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Future temperature and salinity do not exert selection pressure on cyst germination of a toxic phytoplankton species

机译:未来的温度和盐度不会对有毒浮游植物的囊肿萌发施加选择压力

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摘要

Environmental conditions regulate the germination of phytoplankton resting stages. While some factors lead to synchronous germination, others stimulate germination of only a small fraction of the resting stages. This suggests that habitat filters may act on the germination level and thus affect selection of blooming strains. Benthic “seed banks” of the toxic dinoflagellate Alexandrium ostenfeldii from the Baltic Sea are genetically and phenotypically diverse, indicating a high potential for adaptation by selection on standing genetic variation. Here, we experimentally tested the role of climate‐related salinity and temperature as selection filters during germination and subsequent establishment of A. ostenfeldii strains. A representative resting cyst population was isolated from sediment samples, and germination and reciprocal transplantation experiments were carried out, including four treatments: Average present day germination conditions and three potential future conditions: high temperature, low salinity, and high temperature in combination with low salinity. We found that the final germination success of A. ostenfeldii resting cysts was unaffected by temperature and salinity in the range tested. A high germination success of more than 80% in all treatments indicates that strains are not selected by temperature and salinity during germination, but selection becomes more important shortly after germination, in the vegetative stage of the life cycle. Moreover, strains were not adapted to germination conditions. Instead, highly plastic responses occurred after transplantation and significantly higher growth rates were observed at higher temperature. High variability of strain‐specific responses has probably masked the overall effect of the treatments, highlighting the importance of testing the effect of environmental factors on many strains. It is likely that A. ostenfeldii populations can persist in the future, because suitable strains, which are able to germinate and grow well at potential future climate conditions, are part of the highly diverse cyst population.
机译:环境条件调节浮游植物静止阶段的发芽。虽然某些因素导致同步发芽,但其他因素仅刺激休息阶段中一小部分的发芽。这表明栖息地过滤器可能会在发芽水平上起作用,从而影响开花菌株的选择。来自波罗的海的有毒鞭毛藻ostenfeldii的底栖“种子库”在遗传和表型上是多样的,这表明通过对常规遗传变异进行选择具有很大的适应潜力。在这里,我们通过实验测试了与气候有关的盐度和温度在发芽和随后建立A.ostenfeldii菌株过程中作为选择过滤器的作用。从沉积物样本中分离出一个有代表性的静止囊肿种群,并进行了发芽和相互移植实验,包括四种处理方法:当前平均发芽条件和三种潜在的未来条件:高温,低盐度和高温与低盐度相结合。我们发现在测试范围内,奥斯滕费尔德静息囊肿的最终发芽成功不受温度和盐度的影响。在所有处理中发芽成功率均超过80%,这表明在发芽过程中并未根据温度和盐度选择菌株,但在生命周期的营养阶段,发芽后不久,选择就变得更加重要。此外,菌株不适合发芽条件。相反,移植后发生了高度可塑性的反应,并且在较高温度下观察到明显更高的生长速率。菌株特异性反应的高变异性可能掩盖了治疗的总体效果,突出了测试环境因素对许多菌株影响的重要性。 ostenfeldii种群可能会在未来持续存在,因为能够在潜在的未来气候条件下发芽并生长良好的合适菌株是高度多样化的囊肿种群的一部分。

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