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原生生物中的替代营养策略:专题介绍和兼性光合作用和异养的淡水原生生物综述。

Alternative nutritional strategies in protists: symposium introduction and a review of freshwater protists that combine photosynthesis and heterotrophy.

机构信息

Department of Biology, Temple University, Philadelphia, Pennsylvania 19122, USA.

出版信息

J Eukaryot Microbiol. 2011 May-Jun;58(3):181-4. doi: 10.1111/j.1550-7408.2011.00543.x. Epub 2011 Apr 7.

Abstract

The alternative nutritional strategies in protists that were addressed during the symposium by that name at the 2010 annual meeting of the International Society of Protistologists and here in contributed papers, include a range of mechanisms that combine photosynthesis with heterotrophy in a single organism. Often called mixotrophy, these multiple trophic level combinations occur across a broad range of organisms and environments. Consequently, there is great variability in the physiological abilities and relative importance of phototrophy vs. phagotrophy and/or osmotrophy in mixotrophic protists. Recently, research papers addressing ecological questions about mixotrophy in marine systems have been more numerous than those that deal with freshwater systems, a trend that is probably partly due to a realization that many harmful algal blooms in coastal marine systems involve mixotrophic protists. After an introduction to the symposium presentations, recent studies of mixotrophy in freshwater systems are reviewed to encourage continuing research on their importance to inland waters.

摘要

该研讨会在国际原生动物学家学会 2010 年年会上以“替代营养策略”为主题进行了讨论,本文在提交的论文中进一步阐述了原生动物的替代营养策略,其中包括将光合作用与异养作用结合在单个生物体中的一系列机制。这些多种营养水平的组合通常被称为混合营养,它们存在于广泛的生物体和环境中。因此,混合营养原生动物的光合作用与吞噬作用和/或渗透作用的生理能力和相对重要性存在很大差异。最近,涉及海洋系统中混合营养的生态问题的研究论文比涉及淡水系统的论文数量更多,这种趋势可能部分归因于人们认识到沿海海洋系统中的许多有害藻类水华都涉及混合营养原生动物。在对研讨会报告进行介绍之后,本文回顾了淡水系统中混合营养的最新研究,以鼓励继续研究其对内陆水域的重要性。

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