首页> 外文期刊>Journal of Plant Physiology >Oleosin gene family of Coffea canephora: quantitative expression analysis of five oleosin genes in developing and germinating coffee grain
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Oleosin gene family of Coffea canephora: quantitative expression analysis of five oleosin genes in developing and germinating coffee grain

机译:Canffea canephora的Oleosin基因家族:五个在发育和发芽咖啡粒中的油质蛋白基因的定量表达分析

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Coffee grains have an oil content between 10% and 16%, with these values associated with Coffea canephora (robusta) and C. arabica (arabica), respectively. As the majority of the oil stored in oil seeds is contained in specific structures called oil bodies, we were interested in determining whether there are any differences in the expression of the main oil body proteins, the oleosins, between the robusta and arabica varieties. Here, we present the isolation, characterization and quantitative expression analysis of six cDNAs representing five genes of the coffee oleosin family (CcOLE-1 to CcOLE-5) and one gene of the steroleosin family (CcSTO-1). Each coffee oleosin cDNA encodes for the signature structure for oleosins, a long hydrophobic central sequence containing a proline KNOT motif. Sequence analysis also indicates that the C-terminal domain of CcOLE-1, CcOLE-3 and CcOLE-5 contain an 18-residue sequence typical of H-form oleosins. Quantitative RT-PCR showed that the transcripts of all five oleosins were predominantly expressed during grain maturation in robusta and arabica grain, with CcOLE-1 and CcOLE-2 being more highly expressed. While the relative expression levels of the five oleosins were similar for robusta and arabica, significant differences in the absolute levels of expression were found between the two species. Quantitative analysis of oleosin transcripts in germinating arabica grain generally showed that the levels of these transcripts were lower in the grain after drying, and then further decreased during germination, except for a small spike of expression for CcOLE-2 early in germination. In contrast, the levels of CcSTO-1 transcripts remained relatively constant during germination, in agreement with suggestions that this protein is actively involved in the process of oil body turnover. Finally, we discuss the implications of the coffee oleosin expression data presented relative to the predicted roles for the different coffee oleosins during development and germination.
机译:咖啡粒的油含量在10%到16%之间,这些值分别与canffea canephora(robusta)和C. arabica(arabica)有关。由于储存在油料种子中的大多数油都包含在称为油体的特定结构中,因此我们有兴趣确定罗布斯塔和阿拉比卡品种之间主要油体蛋白(油质蛋白)的表达是否存在差异。在这里,我们介绍了六个cDNA的分离,表征和定量表达分析,这些cDNA代表了咖啡油质蛋白家族的五个基因(CcOLE-1至CcOLE-5)和一个固醇脂蛋白家族的一个基因(CcSTO-1)。每个咖啡油质蛋白cDNA编码油质蛋白的签名结构,该结构是一个长的疏水性中心序列,含有脯氨酸KNOT基序。序列分析还表明,CcOLE-1,CcOLE-3和CcOLE-5的C末端结构域包含一个典型的H型油质蛋白的18个残基序列。定量RT-PCR显示,五种油质蛋白的转录本主要在罗布斯塔和阿拉比卡谷物的成熟过程中表达,其中CcOLE-1和CcOLE-2表达更高。虽然五种油质蛋白的相对表达水平在罗布斯塔咖啡和阿拉比卡咖啡中相似,但在两种物种之间的绝对表达水平却存在显着差异。对发芽的阿拉伯咖啡籽中的油质蛋白转录本进行定量分析通常表明,这些转录本的水平在干燥后的籽粒中较低,然后在发芽过程中进一步降低,除了在发芽初期CcOLE-2的表达小峰值。相反,在发芽过程中CcSTO-1转录物的水平保持相对恒定,这与该蛋白质积极参与油体周转过程的建议相符。最后,我们讨论了所呈现的咖啡油质蛋白表达数据相对于在发展和萌发过程中不同咖啡油质蛋白的预测作用的含义。

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