Dellisanti Walter, Chung Jeffery T H, Chow Cher F Y, Wu Jiajun, Wells Mark L, Chan Leo L
State Key Laboratory of Marine Pollution, City University of Hong Kong, Kowloon, China.
Department of Biomedical Sciences, City University of Hong Kong, Kowloon, China.
Front Physiol. 2021 Jun 7;12:656562. doi: 10.3389/fphys.2021.656562. eCollection 2021.
Coral reefs are declining worldwide due to global changes in the marine environment. The increasing frequency of massive bleaching events in the tropics is highlighting the need to better understand the stages of coral physiological responses to extreme conditions. Moreover, like many other coastal regions, coral reef ecosystems are facing additional localized anthropogenic stressors such as nutrient loading, increased turbidity, and coastal development. Different strategies have been developed to measure the health status of a damaged reef, ranging from the resolution of individual polyps to the entire coral community, but techniques for measuring coral physiology are not yet widely implemented. For instance, while there are many studies of the coral holobiont response in single or limited-number multiple stressor experiments, they provide only partial insights into metabolic performance under more complex and temporally and spatially variable natural conditions. Here, we discuss the current status of coral reefs and their global and local stressors in the context of experimental techniques that measure core processes in coral metabolism (respiration, photosynthesis, and biocalcification) , and their role in indicating the health status of colonies and communities. We highlight the need to improve the capability of studies in order to better understand the resilience and stress response of corals under multiple global and local scale stressors.
由于海洋环境的全球变化,世界各地的珊瑚礁正在衰退。热带地区大规模白化事件的频率不断增加,凸显了更好地了解珊瑚对极端条件生理反应阶段的必要性。此外,与许多其他沿海地区一样,珊瑚礁生态系统正面临着额外的局部人为压力源,如营养物质负荷增加、浊度增加和沿海开发。已经开发出不同的策略来测量受损珊瑚礁的健康状况,从单个珊瑚虫到整个珊瑚群落的分辨率不等,但测量珊瑚生理的技术尚未得到广泛应用。例如,虽然有许多关于珊瑚共生体在单一或有限数量多应激源实验中的反应的研究,但它们仅能部分洞察在更复杂以及时空变化的自然条件下的代谢表现。在此,我们结合测量珊瑚新陈代谢核心过程(呼吸、光合作用和生物钙化)的实验技术,讨论珊瑚礁的现状及其全球和局部应激源,以及它们在指示珊瑚群体和群落健康状况方面的作用。我们强调需要提高研究能力,以便更好地了解珊瑚在多种全球和局部尺度应激源下的恢复力和应激反应。