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在不同资源条件下生长的混养原生动物的元素化学计量。

Element stoichiometry of a mixotrophic protist grown under varying resource conditions.

机构信息

Department of Biology, University of Texas, Arlington, Texas 76019, USA.

出版信息

J Eukaryot Microbiol. 2010 Jul-Aug;57(4):322-7. doi: 10.1111/j.1550-7408.2010.00487.x. Epub 2010 Jun 17.

Abstract

The balance of essential elements (e.g. carbon [C], nitrogen [N], and phosphorus [P]) between consumers and their resources influences not only the growth and reproduction of the consumers but also the nutrients they regenerate. Flagellate protists are significant predators of aquatic bacteria and directly influence nutrient flow to higher trophic levels and, through excretion, influence the mineral element composition of dissolved nutrients. Because the element stoichiometry of protists is poorly characterized, we varied the resource composition of the bacterium Pseudomonas fluorescens and used it to grow the mixotrophic bacterivorous flagellate Ochromonas danica. Using a mass balance approach, the element composition of O. danica was found to vary depending upon the nutrient composition of the prey and ranged between 482:36:1 and 80:12:1 (C:N:P molar). Homeostasis plots suggested that flagellate protists weakly regulate their element composition and are likely to regenerate different elements depending upon the nature of the element limiting growth of their prey.

摘要

消费者与其资源之间的必需元素(例如碳 [C]、氮 [N] 和磷 [P])的平衡不仅影响消费者的生长和繁殖,还影响它们再生的营养物质。鞭毛原生动物是水生细菌的重要捕食者,它们直接影响营养物质向更高营养级的流动,并通过排泄影响溶解营养物质的矿物质元素组成。由于原生动物的元素化学计量学特征描述不佳,我们改变了荧光假单胞菌的资源组成,并利用它来培养混合营养的食细菌鞭毛原生动物眼虫。通过质量平衡方法,发现眼虫的元素组成取决于猎物的营养成分,范围在 482:36:1 和 80:12:1(C:N:P 摩尔比)之间。同量异位图表明,鞭毛原生动物对其元素组成的调节能力较弱,并且可能根据限制其猎物生长的元素的性质,再生不同的元素。

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