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首页> 外文期刊>Lipids >Expression Profiles of Genes Involved in Fatty Acid and Triacylglycerol Synthesis in Castor Bean (Ricinus communis L.).
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Expression Profiles of Genes Involved in Fatty Acid and Triacylglycerol Synthesis in Castor Bean (Ricinus communis L.).

机译:蓖麻子(Ricinus communis L.)中涉及脂肪酸和三酰基甘油合成的基因的表达谱。

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Castor seed triacylglycerols (TAGs) contain 90% ricinoleate (12-hydroxy-oleate) which has numerous industrial applications. Due to the presence of the toxin ricin and potent allergenic 2S albumins in the seed, it is desirable to produce ricinoleate from temperate oilseeds. To identify regulatory genes or genes for enzymes that may up-regulate multiple activities or entire pathways leading to the ricinoleate and TAG synthesis, we have analyzed expression profiles of 12 castor genes involved in fatty acid and TAG synthesis using quantitative reverse transcription-polymerase chain reaction technology. A collection of castor seeds with well-defined developmental stages and morphologies was used to determine the levels of mRNA, ricinoleate and TAG. The synthesis of ricinoleate and TAG occurred when seeds progressed to stages of cellular endosperm development. Concomitantly, most of the genes increased their expression levels, but showed various temporal expression patterns and different maximum inductions ranging from 4- to 43,000-fold. Clustering analysis of the expression data indicated five gene groups with distinct temporal patterns. We identified genes involved in fatty acid biosynthesis and transport that fell into two related clusters with moderate flat-rise or concave-rise patterns, and others that were highly expressed during seed development that displayed either linear-rise or bell-shaped patterns. Castor diacylglycerol acyltransferase 1 was the only gene having a higher expression level in leaf and a declining pattern during cellular endosperm development. The relationships among gene expression, cellular endosperm development and ricinoleate/TAG accumulation are discussed.
机译:蓖麻籽三酰基甘油(TAGs)包含90%蓖麻油酸酯(12-羟基油酸酯),具有许多工业应用。由于种子中存在毒素蓖麻毒蛋白和强力致敏2S白蛋白,因此需要从温带油料种子中生产蓖麻油酸酯。为鉴定调节基因或可能上调导致蓖麻油酸酯和TAG合成的多种途径的酶的基因,我们使用定量逆转录-聚合酶链反应分析了参与脂肪酸和TAG合成的12种蓖麻基因的表达谱技术。使用具有明确发育阶段和形态的蓖麻籽的集合来确定mRNA,蓖麻油酸酯和TAG的水平。当种子发展到细胞胚乳发育阶段时,就会发生蓖麻油酸酯和TAG的合成。随之而来的是,大多数基因增加了它们的表达水平,但显示出各种时间表达模式和不同的最大诱导,范围为4至43,000倍。表达数据的聚类分析表明五个基因组具有不同的时间模式。我们确定了与脂肪酸生物合成和运输有关的基因,它们被分为两个相关的簇,具有中等的平展或凹展的模式,而其他的则在种子发育过程中被高度表达,表现出线性上升或钟形的模式。蓖麻二酰基甘油酰基转移酶1是唯一的在细胞胚乳发育过程中在叶片中具有较高表达水平和下降模式的基因。讨论了基因表达,细胞胚乳发育和蓖麻油酸酯/ TAG积累之间的关系。

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