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Response of polyamine pools in marine phytoplankton to nutrient limitation and variation in temperature and salinity

机译:海洋浮游植物中多胺池对养分限制以及温度和盐度变化的响应

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Previous field observations suggest that the composition of intracellular polyamine pools in phytoplankton determines the profile of polyamines released to the surrounding environment; thus, knowing how these pools vary among species and in response to factors affecting phytoplankton growth provides a basis for understanding fluctuations in dissolved polyamines. Our analyses of the polyamine content of axenic marine phytoplankton cultures show that intracellular polyamine pools are large (100s to 1000s mu mol l(-1) of biovolume) and that putrescine and spermidine are the major compounds present; however, composition varied with species. Norspermidine and norspermine were the dominant compounds found in the diatom Thalassiosira pseudonana and the dinoflagellate Amphidinium carterae, respectively. We explored the effects of temperature, salinity and nutrient limitation on polyamine pools in T. pseudonana, and found that either increasing temperature or decreasing salinity increased polyamine concentrations in cells and in the growth medium. Nutrient (N, P or Si) limitation caused reductions of intracellular polyamine concentrations, but release was enhanced under N or Si limitation. Polyamine ratios in the media were not the same as in intracellular pools, suggesting selective release or uptake of polyamines by phytoplankton. Thus, the composition of the dissolved polyamine pool in seawater can vary significantly and on short time scales, depending on phytoplankton community composition and environmental factors affecting phytoplankton physiology. Our work provides experimental verification that biological mechanisms support inferences derived from environmental correlations about the factors controlling polyamine distributions in the sea.
机译:先前的现场观察表明,浮游植物中细胞内多胺池的组成决定了释放到周围环境中的多胺的分布。因此,了解这些库在物种之间如何变化以及对影响浮游植物生长的因素的响应,为了解溶解的多胺的波动提供了基础。我们对海洋性浮游植物浮游生物中多胺含量的分析表明,胞内多胺池很大(生物体积为100s至1000sμmoll(-1)),腐胺和亚精胺是存在的主要化合物。但是,组成因物种而异。降鸟精和降鸟精分别是在硅藻拟藻和假鞭毛双歧杆菌中发现的主要化合物。我们探讨了温度,盐度和营养限制对拟南芥中多胺池的影响,发现升高温度或降低盐度会增加细胞和生长培养基中的多胺浓度。营养物(N,P或Si)限制导致细胞内多胺浓度降低,但在N或Si限制下释放增加。培养基中的多胺比率与细胞内池中的多胺比率不同,表明浮游植物选择性释放或吸收了多胺。因此,取决于浮游植物群落组成和影响浮游植物生理的环境因素,海水中溶解的多胺池的组成可以在短时间内显着变化。我们的工作提供了实验验证,即生物学机制支持从环境相关性推论得出的有关控制海洋中多胺分布的因素的推论。

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