首页> 外文期刊>Journal of phycology >STOICHIOMETRIC RESPONSES OF PHYTOPLANKTON SPECIES TO THE INTERACTIVE EFFECT OF NUTRIENT SUPPLY RATIOS AND GROWTH RATES
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STOICHIOMETRIC RESPONSES OF PHYTOPLANKTON SPECIES TO THE INTERACTIVE EFFECT OF NUTRIENT SUPPLY RATIOS AND GROWTH RATES

机译:浮游植物的化学计量比对营养供给比与生长速率的相互作用的影响

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摘要

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 angstrom grens 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 angstrom grens functions may explain the underlying biochemical principle for the Droop model. The parameters in the Droop and angstrom grens functions can be useful indications of algal succession in the phytoplankton community in changing oceans.
机译:在半连续培养中培养了三种浮游植物,红藻属,三角角藻和球形等位线虫,以分析碳(C):氮(N):磷(P)化学计量对五个氮的相互作用的响应:P供应比率和四个增长率(稀释率)。细胞氮和磷配额与增长率之间的关系非常适合所有物种的下垂和埃格伦斯函数。我们观察到三个物种中氮和磷的过量摄入。在整个增长率范围内,N:P的生物量比率与N:P的供给比率之间存在显着的正相关关系,并且在较高的增长率下,N:P的生物量比率收敛于中间值,而与N:P的供给比率无关。生长速率对氮磷生物量比率的影响在低氮磷供应比率下为正,而对于红球藻均在高氮磷供应比率下为负。以及I. galbana,而对于角实疟原虫,在所有N:P供应比下,这种影响都是负面的。在红景天属菌种中均发现氮磷供应比例和生长速率对氮磷生物量比率的显着交互作用。和P. tricornutum,但不在I. galbana中。我们的研究结果表明埃格伦斯功能可以解释Droop模型的潜在生化原理。 Droop和Angstrom grens函数中的参数可能是变化的海洋中浮游植物群落中藻类演替的有用指示。

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