DNA Plant Technology, 6701 San Pablo Ave., 94608, Oakland, CA, USA.
Theor Appl Genet. 1991 Jul;82(4):409-12. doi: 10.1007/BF00588591.
The seed fatty acid (FA) composition of various single mutant combinations ofArabidopsis thaliana that affect FA biosynthesis has been examined. Double mutant combinations offae, a mutation affecting CIS elongation, and a series of four other FA biosynthetic mutants were synthesized. The four other single mutants were:fad2 andfad3, which are deficient in 18∶1 and 18∶2 desaturation, respectively;fab1, which is elevated in 16∶0 and decreased in 18∶1; andfab2, which is elevated in 18∶0 and decreased in 18∶1. The superimposition of two blocks in the FA biosynthetic pathway leads to dramatic changes in the FA content of the double mutants. The tenArabidopsis stocks analyzed to date (wild-type, five single mutants, and four double mutants) make seed oils with a wide range of FA compositions, and illustrate the diversity of oils it is possible to obtain from a single plant species.
已检测了影响脂肪酸(FA)生物合成的拟南芥各种单一突变体组合的种子 FA 组成。合成了 fad2 和 fad3 这两个分别缺乏 18∶1 和 18∶2 去饱和作用的突变体、fab1(16∶0 升高而 18∶1 降低)和 fab2(18∶0 升高而 18∶1 降低)这四个其他 FA 生物合成突变体与 fas 的双突变体组合。fas 是 CIS 延伸的突变。两条 FA 生物合成途径的两个叠加导致双突变体中 FA 含量的显著变化。迄今为止分析的十个拟南芥品系(野生型、五个单突变体和四个双突变体)产生具有广泛 FA 组成的种子油,并说明了从单一植物物种中获得不同油的可能性。