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发育叶片切片的脂肪酸合成。

Fatty acid synthesis by slices from developing leaves.

机构信息

Department of Biochemistry, University College, P.O.B. 78, CF1 1XL, Cardiff, U.K..

出版信息

Planta. 1978 Jan;138(3):223-8. doi: 10.1007/BF00386815.

Abstract

Fatty acid synthesis was studied in successive leaf sections from the base to the tip of developing barley (Hordeum vulgare L.), maize (Zea mays L.), rye grass (Lolium perenne L.) and wheat (Triticum aestivium L.) leaves. The basal regions of the leaves had the lowest rates of fatty acid synthesis and accumulated small amounts of very long chain fatty acids. Fatty acid synthesis was highest in the middle leaf sections in all four plants. Linolenic acid synthesis from [1-(14)C]acetate was highest in the distal leaf sections of rye grass. The labelling of the fatty acids of individual lipids of rye grass was examined and it was found that [(14)C]linolenic acid was highest in the galactolipids. Synthesis of this acid in the galactolipids was most active in leaf segment C. Only traces of [(14)C]linolenic acid were ever found in phosphatidylcholine and it is concluded that this phospholipid cannot serve as a substrate for linoleic acid desaturation in rye grass. The synthesis of fatty acids was sensitive to arsenite, fluoride and the herbicide EPTC. The latter was only inhibitory towards those leaf segments which made very long chain fatty acids. Formation of fatty acids from [1-(14)C]acetate was also studied in chloroplasts prepared from successive leaf sections of rye grass. Chloroplasts isolated from the middle leaf sections had the highest activity. Palmitic and oleic acids were the main fatty acid products in all chloroplast preparations. Linolenic acid synthesis was highest in chlorplasts isolated from the distal leaf sections of rye grass.

摘要

脂肪酸合成在发育中的大麦(Hordeum vulgare L.)、玉米(Zea mays L.)、黑麦草(Lolium perenne L.)和小麦(Triticum aestivium L.)叶片从基部到尖端的连续叶段中进行了研究。叶片的基部区域具有最低的脂肪酸合成速率,并积累了少量的超长链脂肪酸。在所有四种植物中,中间叶片区域的脂肪酸合成率最高。[1-(14)C]乙酸中亚麻酸的合成在黑麦草的远端叶片中最高。检查了黑麦草个别脂质的脂肪酸标记,发现[(14)C]亚麻酸在半乳糖脂中含量最高。在叶片段 C 中,这种酸的合成最活跃。在卵磷脂中从未发现过[(14)C]亚麻酸的痕迹,因此得出结论,这种磷脂不能作为黑麦草亚油酸去饱和的底物。脂肪酸的合成对亚砷酸盐、氟化物和除草剂 EPTC 敏感。后者仅对合成超长链脂肪酸的叶片段具有抑制作用。还研究了从[1-(14)C]乙酸合成脂肪酸在黑麦草连续叶段制备的叶绿体中的情况。从中叶段分离的叶绿体具有最高的活性。棕榈酸和油酸是所有叶绿体制备物中的主要脂肪酸产物。在黑麦草的远端叶片中分离的叶绿体中,亚麻酸的合成率最高。

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