Ojeong Resilience Institute, Korea University, Seoul, 02841, Republic of Korea.
Department of Environmental Science and Ecological Engineering, Korea University, Seoul, 02841, Republic of Korea.
Sci Rep. 2020 Mar 10;10(1):4419. doi: 10.1038/s41598-020-61438-9.
In the context of climate warming, the dominance of allelopathic algae that cause ecosystem disturbances is an important topic. Although the hypothesis that an increase in temperature will be favorable to the dominance of allelopathic algae has been increasingly supported by many studies, it is still unclear how other factors can affect the influence of temperature. In this study, the effects of copper exposure and initial algal abundance on the competition between Pseudokirchneriella subcapitata (non-allelopathic alga) and Chlorella vulgaris (allelopathic alga) were investigated during temperature changes. The results showed that increased temperatures enhanced the competitive advantage of C. vulgaris only in the absence of copper exposure. Our data confirmed that copper exposure along with increased temperature (20-30 °C) may change the competitive advantage of C. vulgaris from favorable to unfavorable. The initial algal abundance was found to affect competition outcome by controlling copper toxicity. This study suggests that pollutants and initial abundance can alter the effects of increased temperature on the allelopathic interaction. Given the temporal dynamics of algal abundance and the pollutants in natural ecosystems, these findings should be considered in the prediction of temperature influence on an algal community.
在气候变暖的背景下,具有生态系统干扰作用的化感藻类的优势是一个重要的课题。尽管越来越多的研究支持温度升高有利于化感藻类优势的假说,但其他因素如何影响温度的影响仍不清楚。在这项研究中,研究了铜暴露和初始藻类丰度对温度变化过程中拟菱形藻(非化感藻类)和普通小球藻(化感藻类)之间竞争的影响。结果表明,只有在没有铜暴露的情况下,升高温度才会增强普通小球藻的竞争优势。我们的数据证实,铜暴露加上温度升高(20-30°C)可能会使普通小球藻的竞争优势从有利变为不利。初始藻类丰度通过控制铜毒性影响竞争结果。本研究表明,污染物和初始丰度可以改变温度升高对化感相互作用的影响。考虑到自然生态系统中藻类丰度和污染物的时间动态,这些发现应在预测温度对藻类群落的影响时加以考虑。