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淡水硅藻对温度升高的物种特异性反应受种间相互作用影响。

The Species-Specific Responses of Freshwater Diatoms to Elevated Temperatures Are Affected by Interspecific Interactions.

作者信息

Zhang Yun, Peng Chengrong, Wang Zhicong, Zhang Jinli, Li Lijie, Huang Shun, Li Dunhai

机构信息

Key Laboratory of Algal Biology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Microorganisms. 2018 Aug 7;6(3):82. doi: 10.3390/microorganisms6030082.

Abstract

Numerous experimental simulations with different warming scenarios have been conducted to predict how algae will respond to warming, but their conclusions are sometimes contradictory to each other. This might be due to a failure to consider interspecific interactions. In this study, the dominant diatom species in a seasonal succession were isolated and verified to adapt to different temperature ranges by constant temperature experiment. Both unialgal and mixed cultures were exposed to two fluctuant temperature treatments that simulated the temperature variations from early spring to summer, with one treatment 4 °C higher (warming scenario) than the other. We found that the specific response of diatoms to warming was affected by interspecific interactions. Spring warming had no significant effect on eurythermal species and had a positive effect on the abundance of warm-adapted diatom species, but interspecific interactions reduced this promotional effect. Cold-adapted species had a negative response to spring warming in the presence of other diatom species but had a positive response to early spring warming in the absence of interspecific interactions. In addition, warming resulted in the growth of all diatom species peaking earlier in unialgal cultures, but this effect could be weakened or amplified by interspecies interactions in mixed cultures. Our results suggest that the specific diatom species with different optimal growth temperature ranges responding to warming were expected if there were no interspecific interactions. However, in natural environments, the inevitable and complex interspecific interactions will influence the responses of diatoms to warming. This important factor should not be ignored in the prediction of organism responses to climate warming.

摘要

已经进行了许多不同变暖情景的实验模拟,以预测藻类将如何应对变暖,但其结论有时相互矛盾。这可能是由于未能考虑种间相互作用。在本研究中,通过恒温实验分离出季节性演替中的优势硅藻物种,并验证其适应不同温度范围。单种培养和混合培养都暴露于两种波动温度处理下,这两种处理模拟了从早春到夏季的温度变化,其中一种处理比另一种高4°C(变暖情景)。我们发现硅藻对变暖的特定反应受种间相互作用影响。春季变暖对广温性物种没有显著影响,对适应温暖的硅藻物种丰度有积极影响,但种间相互作用降低了这种促进作用。在存在其他硅藻物种的情况下,冷适应物种对春季变暖有负面反应,但在不存在种间相互作用的情况下对早春变暖有积极反应。此外,变暖导致所有硅藻物种的生长在单种培养中更早达到峰值,但这种效应在混合培养中可能会因种间相互作用而减弱或增强。我们的结果表明,如果没有种间相互作用,预计具有不同最佳生长温度范围的特定硅藻物种会对变暖做出反应。然而,在自然环境中,不可避免且复杂的种间相互作用将影响硅藻对变暖的反应。在预测生物体对气候变暖的反应时,这一重要因素不应被忽视。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf49/6163879/9f9bbea7d1ca/microorganisms-06-00082-g001.jpg

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