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磷富集对实验室微观世界中藻类相互作用的影响。

Effects of phosphorus enrichment on -algae interactions in laboratory microcosms.

作者信息

Frost Paul C, DaSilva Kyle, Frost-Xenopoulos Joseph A, Burr Wesley S, Jones Catriona L C

机构信息

Department of Biology, Trent University, Peterborough, Ontario K9L 0G2, Canada.

Department of Mathematics & Statistics, Trent University, Peterborough, Ontario K9L 0G2, Canada.

出版信息

J Plankton Res. 2025 Mar 1;47(2):fbaf002. doi: 10.1093/plankt/fbaf002. eCollection 2025 Mar-Apr.

Abstract

We examined the effects of phosphorus (P) on algal biomass and stoichiometry and, subsequently, alterations to zooplankton populations. We modified P supply in microcosms and tracked changes in algal and populations, and phosphorus concentrations. Even though we found algal biomass increased over the experiment in low P containers, greater food abundance did not increase abundance. In low P containers, a high algal biomass was accompanied with elevated C:P ratios, very low soluble reactive P concentrations and low fecundity. High algal C:P ratios and low soluble reactive P concentrations in these microcosms indicated a strong P-limitation of algae and food quality constraints on consumer populations. In high P containers, algal biomass initially increased, which led to an increased abundance. In most of the high P microcosms, rapid increases in populations led to reduced algal biomass and increased concentrations of soluble reactive P. However, in an outlier high P container, we found a different pattern with elevated algal biomass, low soluble reactive P concentrations and a very large population. Our results show that P supplies can strongly affect -algae interactions, but the nature of these effects are likely complicated by internal feedbacks that affect the gain and loss of both populations.

摘要

我们研究了磷(P)对藻类生物量和化学计量的影响,以及随后对浮游动物种群的改变。我们在微观世界中改变磷的供应,并追踪藻类和浮游动物种群以及磷浓度的变化。尽管我们发现在低磷容器中藻类生物量在实验过程中有所增加,但更高的食物丰度并未增加浮游动物的丰度。在低磷容器中,高藻类生物量伴随着碳磷比升高、极低的可溶性活性磷浓度和低浮游动物繁殖力。这些微观世界中高的藻类碳磷比和低的可溶性活性磷浓度表明藻类受到强烈的磷限制以及食物质量对消费者种群的限制。在高磷容器中,藻类生物量最初增加,这导致浮游动物丰度增加。在大多数高磷微观世界中,浮游动物种群的快速增加导致藻类生物量减少和可溶性活性磷浓度增加。然而,在一个异常的高磷容器中,我们发现了不同的模式,即藻类生物量升高、可溶性活性磷浓度低且浮游动物种群非常大。我们的结果表明,磷供应会强烈影响浮游动物与藻类的相互作用,但这些影响的性质可能因影响两个种群增减的内部反馈而变得复杂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0587/11879204/55e3b33aaf83/fbaf002f1.jpg

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