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首页> 外文期刊>Journal of plankton research >Modelling the life cycle of dinoflagellates: A case study with Biecheleria baltica
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Modelling the life cycle of dinoflagellates: A case study with Biecheleria baltica

机译:甲藻的生命周期建模:以波氏白僵菌为例

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摘要

The cold-water dinoflagellate Biecheleria baltica has increasingly dominated the phytoplankton spring bloom in the Baltic Sea during the past years. Life cycle transitions between bloom forming cells and resting cysts are assumed to regulate the bloom dynamics of this species. We investigate the seasonal cycle and succession of Biecheleria baltica's life cycle stages using a numerical model with four different stages, vegetative cells, gametes, resting cysts and germinating cells. The transitions among the stages are functions of environmental conditions and endogenous factors. Coupled to a water column model, the model is able to represent the seasonal cycle of Biecheleria baltica with two blooms in spring. The first bloom can be explained by germination of resting cysts in winter, the second by growth of vegetative cells. Sensitivity experiments indicate that temperature is an important factor regulating the composition of Biecheleria baltica life cycle stages; increased or decreased temperature leads to fewer growing cells and more resting cysts during spring. Our newly developed life cycle model can be used to study in more detail cyst formation, cyst distribution and consequences for biogeochemical cycling in the past and future.
机译:在过去的几年中,冷水甲鞭毛藻波罗的海(Biecheleria baltica)在波罗的海的浮游植物春季开花中越来越占主导地位。假定在开花形成细胞和静止的囊肿之间的生命周期转变可调节该物种的开花动态。我们使用具有四个不同阶段的数值模型,即营养细胞,配子,静息囊肿和发芽细胞,研究了波罗的海白桦的生命周期的季节周期和连续性。各阶段之间的过渡是环境条件和内在因素的函数。耦合至水柱模型,该模型能够代表春季出现两次大花的波罗的海白桦的季节周期。第一次开花可以解释为冬天休息的囊肿发芽,第二次是营养细胞的生长。敏感性实验表明,温度是调节波氏白僵菌生命周期阶段组成的重要因素。温度升高或降低会导致春季生长的细胞减少,静息的囊肿增加。我们新近开发的生命周期模型可用于更详细地研究囊肿的形成,囊肿的分布以及过去和将来对生物地球化学循环的影响。

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