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植物氨基酸衍生维生素:生物合成与功能

Plant amino acid-derived vitamins: biosynthesis and function.

作者信息

Miret Javier A, Munné-Bosch Sergi

机构信息

Departament de Biologia Vegetal, Facultat de Biologia, Universitat de Barcelona, Avinguda Diagonal 643, 08028, Barcelona, Spain.

出版信息

Amino Acids. 2014 Apr;46(4):809-24. doi: 10.1007/s00726-013-1653-3. Epub 2013 Dec 25.

Abstract

Vitamins are essential organic compounds for humans, having lost the ability to de novo synthesize them. Hence, they represent dietary requirements, which are covered by plants as the main dietary source of most vitamins (through food or livestock's feed). Most vitamins synthesized by plants present amino acids as precursors (B1, B2, B3, B5, B7, B9 and E) and are therefore linked to plant nitrogen metabolism. Amino acids play different roles in their biosynthesis and metabolism, either incorporated into the backbone of the vitamin or as amino, sulfur or one-carbon group donors. There is a high natural variation in vitamin contents in crops and its exploitation through breeding, metabolic engineering and agronomic practices can enhance their nutritional quality. While the underlying biochemical roles of vitamins as cosubstrates or cofactors are usually common for most eukaryotes, the impact of vitamins B and E in metabolism and physiology can be quite different on plants and animals. Here, we first aim at giving an overview of the biosynthesis of amino acid-derived vitamins in plants, with a particular focus on how this knowledge can be exploited to increase vitamin contents in crops. Second, we will focus on the functions of these vitamins in both plants and animals (and humans in particular), to unravel common and specific roles for vitamins in evolutionary distant organisms, in which these amino acid-derived vitamins play, however, an essential role.

摘要

维生素是人类必需的有机化合物,人体已失去从头合成它们的能力。因此,维生素代表了膳食需求,而植物作为大多数维生素的主要膳食来源(通过食物或家畜饲料)满足了这些需求。植物合成的大多数维生素以前体氨基酸为原料(维生素B1、B2、B3、B5、B7、B9和E),因此与植物氮代谢相关。氨基酸在其生物合成和代谢中发挥着不同作用,既可以并入维生素的主链,也可以作为氨基、硫或一碳基团供体。作物中维生素含量存在很大的自然差异,通过育种、代谢工程和农艺措施来利用这种差异可以提高作物的营养品质。虽然维生素作为辅酶或辅因子的潜在生化作用在大多数真核生物中通常是常见的,但维生素B和E在植物和动物的代谢及生理过程中的影响可能有很大不同。在此,我们首先旨在概述植物中氨基酸衍生维生素的生物合成,特别关注如何利用这些知识来提高作物中的维生素含量。其次,我们将关注这些维生素在植物和动物(尤其是人类)中的功能,以揭示在进化关系较远的生物中维生素的共同和特定作用,而这些氨基酸衍生维生素在这些生物中起着至关重要的作用。

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