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植物中 11Z-二十碳烯酸含量丰富,从 Malania oleifera 中分离出的 3-酮酰基辅酶 A 合酶 11(KCS11)同源物能够合成神经酸。

A 3-ketoacyl-CoA synthase 11 (KCS11) homolog from Malania oleifera synthesizes nervonic acid in plants rich in 11Z-eicosenoic acid.

机构信息

College of Agronomy, Northwest A&F University, No.3 Taicheng Road Yangling, Yangling, Shaanxi 712100, China.

Faculty of Land and Food Systems, The University of British Columbia, Vancouver, BC V6T 1Z4, Canada.

出版信息

Tree Physiol. 2021 Feb 2;41(2):331-342. doi: 10.1093/treephys/tpaa125.

Abstract

Nervonic acid (24:1) is a major component in nerve and brain tissues and it has important applications in food and pharmaceutical industries. Malania oleifera seeds contain about 40% nervonic acid. However, the mechanism of nervonic acid biosynthesis and accumulation in seeds of this endangered tree species remains unknown. In this study, developmental changes in fatty acid composition within embryos and their pericarps were investigated. Nervonic acid proportions steadily increased in developing embryos but 24:1 was not detected in pericarps at any stage. Two 3-ketoacyl-CoA synthase (KCS) homologs have been isolated from M. oleifera developing seeds by homologous cloning methods. Both KCSs are expressed in developing embryos but not detected in pericarps. Based on a phylogenetic analysis, these two KCSs were named as MoKCS4 and MoKCS11. Seed-specific expression of the MoKCS11 in Arabidopsis thaliana led to about 5% nervonic acid accumulation, while expression of the MoKCS4 did not show an obvious change in fatty acid composition. It is noteworthy that the transformation of the same MoKCS11 construct into two Brassica napus cultivars with high erucic acid did not produce the expected accumulation of nervonic acid, although expression of MoKCS11 was detected in the developing embryos of transgenic lines. In contrast, overexpression of MoKCS11 results in similar level of nervonic acid accumulation in camelina, a species which contains a similar level of 11Z-eicosenoic acid as does Arabidopsis thaliana. Taken together, the MoKCS11 may have a substrate preference for 11Z-eicosenoic acid, but not for erucic acid, in planta.

摘要

神经酸(24:1)是神经和脑组织的主要成分,在食品和制药行业有重要应用。麻疯树种子含有约 40%的神经酸。然而,这种濒危树种种子中神经酸生物合成和积累的机制尚不清楚。本研究调查了胚胎及其种皮内脂肪酸组成的发育变化。神经酸比例在发育中的胚胎中稳步增加,但在任何阶段的种皮中都未检测到 24:1。通过同源克隆方法,从麻疯树发育种子中分离出两个 3-酮酰基辅酶 A 合酶(KCS)同源物。这两个 KCS 都在发育中的胚胎中表达,但在种皮中未检测到。基于系统发育分析,这两个 KCS 分别命名为 MoKCS4 和 MoKCS11。MoKCS11 在拟南芥中的种子特异性表达导致约 5%的神经酸积累,而 MoKCS4 的表达在脂肪酸组成上没有明显变化。值得注意的是,将相同的 MoKCS11 构建体转化为两个芥酸含量高的油菜品种,并没有产生预期的神经酸积累,尽管在转基因系的发育胚胎中检测到了 MoKCS11 的表达。相比之下,MoKCS11 的过表达导致荠蓝中神经酸积累水平相似,荠蓝中 11Z-二十碳烯酸的含量与拟南芥相似。总之,MoKCS11 在体内可能对 11Z-二十碳烯酸具有底物偏好,而不是对芥酸。

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