Sequential nutrient uptake as a potential mechanism for phytoplankton to maintain high primary productivity and balanced nutrient stoichiometry
Kedong Yin; Hao Liu; Paul J. Harrison
刊名Biogeosciences
2017
卷号14页码:2469–2480
通讯作者Kedong Yin ; Hao Liu
英文摘要

We hypothesize that phytoplankton have the sequential nutrient uptake strategy to maintain nutrient stoichiometry and high primary productivity in the water column. According to this hypothesis, phytoplankton take up the most limiting nutrient first until depletion, continue to draw down non-limiting nutrients and then take up the most limiting nutrient rapidly when it is available. These processes would result in the variation of ambient nutrient ratios in the water column around the Redfield ratio. We used high-resolution continuous vertical profiles of nutrients, nutrient ratios and on-board ship incubation experiments to test this hypothesis in the Strait of Georgia. At the surface in summer, ambient NO3 was depleted with excess PO43− and SiO4 remaining, and as a result, both N : P and N : Si ratios were low. The two ratios increased to about 10 : 1 and 0. 45 : 1, respectively, at 20 m. Time series of vertical profiles showed that the leftover PO43− continued to be removed, resulting in additional phosphorus storage by phytoplankton. The N : P ratios at the nutricline in vertical profiles responded differently to mixing events. Field incubation of seawater samples also demonstrated the sequential uptake of NO3 (the most limiting nutrient) and then PO43− and SiO4 (the non-limiting nutrients). This sequential uptake strategy allows phytoplankton to acquire additional cellular phosphorus and silicon when they are available and wait for nitrogen to become available through frequent mixing of NO3 (or pulsed regenerated NH4). Thus, phytoplankton are able to maintain high productivity and balance nutrient stoichiometry by taking advantage of vigorous mixing regimes with the capacity of the stoichiometric plasticity. To our knowledge, this is the first study to show the in situ dynamics of continuous vertical profiles of N : P and N : Si ratios, which can provide insight into the in situ dynamics of nutrient stoichiometry in the water column and the inference of the transient status of phytoplankton nutrient stoichiometry in the coastal ocean.

语种英语
内容类型期刊论文
源URL[http://ir.idsse.ac.cn/handle/183446/10750]  
专题深海科学研究部_深海生物学研究室_海洋微生物分子生态学研究组
通讯作者Kedong Yin; Hao Liu
作者单位1.School of Marine Sciences, Sun Yat-Sen University
2.School of Marine Sciences, Sun Yat-Sen University
推荐引用方式
GB/T 7714
Kedong Yin,Hao Liu,Paul J. Harrison. Sequential nutrient uptake as a potential mechanism for phytoplankton to maintain high primary productivity and balanced nutrient stoichiometry[J]. Biogeosciences,2017,14:2469–2480.
APA Kedong Yin,Hao Liu,&Paul J. Harrison.(2017).Sequential nutrient uptake as a potential mechanism for phytoplankton to maintain high primary productivity and balanced nutrient stoichiometry.Biogeosciences,14,2469–2480.
MLA Kedong Yin,et al."Sequential nutrient uptake as a potential mechanism for phytoplankton to maintain high primary productivity and balanced nutrient stoichiometry".Biogeosciences 14(2017):2469–2480.
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