Biology Department, University of California, Santa Cruz, California 95064.
Plant Physiol. 1987 Jun;84(2):555-9. doi: 10.1104/pp.84.2.555.
The metabolism of lipids, like that of other components, was adversely and strongly affected when rice (Oryza sativa L.) coleoptiles were grown anaerobically. In aerobic coleoptiles, the amounts of total fatty acid, phospholipid, and total lipid per coleoptile increased by 2.5- to 3-fold between days three and seven, whereas under anoxia, the increases were all less than 60%. The total amount of lipid at day seven in anoxia was less than 30% of that in air. In air, the total fatty acid content at day three was 25 nanomoles per coleoptile and this increased to over 71 nanomoles per coleoptile at day seven. All acids except 18:0 showed substantial increases. In anoxia, the corresponding values for total fatty acids were 24 nanomoles and 27 nanomoles. The small increases were confined to the saturated fatty acids; no significant increase occurred in unsaturated fatty acids. A minor fatty acid constituent (16:1) increased from 0.09 to 1.99 nanomoles per coleoptile between days three and seven in air. This component was never observed in any fatty acid preparation from anaerobic coleoptiles. The major phospholipids under all conditions were phosphatidylcholine, phosphatidylethanolamine, phosphatidylinositol, and phosphatidic acid. A small amount of unidentified phosphoester, not present on thin layer chromatography plates from aerobic coleoptiles, was seen in extracts of anaerobic coleoptiles. The fatty acyl substituents of each of the phospholipids were analyzed at days three and seven in coleoptiles grown aerobically and in anoxia. Each phospholipid had its own distinctive fatty acid composition which remained fairly constant under all treatments; 16:0 and 18:2 were the most abundant fatty acids in every phospholipid class. In air, the percentages of total fatty acids that were in the phospholipids were 86% on day three and 87% on day seven. In anoxia, the values at the corresponding ages were 47 and 57%. Since no net synthesis of unsaturated fatty acids occurred in anaerobic conditions, the small increase in total unsaturated acids in the phospholipids between days three and seven must have occurred at the expense of fatty acids preexisting in the neutral lipid. No unusual pathways of biosynthesis or unusual precursors are required to explain the presence of unsaturated fatty acids in the rice coleoptile. The present study and results of experiments where coleoptiles were fed [(14)C]acetate (BB Vartapetian et al. 1978 Plant Sci Lett 13:321-328) clearly show that unsaturated fatty acid synthesis in rice coleoptiles requires O(2), as it does in other plants.
当水稻(Oryza sativa L.)幼茎进行无氧生长时,其脂质代谢和其他成分的代谢一样,受到强烈的负面影响。在有氧幼茎中,总脂肪酸、磷脂和总脂的含量在第 3 天到第 7 天之间增加了 2.5 到 3 倍,而在缺氧条件下,增加幅度均小于 60%。在缺氧条件下,第 7 天的总脂含量不到空气培养的 30%。在空气中,第 3 天的总脂肪酸含量为 25 纳摩尔/幼茎,到第 7 天增加到 71 纳摩尔/幼茎以上。除了 18:0 之外,所有酸都有显著增加。在缺氧条件下,总脂肪酸的相应值分别为 24 纳摩尔和 27 纳摩尔。这些小的增加仅限于饱和脂肪酸;不饱和脂肪酸没有显著增加。一种少量的脂肪酸成分(16:1)在空气培养的幼茎中从第 3 天到第 7 天从 0.09 增加到 1.99 纳摩尔/幼茎。这种成分在任何来自无氧幼茎的脂肪酸制剂中都没有观察到。所有条件下的主要磷脂是磷脂酰胆碱、磷脂酰乙醇胺、磷脂酰肌醇和磷脂酸。在无氧幼茎提取物中,在有氧幼茎提取物的薄层色谱板上没有出现一种少量的未鉴定磷酸酯。在有氧生长和缺氧条件下,分析了第 3 天和第 7 天生长的幼茎中每种磷脂的脂肪酸取代基。每种磷脂都有其独特的脂肪酸组成,在所有处理下都保持相当稳定;16:0 和 18:2 是每种磷脂类中最丰富的脂肪酸。在空气中,第 3 天磷脂中总脂肪酸的百分比为 86%,第 7 天为 87%。在缺氧条件下,相应年龄的数值分别为 47%和 57%。由于在无氧条件下没有不饱和脂肪酸的净合成,因此第 3 天到第 7 天之间磷脂中总不饱和酸的少量增加必须以中性脂质中存在的脂肪酸为代价。不需要特殊的生物合成途径或特殊的前体来解释水稻幼茎中不饱和脂肪酸的存在。本研究和幼茎喂食 [(14)C]乙酸盐的实验结果(BB Vartapetian 等人,1978 年《植物科学快报》13:321-328)清楚地表明,与其他植物一样,水稻幼茎中不饱和脂肪酸的合成需要 O(2)。