Mathematics and Computer Science Division, Argonne National Laboratory, 9700 South Cass Avenue, Argonne, IL 60439 USA.
J Exp Bot. 2012 Sep;63(15):5379-95. doi: 10.1093/jxb/ers208. Epub 2012 Aug 21.
The B vitamins and the cofactors derived from them are essential for life. B vitamin synthesis in plants is consequently as crucial to plants themselves as it is to humans and animals, whose B vitamin nutrition depends largely on plants. The synthesis and salvage pathways for the seven plant B vitamins are now broadly known, but certain enzymes and many transporters have yet to be identified, and the subcellular locations of various reactions are unclear. Although very substantial, what is not known about plant B vitamin pathways is regrettably difficult to discern from the literature or from biochemical pathway databases. Nor do databases accurately represent all that is known about B vitamin pathways-above all their compartmentation-because the facts are scattered throughout the literature, and thus hard to piece together. These problems (i) deter discoveries because newcomers to B vitamins cannot see which mysteries still need solving; and (ii) impede metabolic reconstruction and modelling of B vitamin pathways because genes for reactions or transport steps are missing. This review therefore takes a fresh approach to capture current knowledge of B vitamin pathways in plants. The synthesis pathways, key salvage routes, and their subcellular compartmentation are surveyed in depth, and encoded in the SEED database (http://pubseed.theseed.org/seedviewer.cgi?page=PlantGateway) for Arabidopsis and maize. The review itself and the encoded pathways specifically identify enigmatic or missing reactions, enzymes, and transporters. The SEED-encoded B vitamin pathway collection is a publicly available, expertly curated, one-stop resource for metabolic reconstruction and modeling.
B 族维生素及其衍生的辅因子是生命所必需的。因此,植物中 B 族维生素的合成对于植物本身和人类及动物至关重要,因为人类和动物的 B 族维生素营养主要依赖于植物。目前,人们已经广泛了解了七种植物 B 族维生素的合成和回收途径,但某些酶和许多转运蛋白仍有待鉴定,而且各种反应的亚细胞位置也不清楚。尽管人们对植物 B 族维生素途径已经有了相当多的了解,但令人遗憾的是,从文献或生化途径数据库中很难看出还有哪些是未知的。数据库也不能准确地反映人们对 B 族维生素途径的全部了解——尤其是它们的区室化——因为事实散布在文献中,难以拼凑起来。这些问题(i)阻碍了发现,因为 B 族维生素领域的新手无法看到仍有哪些谜团需要解决;(ii)阻碍了 B 族维生素途径的代谢重建和建模,因为缺少反应或转运步骤的基因。因此,本文采用了一种新方法来总结目前对植物 B 族维生素途径的认识。本文深入调查了合成途径、关键回收途径及其亚细胞区室化,并将其编码到 SEED 数据库(http://pubseed.theseed.org/seedviewer.cgi?page=PlantGateway)中,用于拟南芥和玉米。本文综述和编码途径特别指出了神秘或缺失的反应、酶和转运蛋白。SEED 编码的 B 族维生素途径集合是一个公开的、经过精心整理的代谢重建和建模一站式资源。