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2
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Plant lipids: metabolism, mutants, and membranes.植物脂质:代谢、突变体和膜。
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2
High-Oleate Oilseeds Fail to Develop at Low Temperature.高油酸油籽在低温下无法发育。
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3
Genetic Enhancement of Cold Tolerance by Expression of a Gene for Chloroplast [omega]-3 Fatty Acid Desaturase in Transgenic Tobacco.通过在转基因烟草中表达叶绿体ω-3脂肪酸去饱和酶基因对耐寒性进行遗传增强。
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The temperature-dependent expression of the desaturase gene desA in Synechocystis PCC6803.集胞藻PCC6803中去饱和酶基因desA的温度依赖性表达
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Cloning of higher plant omega-3 fatty acid desaturases.高等植物ω-3脂肪酸去饱和酶的克隆
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Arabidopsis FAD2 gene encodes the enzyme that is essential for polyunsaturated lipid synthesis.拟南芥FAD2基因编码对多不饱和脂质合成至关重要的酶。
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Cloning of a temperature-regulated gene encoding a chloroplast omega-3 desaturase from Arabidopsis thaliana.从拟南芥中克隆一个编码叶绿体ω-3去饱和酶的温度调节基因。
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大豆中两种不同微粒体ω-6去饱和酶基因的发育及生长温度调控

Developmental and growth temperature regulation of two different microsomal omega-6 desaturase genes in soybeans.

作者信息

Heppard E P, Kinney A J, Stecca K L, Miao G H

机构信息

Agricultural Products Department, E. I. duPont de Nemour & Co., Wilmington, Delaware 19880-0402, USA.

出版信息

Plant Physiol. 1996 Jan;110(1):311-9. doi: 10.1104/pp.110.1.311.

DOI:10.1104/pp.110.1.311
PMID:8587990
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC157722/
Abstract

The polyunsaturated fatty acid content is one of the major factors influencing the quality of vegetable oils. Edible oils rich in monounsaturated fatty acid provide improved oil stability, flavor, and nutrition for human and animal consumption. In plants, the microsomal omega-6 desaturase-catalyzed pathway is the primary route of production of polyunsaturated lipids. We report the isolation of two different cDNA sequences, FAD2-1 and FAD2-2, encoding microsomal omega-6 desaturase in soybeans and the characterization of their developmental and temperature regulation. The FAD2-1 gene is strongly expressed in developing seeds, whereas the FAD2-2 gene is constitutively expressed in both vegetative tissues and developing seeds. Thus, the FAD2-2 gene-encoded omega-6 desaturase appears to be responsible for production of polyunsaturated fatty acids within membrane lipids in both vegetative tissues and developing seeds. The seed-specifically expressed FAD2-1 gene is likely to play a major role in controlling conversion of oleic acid to linoleic acid within storage lipids during seed development. In both soybean seed and leaf tissues, linoleic acid and linolenic acid levels gradually increase as temperature decreases. However, the levels of transcripts for FAD2-1, FAD2-2, and the plastidial omega-6 desaturase gene (FAD 6) do not increase at low temperature. These results suggest that the elevated polyunsaturated fatty acid levels in developing soybean seeds grown at low temperature are not due to the enhanced expression of omega-6 desaturase genes.

摘要

多不饱和脂肪酸含量是影响植物油品质的主要因素之一。富含单不饱和脂肪酸的食用油能为人类和动物食用提供更好的油稳定性、风味和营养。在植物中,微粒体ω-6去饱和酶催化途径是多不饱和脂质的主要生产途径。我们报告了在大豆中分离出两个不同的编码微粒体ω-6去饱和酶的cDNA序列FAD2-1和FAD2-2,以及对它们发育和温度调控的表征。FAD2-1基因在发育中的种子中强烈表达,而FAD2-2基因在营养组织和发育中的种子中均组成型表达。因此,FAD2-2基因编码的ω-6去饱和酶似乎负责营养组织和发育中的种子中膜脂内多不饱和脂肪酸的产生。种子特异性表达的FAD2-1基因可能在种子发育过程中控制储存脂质中油酸向亚油酸的转化方面起主要作用。在大豆种子和叶片组织中,随着温度降低,亚油酸和亚麻酸水平逐渐增加。然而,FAD2-1、FAD2-2和质体ω-6去饱和酶基因(FAD 6)的转录本水平在低温下并未增加。这些结果表明,低温下生长的发育中的大豆种子中多不饱和脂肪酸水平升高并非由于ω-6去饱和酶基因表达增强所致。