首页> 外文期刊>Plant Physiology and Biochemistry >Identification and expression of a new delta-12 fatty acid desaturase (FAD2-4) gene in upland cotton and its functional expression in yeast and Arabidopsis thaliana plants
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Identification and expression of a new delta-12 fatty acid desaturase (FAD2-4) gene in upland cotton and its functional expression in yeast and Arabidopsis thaliana plants

机译:陆地棉新delta-12脂肪酸去饱和酶(FAD2-4)基因的鉴定与表达及其在酵母和拟南芥植物中的功能性表达

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A cotton (Gossypium hirsutum L.) genomic clone encompassing a 17.9-kb DNA fragment was found to contain a delta-12 fatty acid desaturase gene (designated FAD2-4). The FAD2-4 open reading frame has 1,155 bp and is uninterrupted, encoding a conceptual FAD2-4 polypeptide of 384 amino acids that has 98% identity with the cotton FAD2-3 polypeptide. The FAD2-4 gene has a single intron of 2,780 bp in its 5'-untranslated region (5'-UTR). The 3'-flanking regions and 5'-UTR introns in the FAD2-4 and FAD2-3 genes are quite different, indicating that the genes might be paralogs in the cotton genome. Reverse transcriptase (RT)-PCR analysis indicated that the FAD2-4 and FAD2-3 genes were expressed in all tissues examined, including seeds, seedling tissues, young and mature leaves, roots, stems, developing flower buds, and ovule fibers. These constitutive patterns of expression were notably different from that of the FAD2- I gene, which was restricted to seeds and developing flower buds, or to the expression of a newly-identified FAD2-2 gene isoform, which was barely detectable in roots, hypocotyls, stems, and fibers, but was expressed in all other tissues. The FAD2-4 coding region was expressed in yeast and shown to encode a functional delta-12 desaturase, converting oleic acid (C18:1) to linoleic acid (C18:2) in recombinant yeast cells. In addition, both the FAD2-4 and the FAD2-3 genes were transferred into the Arabidopsis thaliana fad2-1 mutant background where they effectively restored wild type fatty acid composition and growth characteristics. Finally, the cotton FAD2-4 green fluorescent protein (GFP) fusion polypeptide appeared to be localized in the endomembrane system of transgenic Arabidopsis plants in the complemented fad2-1 mutant background, supporting a functional ER location for the cotton FAD2-4 polypeptide in this heterologous plant system. Thus, a new functional member of the FAD2 gene family in cotton has been characterized, indicating a complex regulation of membrane lipid desaturation in this important fiber/oilseed crop.
机译:发现包含17.9kb DNA片段的棉花(陆地棉)基因组克隆含有δ-12脂肪酸去饱和酶基因(称为FAD2-4)。 FAD2-4开放阅读框长1155 bp,且不间断,编码384个氨基酸的概念性FAD2-4多肽,与棉FAD2-3多肽具有98%的同一性。 FAD2-4基因在其5'非翻译区(5'-UTR)中具有2780 bp的单个内含子。 FAD2-4和FAD2-3基因中的3'侧翼区域和5'-UTR内含子非常不同,表明该基因可能是棉花基因组中的旁系同源物。逆转录酶(RT)-PCR分析表明,FAD2-4和FAD2-3基因在所有检查的组织中都有表达,包括种子,幼苗组织,幼嫩叶片,根,茎,发育中的花蕾和胚珠纤维。这些组成型表达模式与FAD2-I基因显着不同,FAD2-I基因仅限于种子和发育中的花蕾,或者仅在根,下胚轴中几乎无法检测到新鉴定的FAD2-2基因同工型。 ,茎和纤维,但在所有其他组织中均有表达。 FAD2-4编码区在酵母中表达,并显示其编码功能性delta-12去饱和酶,从而在重组酵母细胞中将油酸(C18:1)转换为亚油酸(C18:2)。此外,FAD2-4和FAD2-3基因均被转移到拟南芥fad2-1突变体背景中,在那里它们有效地恢复了野生型脂肪酸的组成和生长特性。最后,棉花FAD2-4绿色荧光蛋白(GFP)融合多肽似乎位于互补的fad2-1突变体背景中的转基因拟南芥植物的膜系统中,在此支持棉花FAD2-4多肽的功能性ER定位。异源植物系统。因此,已经表征了棉花中FAD2基因家族的新功能成员,表明在这种重要的纤维/油料作物中膜脂质去饱和的复杂调控。

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