Millette Nicole C, Gast Rebecca J, Luo Jessica Y, Moeller Holly V, Stamieszkin Karen, Andersen Ken H, Brownlee Emily F, Cohen Natalie R, Duhamel Solange, Dutkiewicz Stephanie, Glibert Patricia M, Johnson Matthew D, Leles Suzana G, Maloney Ashley E, Mcmanus George B, Poulton Nicole, Princiotta Sarah D, Sanders Robert W, Wilken Susanne
Virginia Institute of Marine Science, William & Mary 1370 Greate Rd., Gloucester Point, VA 23062, USA.
Woods Hole Oceanographic Institution, 266 Woods Hole Rd, Woods Hole, MA 02543, USA.
J Plankton Res. 2023 Jun 9;45(4):576-596. doi: 10.1093/plankt/fbad020. eCollection 2023 Jul-Aug.
Phago-mixotrophy, the combination of photoautotrophy and phagotrophy in mixoplankton, organisms that can combine both trophic strategies, have gained increasing attention over the past decade. It is now recognized that a substantial number of protistan plankton species engage in phago-mixotrophy to obtain nutrients for growth and reproduction under a range of environmental conditions. Unfortunately, our current understanding of mixoplankton in aquatic systems significantly lags behind our understanding of zooplankton and phytoplankton, limiting our ability to fully comprehend the role of mixoplankton (and phago-mixotrophy) in the plankton food web and biogeochemical cycling. Here, we put forward five research directions that we believe will lead to major advancement in the field: (i) evolution: understanding mixotrophy in the context of the evolutionary transition from phagotrophy to photoautotrophy; (ii) traits and trade-offs: identifying the key traits and trade-offs constraining mixotrophic metabolisms; (iii) biogeography: large-scale patterns of mixoplankton distribution; (iv) biogeochemistry and trophic transfer: understanding mixoplankton as conduits of nutrients and energy; and (v) methods: improving the identification of mixoplankton and their phago-mixotrophic activity.
噬菌混合营养,即混合浮游生物(能够结合两种营养策略的生物)中光合自养和吞噬营养的结合,在过去十年中受到了越来越多的关注。现在人们认识到,大量的原生浮游生物物种在一系列环境条件下通过噬菌混合营养来获取生长和繁殖所需的营养。不幸的是,我们目前对水生系统中混合浮游生物的理解远远落后于我们对浮游动物和浮游植物的理解,这限制了我们全面理解混合浮游生物(以及噬菌混合营养)在浮游生物食物网和生物地球化学循环中的作用的能力。在此,我们提出五个研究方向,我们认为这些方向将引领该领域取得重大进展:(i)进化:在从吞噬营养到光合自养的进化转变背景下理解混合营养;(ii)特征与权衡:确定限制混合营养代谢的关键特征和权衡;(iii)生物地理学:混合浮游生物分布的大规模模式;(iv)生物地球化学与营养传递:将混合浮游生物理解为营养和能量的通道;以及(v)方法:改进混合浮游生物及其噬菌混合营养活性的鉴定。