The Marine Biological Association, The Laboratory, Citadel Hill, Plymouth, PL1 2PB, UK.
New Phytol. 2017 Oct;216(1):62-68. doi: 10.1111/nph.14669. Epub 2017 Jun 28.
Contents 62 I. 62 II. 63 III. 63 IV. 66 V. 66 VI. 67 67 References 67 SUMMARY: B vitamins play essential roles in central metabolism. These organic water-soluble molecules act as, or as part of, coenzymes within the cell. Unlike land plants, many eukaryotic algae are auxotrophic for certain B vitamins. Recent progress in algal genetic resources and environmental chemistry have promoted a renewal of interest in the role of vitamins in governing phytoplankton dynamics, and illuminated amazing versatility in phytoplankton vitamin metabolism. Accumulating evidence demonstrates metabolic complexity in the production and bioavailability of different vitamin forms, coupled with specialized acquisition strategies to salvage and remodel vitamin precursors. Here, I describe recent advances and discuss how they redefine our view of the way in which vitamins are cycled in aquatic ecosystems and their importance in structuring phytoplankton communities.
内容 62 I. 62 II. 63 III. 63 IV. 66 V. 66 VI. 67 67 参考文献 67 摘要:B 族维生素在中心代谢中发挥着重要作用。这些有机水溶性分子作为细胞内的辅酶,或作为辅酶的一部分发挥作用。与陆地植物不同,许多真核藻类对某些 B 族维生素是营养缺陷型的。藻类遗传资源和环境化学的最新进展促进了人们对维生素在控制浮游植物动态中的作用的重新关注,并揭示了浮游植物维生素代谢的惊人多功能性。越来越多的证据表明,不同维生素形式的产生和生物利用度存在代谢复杂性,同时还具有专门的获取策略来回收和重塑维生素前体。在这里,我描述了最近的进展,并讨论了它们如何重新定义我们对维生素在水生生态系统中循环方式的看法,以及它们在构建浮游植物群落中的重要性。