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蚕豆中反式-3-十六碳烯酸的代谢

Metabolism of trans-3-hexadecenoic acid in broad bean.

作者信息

Harwood J L, James A T

出版信息

Eur J Biochem. 1975 Jan 2;50(2):325-34. doi: 10.1111/j.1432-1033.1975.tb09807.x.

Abstract
  1. Broad bean (Vicia faba) leaves contain rather high concentrations (about 4% of total fatty acids) of the trans-3-hexadecenoic acid. 2. Amounts of the acid increase with the age of the leaves and are absent from etiolated tissue. 3. Changes in the levels of trans-delta-4-hexadecenoic acid can be produced by subjecting the intact plants to various light/dark periods. 4. Chloroplasts isolated from broad-bean leaves show high rates of fatty acid synthesis from [1-14C]acetate. Synthesis is dependent on coenzyme A and ATP but is insensitive to the addition of exogenous acyl carrier protein. 5. The pattern of acids made includes about 20% palmitic, 5% hexadeconoic, 10% stearic and 60% oleic. trans-3-Hexadecenoic acid synthesis was most active in chloroplasts from plants exposed to the dark for 5 days and light for 3 days. 6. Arsenite addition inhibited stearate formation by isolated chloroplasts but resulted in a two-fold stimulation of overall synthesis. 7. The rate of fatty acid synthesis by isolated chloroplasts paralleled the changes in endogenous trans-3-hexadecenoic acid levels in the leaves from which they were isolated.
摘要
  1. 蚕豆(野豌豆属)叶片中反式-3-十六碳烯酸的含量相当高(约占总脂肪酸的4%)。2. 该酸的含量随叶片年龄增加而增加,黄化组织中不存在。3. 通过使完整植株经历不同的光照/黑暗周期,可引起反式-δ-4-十六碳烯酸水平的变化。4. 从蚕豆叶片中分离出的叶绿体显示出从[1-¹⁴C]乙酸盐高效合成脂肪酸的能力。合成依赖于辅酶A和ATP,但对外源酰基载体蛋白的添加不敏感。5. 合成的脂肪酸模式包括约20%的棕榈酸、5%的十六碳烯酸、10%的硬脂酸和60%的油酸。反式-3-十六碳烯酸的合成在经历5天黑暗和3天光照处理的植株的叶绿体中最为活跃。6. 添加亚砷酸盐会抑制分离出的叶绿体中硬脂酸的形成,但会使总体合成增加两倍。7. 分离出的叶绿体的脂肪酸合成速率与它们所分离的叶片中内源性反式-3-十六碳烯酸水平的变化平行。

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