VARIATIONS IN THE BIOSYNTHESIS OF SEED-STORAGE LIPIDS.

T. Voelker, A. Kinney
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引用次数: 318

Abstract

In many plants lipids represent up to 80% of dry weight of storage tissues. In seeds, lipids accumulate as triacylglycerols (TAGs), which are formed by an extension of the membrane-lipid biosynthetic pathway common to all plant tissues. In contrast to the conserved fatty acid (FA) composition of membrane lipids, the observed divergence in seed oil acyl chains among different species is very high. The acyl groups of seed TAGs can vary in their chain length (from 8 to 24) as well as in their degree of unsaturation. In addition to methylene-interrupted double bonds, many seeds contain TAGs that have unusual functional groups in their FAs, such as hydroxyl, oxirane, or acetylene groups. All of the major steps in the biosynthetic pathway to TAG are now known and sequence information for genes encoding most of the enzymes involved is available. Here we present the current knowledge of the metabolic mechanisms involved in the divergence from the membrane-lipid biosynthetic pathway during storage lipid formation.
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种子储存脂质生物合成的变化。
在许多植物中,脂质占贮藏组织干重的80%。在种子中,脂质以三酰甘油(TAGs)的形式积累,这是由所有植物组织共同的膜-脂质生物合成途径的延伸形成的。与膜脂保守的脂肪酸组成相反,不同种类的种子油酰基链的差异非常大。种子标签的酰基可以在它们的链长(从8到24)以及它们的不饱和程度上变化。除了亚甲基中断的双键外,许多种子含有的标签在其FAs中具有不寻常的官能团,如羟基、氧烷或乙炔基团。生物合成TAG途径的所有主要步骤现在都是已知的,编码大多数相关酶的基因序列信息是可用的。在这里,我们介绍了目前的代谢机制所涉及的分歧,从膜-脂质生物合成途径在储存脂质形成。
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