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热应激后的息肉补救措施。

Polyp bailout in  following thermal stress.

作者信息

Fordyce Alexander J, Camp Emma F, Ainsworth Tracy D

机构信息

ARC Centre of Excellence for Coral Reef Studies, James Cook University, Queensland, Australia.

Climate Change Cluster, University of Technology Sydney, New South Wales, Australia.

出版信息

F1000Res. 2017 May 17;6:687. doi: 10.12688/f1000research.11522.2. eCollection 2017.

Abstract

Polyp bailout is an established but understudied coral stress response that involves the detachment of individual polyps from the colonial form as a means of escaping unfavourable conditions. This may influence both the mortality and asexual recruitment of coral genotypes across a range of species. It has been observed in response to numerous stressors including high salinity and low pH. Polyp expulsion in association with thermal stress has once been described in a geographically restricted, temperate species. We therefore cannot reliably apply this observation to tropical coral reefs around the world, which are increasingly under threat from thermal stress events. We present the first qualitative observation of polyp bailout following acute temperature shock  in a near-natural mesocosm experiment. Detached polyps show similar characteristics to those described in previous studies, including the retention of endosymbiotic zooxanthellae and the ability to disperse across short distances. This finding strongly suggests that polyp bailout occurs in tropical coral reef environments and warrants further detailed research into the implication of this response in terms of individual survival, rapid migration into cooler micro-habitats and local recruitment within the reef environment and its coral community.

摘要

珊瑚虫脱离是一种已被确认但研究不足的珊瑚应激反应,它涉及单个珊瑚虫从群体形态中脱离,以此作为逃避不利条件的一种方式。这可能会影响一系列物种中珊瑚基因型的死亡率和无性繁殖。人们已经观察到它会对包括高盐度和低pH值在内的多种应激源产生反应。曾有研究在一个地理范围受限的温带物种中描述过与热应激相关的珊瑚虫排出现象。因此,我们无法将这一观察结果可靠地应用于全球日益受到热应激事件威胁的热带珊瑚礁。我们在一项近乎自然的中宇宙实验中首次对急性温度冲击后珊瑚虫脱离进行了定性观察。脱离的珊瑚虫表现出与先前研究中描述的类似特征,包括保留内共生虫黄藻以及短距离扩散的能力。这一发现有力地表明,珊瑚虫脱离现象发生在热带珊瑚礁环境中,有必要进一步详细研究这种反应在个体生存、快速迁移到较凉爽的微生境以及珊瑚礁环境及其珊瑚群落内的局部繁殖方面的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bfb/5580505/93c388917790/f1000research-6-13393-g0000.jpg

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