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在营养和光照供应有限的情况下,浮游植物化学计量沿盐度梯度的变化

Phytoplankton stoichiometry along the salinity gradient under limited nutrient and light supply.

作者信息

Orizar Iris D S, Repetti Sonja I, Lewandowska Aleksandra M

机构信息

Tvärminne Zoological Station, Faculty of Biological and Environmental Sciences, University of Helsinki, J.A. Palmenin 260, 10900 Hanko, Finland.

出版信息

J Plankton Res. 2024 Jun 11;46(4):387-397. doi: 10.1093/plankt/fbae031. eCollection 2024 Jul-Aug.

Abstract

Ongoing climate warming alters precipitation and water column stability, leading to salinity and nutrient supply changes in the euphotic zone of many coastal ecosystems and semi-enclosed seas. Changing salinity and nutrient conditions affect phytoplankton physiology by altering elemental ratios of carbon (C), nitrogen (N) and phosphorus (P). This study aimed to understand how salinity stress and resource acquisition affect phytoplankton stoichiometry. We incubated a phytoplankton polyculture composed of 10 species under different light, inorganic nutrient ratio and salinity levels. At the end of the incubation period, we measured particulate elemental composition (C, N and P), chlorophyll and species abundances. The phytoplankton polyculture, dominated by , accumulated more particulate organic carbon (POC) with increasing salinity. The low POC and low particulate C:N and C:P ratios toward 0 psu suggest that the hypoosmotic conditions highly affected primary production. The relative abundance of different species varied with salinity, and some species grew faster under low nutrient supply. Still, the dominant diatom regulated the overall POC of the polyculture, following the classic concept of the foundation species.

摘要

持续的气候变暖改变了降水和水柱稳定性,导致许多沿海生态系统和半封闭海域的透光层盐度和养分供应发生变化。盐度和养分条件的改变通过改变碳(C)、氮(N)和磷(P)的元素比例来影响浮游植物的生理过程。本研究旨在了解盐度胁迫和资源获取如何影响浮游植物的化学计量学。我们在不同光照、无机养分比例和盐度水平下培养了由10个物种组成的浮游植物混合培养物。在培养期结束时,我们测量了颗粒元素组成(C、N和P)、叶绿素和物种丰度。以 为主的浮游植物混合培养物随着盐度的增加积累了更多的颗粒有机碳(POC)。低POC以及低颗粒C:N和C:P比值趋近于0 psu表明低渗条件对初级生产有很大影响。不同物种的相对丰度随盐度变化而变化,一些物种在低养分供应下生长得更快。尽管如此,占主导地位的硅藻遵循基础物种的经典概念,调节着混合培养物的总体POC。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7052/11290246/5983ba6efc68/fbae031f1.jpg

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