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高等植物ω-3脂肪酸去饱和酶的克隆

Cloning of higher plant omega-3 fatty acid desaturases.

作者信息

Yadav N S, Wierzbicki A, Aegerter M, Caster C S, Pérez-Grau L, Kinney A J, Hitz W D, Booth J R, Schweiger B, Stecca K L

机构信息

Agricultural Products, E. I. duPont de Nemours & Co., Wilmington, Delaware 19880-0402.

出版信息

Plant Physiol. 1993 Oct;103(2):467-76. doi: 10.1104/pp.103.2.467.

Abstract

Arabidopsis thaliana T-DNA transformants were screened for mutations affecting seed fatty acid composition. A mutant line was found with reduced levels of linolenic acid (18:3) due to a T-DNA insertion. Genomic DNA flanking the T-DNA insertion was used to obtain an Arabidopsis cDNA that encodes a polypeptide identified as a microsomal omega-3 fatty acid desaturase by its complementation of the mutation. Analysis of lipid content in transgenic tissues demonstrated that this enzyme is limiting for 18:3 production in Arabidopsis seeds and carrot hairy roots. This cDNA was used to isolate a related Arabidopsis cDNA, whose mRNA is accumulated to a much higher level in leaf tissue relative to root tissue. This related cDNA encodes a protein that is a homolog of the microsomal desaturase but has an N-terminal extension deduced to be a transit peptide, and its gene maps to a position consistent with that of the Arabidopsis fad D locus, which controls plastid omega-3 desaturation. These Arabidopsis cDNAs were used as hybridization probes to isolate cDNAs encoding homologous proteins from developing seeds of soybean and rapeseed. The high degree of sequence similarity between these sequences suggests that the omega-3 desaturases use a common enzyme mechanism.

摘要

对拟南芥T-DNA转化体进行筛选,以寻找影响种子脂肪酸组成的突变。发现了一个突变株系,由于T-DNA插入,其亚麻酸(18:3)水平降低。利用T-DNA插入侧翼的基因组DNA获得了一个拟南芥cDNA,该cDNA编码的多肽通过对突变的互补作用被鉴定为微粒体ω-3脂肪酸去饱和酶。对转基因组织中脂质含量的分析表明,这种酶是拟南芥种子和胡萝卜毛状根中18:3合成的限制因素。该cDNA被用于分离一个相关的拟南芥cDNA,其mRNA在叶组织中的积累水平相对于根组织要高得多。这个相关的cDNA编码一种蛋白质,它是微粒体去饱和酶的同源物,但有一个推导为转运肽的N端延伸,其基因定位到与拟南芥fad D位点一致的位置,该位点控制质体ω-3去饱和。这些拟南芥cDNA被用作杂交探针,从大豆和油菜籽的发育种子中分离编码同源蛋白质的cDNA。这些序列之间高度的序列相似性表明ω-3去饱和酶使用共同的酶机制。

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