐reductive branch of the pathway.
机译:玉米和拟南芥的大量光泽(GL)和Eceriferum(CER)突变体的突变体已被证明在解剖支撑有粘接性脂质沉积的支化代谢途径方面具有无价。该分叉的途径与脂肪酸伸长烷基 - 脱碳分支和脂肪酸伸长率 - 还原分支结合,其共同具有产生数百种皮肤脂质代谢物的能力。在该研究中,实施了组合的转基因和生物化学策略以探讨并比较在该支链途径的背景下的三种同源基因,GL2,GL2和Cer2的生理功能。这些生化特征在具有高空间分辨率质谱成像方法中综合新的提取色谱方法,以在乌克法族野生型或CER2突变线中显影转基因的植物组织的结膜脂质。集体,这些数据集确立了玉米GL2和GL2基因都是拟南芥CER2基因的功能同源物。此外,切割脂质沉积的动态分布遵循不同的花式器官定位模式,表明途径的脂肪酸伸长烷基化分支差异地局部地从途径的脂肪酸伸长率还原分支定位。

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