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通过富集的内质网的 MudPIT 分析鉴定发育蓖麻(Ricinus communis)种子中复杂脂质生物合成途径的成分。

Components of complex lipid biosynthetic pathways in developing castor (Ricinus communis) seeds identified by MudPIT analysis of enriched endoplasmic reticulum.

机构信息

School of Biological and Biomedical Sciences, University of Durham, South Road, Durham, DH1 3LE, United Kingdom.

出版信息

J Proteome Res. 2011 Aug 5;10(8):3565-77. doi: 10.1021/pr2002066. Epub 2011 Jun 29.

Abstract

Ricinoleic acid is a feedstock for nylon-11 (N11) synthesis which is currently obtained from castor (Ricinus communis) oil. Production of this fatty acid in a temperate oilseed crop is of great commercial interest, but the highest reported level in transgenic plant oils is 30%, below the 90% observed in castor and insufficient for commercial exploitation. To identify castor oil-biosynthetic enzymes and inform strategies to improve ricinoleic acid yields, we performed MudPIT analysis on endoplasmic reticulum (ER) purified from developing castor bean endosperm. Candidate enzymes for all steps of triacylglycerol synthesis were identified among 72 proteins in the data set related to complex-lipid metabolism. Previous reported proteomic data from oilseeds had not included any membrane-bound enzyme that might incorporate ricinoleic acid into oil. Analysis of enriched ER enabled determination of which protein isoforms for these enzymes were in developing castor seed. To complement this data, quantitative RT-PCR experiments with castor seed and leaf RNA were performed for orthologues of Arabidopsis oil-synthetic enzymes, determining which were highly expressed in the seed. These data provide important information for further manipulation of ricinoleic acid content in oilseeds and peptide data for future quantification strategies.

摘要

蓖麻酸是尼龙-11(N11)合成的原料,目前从蓖麻(Ricinus communis)油中获得。在温带油料作物中生产这种脂肪酸具有很大的商业价值,但转基因植物油中最高报道水平为 30%,低于蓖麻中的 90%,不足以进行商业开发。为了鉴定蓖麻油的生物合成酶,并为提高蓖麻酸产量提供信息,我们对发育中的蓖麻胚乳的内质网(ER)进行了 MudPIT 分析。在与复杂脂类代谢相关的数据集中,确定了涉及三酰基甘油合成的所有步骤的候选酶,涉及 72 种蛋白质。以前来自油籽的报告的蛋白质组学数据没有包括任何可能将蓖麻酸掺入油中的膜结合酶。对富含 ER 的分析使我们能够确定这些酶的哪些蛋白同工型存在于发育中的蓖麻种子中。为了补充这些数据,我们对蓖麻种子和叶 RNA 进行了拟南芥油合成酶的定量 RT-PCR 实验,确定了在种子中高度表达的同源物。这些数据为进一步操纵油籽中的蓖麻酸含量以及未来的定量策略提供了肽数据提供了重要信息。

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