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浮游植物物种对养分供应比率和生长率的交互作用的化学计量响应(1)。

STOICHIOMETRIC RESPONSES OF PHYTOPLANKTON SPECIES TO THE INTERACTIVE EFFECT OF NUTRIENT SUPPLY RATIOS AND GROWTH RATES(1).

机构信息

Helmholtz Centre for Ocean Research Kiel (GEOMAR), Düsternbrooker Weg 20, 24105 Kiel, Germany.

出版信息

J Phycol. 2012 Jun;48(3):539-49. doi: 10.1111/j.1529-8817.2012.01163.x. Epub 2012 May 3.

DOI:10.1111/j.1529-8817.2012.01163.x
PMID:27011069
Abstract

Three species of phytoplankton, Rhodomonas sp., Phaeodactylum tricornutum Bohlin, and Isochrysis galbana Parke, were cultivated in semicontinuous culture to analyze the response of carbon (C):nitrogen (N):phosphorus (P) stoichiometry to the interactive effect of five N:P supply ratios and four growth rates (dilution rates). The relationship between cellular N and P quotas and growth rates fits well to both the Droop and Ågren's functions for all species. We observed excess uptake of both N and P in the three species. N:P biomass ratios showed a significant positive relationship with N:P supply ratios across the entire range of growth rates, and N:P biomass ratios converged to an intermediate value independent of N:P supply ratios at higher growth rates. The effect of growth rates on N:P biomass ratios was positive at lower N:P supply ratios, but negative at higher N:P supply ratios for both Rhodomonas sp. and I. galbana, while for P. tricornutum this effect was negative at all N:P supply ratios. A significant interactive effect of N:P supply ratios and growth rates on N:P biomass ratios was found in both Rhodomonas sp. and P. tricornutum, but not in I. galbana. Our results suggest that Ågren's functions may explain the underlying biochemical principle for the Droop model. The parameters in the Droop and Ågren's functions can be useful indications of algal succession in the phytoplankton community in changing oceans.

摘要

三种浮游植物,Rhodomonas sp.、Phaeodactylum tricornutum Bohlin 和 Isochrysis galbana Parke,在半连续培养中进行培养,以分析碳 (C):氮 (N):磷 (P) 化学计量对五种 N:P 供应比和四种生长率(稀释率)相互作用的响应。细胞 N 和 P 配额与生长率之间的关系非常适合所有物种的 Droop 和 Ågren 函数。我们观察到三种物种都存在过量吸收 N 和 P 的现象。N:P 生物量比与整个生长率范围内的 N:P 供应比呈显著正相关,并且在较高的生长率下,N:P 生物量比独立于 N:P 供应比收敛到一个中间值。对于 Rhodomonas sp. 和 I. galbana,生长率对 N:P 生物量比的影响在较低的 N:P 供应比下为正,但在较高的 N:P 供应比下为负,而对于 P. tricornutum,这种影响在所有 N:P 供应比下均为负。在 Rhodomonas sp. 和 P. tricornutum 中发现了 N:P 供应比和生长率对 N:P 生物量比的显著交互作用,但在 I. galbana 中没有发现。我们的结果表明,Ågren 函数可能解释了 Droop 模型的潜在生化原理。Droop 和 Ågren 函数中的参数可以作为海洋变化中浮游植物群落中藻类演替的有用指标。

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