School of Botany, University of Melbourne, Parkville, Victoria 3052, Australia.
Plant Physiol. 1990 Jun;93(2):418-24. doi: 10.1104/pp.93.2.418.
The phospholipids and galactolipids of the pollen-coat and internal domains of two lines of Brassica napus, Wesroona and IXLIN, with different linoleic/linolenic acid ratios (18:2/18:3) have been characterized by normal phase silica high performance liquid chromatography and gas liquid chromatography. The polar lipids of the pollen-coat are similar to leaf lipids in the high proportion of galactolipids (almost 50%) and the fatty acids; 18:3, palmitic (16:0) and hexadecatrienoic (16:3). In contrast, the pollen internal domain, although rich in 18:3, 18:2 and 16:0, is composed primarily of phosphatidyl-choline, -ethanolamine, and -inositol whose 18:2/18:3 ratio is correlated with that of the seed generation. The difference between the two divergent 18:2/18:3 ratio lines is most evident in the internal domain phospholipids. The 18:2/18:3 ratio of the galactolipids of both pollen domains is not significantly effected by the line genotype. The results are interpreted in terms of the previously described ;prokaryotic' and ;eukaryotic' plant desaturation pathways (PG Roughan, CR Slack [1982] Annu Rev Plant Physiol 33: 97-132). We propose that the eukaryotic pathway is the major desaturation pathway providing polyunsaturated fatty acids to the haploid-specified internal domain in which the IXLIN genotype modifies the activity of the sn-2 linoleoyl phosphatidylcholine desaturase/s of the endoplasmic reticulum. In the diploid-specified pollen-coat, our evidence suggests that a combination of the prokaryotic and eukaryotic pathways contribute polyunsaturated fatty acids.
通过正相硅胶高效液相色谱法和气相色谱法,对具有不同亚油酸/亚麻酸比值(18:2/18:3)的油菜品系 Wesroona 和 IXLIN 的花粉外壁和内部区域的磷脂和半乳糖脂进行了研究。花粉外壁的极性脂与叶片脂相似,半乳糖脂含量高(近 50%),脂肪酸为 18:3、棕榈酸(16:0)和十六碳三烯酸(16:3)。相比之下,花粉内部区域虽然富含 18:3、18:2 和 16:0,但主要由磷脂酰胆碱、磷脂酰乙醇胺和磷脂酰肌醇组成,其 18:2/18:3 比值与种子代相关。在两个具有不同 18:2/18:3 比值的品系中,这种差异在内部区域的磷脂中最为明显。两个不同 18:2/18:3 比值品系的半乳糖脂的 18:2/18:3 比值不受品系基因型的显著影响。这些结果是根据先前描述的“原核”和“真核”植物去饱和途径(PG Roughan,CR Slack [1982] Annu Rev Plant Physiol 33: 97-132)来解释的。我们提出,真核途径是为单倍体指定的内部区域提供多不饱和脂肪酸的主要去饱和途径,在该区域中,IXLIN 基因型修饰内质网 sn-2 亚油酸磷脂酰胆碱去饱和酶/的活性。在二倍体指定的花粉外壁中,我们的证据表明,原核途径和真核途径共同为多不饱和脂肪酸的合成提供了途径。