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反义介导的马铃薯叶片ω-3脂肪酸去饱和酶缺失降低了亚麻酸含量,并减少了对创伤的基因激活反应。

Antisense-mediated depletion of potato leaf omega3 fatty acid desaturase lowers linolenic acid content and reduces gene activation in response to wounding.

作者信息

Martín M, León J, Dammann C, Albar J P, Griffiths G, Sánchez-Serrano J J

机构信息

Plant Molecular Genetics, Centro Nacional de Biotecnología CSIC, Madrid, Spain.

出版信息

Eur J Biochem. 1999 Jun;262(2):283-90. doi: 10.1046/j.1432-1327.1999.00382.x.

DOI:10.1046/j.1432-1327.1999.00382.x
PMID:10336609
Abstract

Fatty acid omega3 desaturases act on membrane lipids to catalyse the formation of trienoic fatty acids, the most abundant in plant tissues being alpha-linolenic acid. This fatty acid is a precursor of jasmonic acid, a plant growth regulator involved in the control of wound-induced gene activation in plants and in the induction of tuberization in potato. We isolated a potato omega3 desaturase cDNA, possibly encoding a plastidial isoform, and used it to investigate its expression pattern throughout plant development and in response to wounding. Plastidial omega3 desaturase gene transcripts accumulate rapidly upon wounding, preceding the jasmonate-dependent induction of the wound-responsive proteinase inhibitor II gene. We generated transgenic potato plants constitutively expressing an antisense RNA to this plastidial omega3 desaturase. Selected transgenic lines in which the cognate omega3 desaturase mRNA is largely depleted show a marked reduction, of up to 60%, in trienoic acids in leaves and tubers. In these lines, a corresponding reduction in jasmonate content and proteinase inhibitor II expression is observed upon wounding. Our results indicate that a reduction in omega3 desaturase mRNA levels compromises the wound-induced activation of proteinase inhibitor II, suggesting that wound-induced synthesis of linolenic acid is required for jasmonic acid production. The antisense-mediated depletion of fatty acid omega3 desaturases is a viable alternative for reducing trienoic fatty acid content in plant species in which a mutant screening approach is not applicable.

摘要

脂肪酸ω3去饱和酶作用于膜脂,催化三烯脂肪酸的形成,植物组织中最丰富的三烯脂肪酸是α-亚麻酸。这种脂肪酸是茉莉酸的前体,茉莉酸是一种植物生长调节剂,参与植物伤口诱导基因激活的调控以及马铃薯块茎形成的诱导。我们分离出一个马铃薯ω3去饱和酶cDNA,它可能编码一种质体同工型,并利用它来研究其在整个植物发育过程中以及对伤口的响应中的表达模式。质体ω3去饱和酶基因转录本在伤口处理后迅速积累,先于伤口响应性蛋白酶抑制剂II基因的茉莉酸依赖性诱导。我们构建了组成型表达针对这种质体ω3去饱和酶的反义RNA的转基因马铃薯植株。所选的同源ω3去饱和酶mRNA大量缺失的转基因株系,其叶片和块茎中的三烯酸含量显著降低,最高可达60%。在这些株系中,伤口处理后观察到茉莉酸含量和蛋白酶抑制剂II表达相应降低。我们的结果表明,ω3去饱和酶mRNA水平的降低损害了伤口诱导的蛋白酶抑制剂II的激活,这表明伤口诱导的亚麻酸合成是茉莉酸产生所必需的。对于无法采用突变筛选方法的植物物种,通过反义介导使脂肪酸ω3去饱和酶缺失是降低三烯脂肪酸含量的可行替代方法。

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