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首页> 外文期刊>Plant physiology >New insight into Phaeodactylum tricornutum fatty acid metabolism. Cloning and functional characterization of plastidial and microsomal Delta 12-fatty acid desaturases
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New insight into Phaeodactylum tricornutum fatty acid metabolism. Cloning and functional characterization of plastidial and microsomal Delta 12-fatty acid desaturases

机译:角藻属脂肪酸代谢的新见解。质体和微粒体Delta 12-脂肪酸去饱和酶的克隆和功能表征

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摘要

In contrast to 16:3 plants like rapeseed (Brassica napus), which contain alpha-linolenic acid (18:3(Delta9,12,15)) and hexadecatrienoic acid (16:3(Delta7,10,13)) as major polyunsaturated fatty acids in leaves, the silica-less diatom Phaeodactylum tricornutum contains eicosapentaenoic acid (EPA; 20:5(Delta5,8,11,14,17)) and a different isomer of hexadecatrienoic acid (16:3(Delta6,9,12)). In this report, we describe the characterization of two cDNAs having sequence homology to Delta12-fatty acid desaturases from higher plants. These cDNAs were shown to code for a microsomal and a plastidial Delta12-desaturase (PtFAD2 and PtFAD6, respectively) by heterologous expression in yeast (Saccharomyces cerevisiae) and Synechococcus, respectively. Using these systems in the presence of exogenously supplied fatty acids, the substrate specificities of the two desaturases were determined and compared with those of the corresponding rapeseed enzymes (BnFAD2 and BnFAD6). The microsomal desaturases were similarly specific for oleic acid (18:1(Delta9)), suggesting that PtFAD2 is involved in the biosynthesis of EPA. In contrast, the plastidial desaturase from the higher plant and the diatom clearly differed. Although the rapeseed plastidial desaturase showed high activity toward the omega9-fatty acids 18:1(Delta9) and 16:1(Delta7), in line with the fatty acid composition of rapeseed leaves, the enzyme of P. tricornutum was highly specific for 16:1(Delta9). Our results indicate that in contrast to EPA, which is synthesized in the microsomes, the hexadecatrienoic acid isomer found in P. tricornutum (16:3(Delta6,9,12)) is of plastidial origin.
机译:与菜籽油菜(Brassica napus)之类的16:3植物相反,后者包含α-亚麻酸(18:3(Delta9,12,15))和十六碳三烯酸(16:3(Delta7,10,13))作为主要的多不饱和脂肪酸叶片中的脂肪酸,无硅的硅藻Triaeutyylum tricornutum包含二十碳五烯酸(EPA; 20:5(Delta5,8,11,14,17))和十六碳三烯酸的不同异构体(16:3(Delta6,9,12) ))。在此报告中,我们描述了与来自高等植物的Delta12-脂肪酸去饱和酶具有序列同源性的两个cDNA的表征。这些cDNAs通过分别在酵母(Saccharomyces cerevisiae)和Synechococcus中的异源表达显示出分别编码微粒体和质体Delta12-去饱和酶(分别为PtFAD2和PtFAD6)。在外源供应的脂肪酸存在下使用这些系统,确定了两种去饱和酶的底物特异性,并将其与相应的油菜籽酶(BnFAD2和BnFAD6)的底物特异性进行了比较。微粒体去饱和酶对油酸具有类似的特异性(18:1(Delta9)),表明PtFAD2参与了EPA的生物合成。相反,来自高等植物的质体去饱和酶和硅藻明显不同。尽管油菜质体去饱和酶对omega9-脂肪酸18:1(Delta9)和16:1(Delta7)表现出高活性,但与油菜籽叶片的脂肪酸组成相符,三角腐霉的酶对16 :1(Delta9)。我们的结果表明,与微粒体中合成的EPA相比,在角果假单胞菌(16:3(Delta6,9,12))中发现的十六碳三烯酸异构体是质体来源的。

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