Weber N, Taylor D C, Underhill E W
Bundesanstalt für Getreide-, Kartoffel- und Fettforschung, Institut für Biochemie und Technologie der Fette, H.P. Kaufmann-Institut, Münster, FRG.
Adv Biochem Eng Biotechnol. 1992;45:99-131. doi: 10.1007/BFb0008757.
The biosynthesis of storage lipids in plant cell and embryo cultures is discussed in the light of their significance in the breeding of agriculturally important oil seed crops. After a short introduction to the biosynthesis of storage lipids, i.e. triacylglycerols and wax esters, this review covers the occurrence and biosynthesis of storage lipids in plant cell and embryo cultures. Plant cells in culture generally contain low levels of both unusual fatty acids and triacylglycerols indicating that these cells are quite different from cells of oil storage tissues. There are a few exceptions to this rule which demonstrate that induction of genes involved in the expression of fatty acid modification and triacylglycerol assembly is possible in plant cell cultures. Such biosynthetically active plant cells may be of particular interest in future studies of storage lipid assembly. Both somatic and gametophytic embryos of oil plants exhibit high capacities for storage lipid biosynthesis and accumulation in vitro compared to cultured plant cells. Above all, the microspore-derived embryo system is recommended to both plant breeders and plant biochemists for the selection and multiplication of plants of superior quality.
鉴于储存脂质在农业重要油料作物育种中的重要性,本文讨论了植物细胞和胚培养物中储存脂质的生物合成。在简要介绍储存脂质(即三酰甘油和蜡酯)的生物合成之后,本综述涵盖了植物细胞和胚培养物中储存脂质的存在和生物合成。培养的植物细胞通常含有低水平的特殊脂肪酸和三酰甘油,这表明这些细胞与油脂储存组织的细胞有很大不同。不过也有一些例外情况,这表明在植物细胞培养中诱导参与脂肪酸修饰和三酰甘油组装表达的基因是可能的。这种具有生物合成活性的植物细胞在未来储存脂质组装的研究中可能会特别受关注。与培养的植物细胞相比,油料植物的体细胞胚和配子体胚在体外均表现出较高的储存脂质生物合成和积累能力。最重要的是,小孢子衍生胚系统对于植物育种者和植物生物化学家在优质植物的选择和繁殖方面都具有推荐价值。