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香港遭受环境压力的不同珊瑚中,原核微生物与抗逆藻类之间的相关性。

Correlations Between Prokaryotic Microbes and Stress-Resistant Algae in Different Corals Subjected to Environmental Stress in Hong Kong.

作者信息

Tong Haoya, Cai Lin, Zhou Guowei, Zhang Weipeng, Huang Hui, Qian Pei-Yuan

机构信息

Department of Ocean Science, Division of Life Science and Hong Kong Branch of the Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou), The Hong Kong University of Science and Technology, Hong Kong, China.

Key Laboratory of Tropical Marine Bio-resources and Ecology, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou, China.

出版信息

Front Microbiol. 2020 Apr 23;11:686. doi: 10.3389/fmicb.2020.00686. eCollection 2020.

Abstract

Coral reefs are extremely vulnerable to global climate change, as evidenced by increasing bleaching events. Previous studies suggest that both algal and microbial partners benefit coral hosts, but the nature of interactions between Symbiodiniaceae and prokaryotic microbes and their effects on coral hosts remains unclear. In the present study, we examined correlations between Symbiodiniaceae and prokaryotic microbes in spp. and sampled from two sites in Hong Kong with contrasting environmental conditions in March and October 2014. The results showed that the prokaryotic microbial communities had adaptable structures in both spp. and , and environmental conditions had greater effects on the algal/microbial communities in spp. than in . Further network analysis revealed a greater number of prokaryotic microbes were significantly correlated with potentially stress-resistant Symbiodiniaceae in than in spp. Stress-resistant Symbiodiniaceae played more important roles in the community and in the algal-microbial correlations in than in spp. Since is faring better in Hong Kong as the seawater temperature gradually increases, the results suggest that the correlations between stress-resistant algae and prokaryotic microbes could provide a compensation mechanism allowing coral hosts to adapt to higher temperatures, particularly as the prokaryotic microbes correlated with Symbiodiniaceae provide the ecological functions of photosynthesis and nitrogen fixation.

摘要

珊瑚礁极易受到全球气候变化的影响,白化事件不断增加就是明证。先前的研究表明,藻类和微生物伙伴都能使珊瑚宿主受益,但共生藻科与原核微生物之间相互作用的性质及其对珊瑚宿主的影响仍不清楚。在本研究中,我们于2014年3月和10月从香港两个环境条件不同的地点采集了 种和 种样本,检测了共生藻科与原核微生物之间的相关性。结果表明,原核微生物群落结构在 种和 种中均具有适应性,且环境条件对 种中藻类/微生物群落的影响大于对 种的影响。进一步的网络分析显示,与 种相比, 种中有更多原核微生物与潜在抗逆性共生藻科显著相关。抗逆性共生藻科在 种的群落以及藻类-微生物相关性中比在 种中发挥着更重要的作用。由于随着海水温度逐渐升高, 在香港的生存状况更好,研究结果表明,抗逆性藻类与原核微生物之间的相关性可能提供了一种补偿机制,使珊瑚宿主能够适应更高的温度,特别是因为与共生藻科相关的原核微生物具有光合作用和固氮的生态功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06b1/7191007/b15d6d18acea/fmicb-11-00686-g001.jpg

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