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与多种共生体相关的珊瑚机制模型分析:宿主内竞争与白化恢复

Analysis of a mechanistic model of corals in association with multiple symbionts: within-host competition and recovery from bleaching.

作者信息

Brown Alexandra Lynne, Pfab Ferdinand, Baxter Ethan C, Detmer A Raine, Moeller Holly V, Nisbet Roger M, Cunning Ross

机构信息

Department of Ecology, Evolution, and Marine Biology, University of California, Santa Barbara, Santa Barbara, CA 93106, USA.

Daniel P. Haerther Center for Conservation and Research, John G. Shedd Aquarium, Chicago, IL 60605, USA.

出版信息

Conserv Physiol. 2022 Oct 11;10(1):coac066. doi: 10.1093/conphys/coac066. eCollection 2022.

Abstract

Coral reefs are increasingly experiencing stressful conditions, such as high temperatures, that cause corals to undergo bleaching, a process where they lose their photosynthetic algal symbionts. Bleaching threatens both corals' survival and the health of the reef ecosystems they create. One possible mechanism for corals to resist bleaching is through association with stress-tolerant symbionts, which are resistant to bleaching but may be worse partners in mild conditions. Some corals have been found to associate with multiple symbiont species simultaneously, which potentially gives them access to the benefits of both stress-sensitive and -tolerant symbionts. However, within-host competition between symbionts may lead to competitive exclusion of one partner, and the consequences of associating with multiple partners simultaneously are not well understood. We modify a mechanistic model of coral-algal symbiosis to investigate the effect of environmental conditions on within-host competitive dynamics between stress-sensitive and -tolerant symbionts and the effect of access to a tolerant symbiont on the dynamics of recovery from bleaching. We found that the addition of a tolerant symbiont can increase host survival and recovery from bleaching in high-light conditions. Competitive exclusion of the tolerant symbiont occurred slowly at intermediate light levels. Interestingly, there were some cases of post-bleaching competitive exclusion after the tolerant symbiont had helped the host recover.

摘要

珊瑚礁正日益面临高温等压力条件,这些条件会导致珊瑚白化,即珊瑚失去其光合藻类共生体的过程。白化既威胁着珊瑚的生存,也威胁着它们所构建的珊瑚礁生态系统的健康。珊瑚抵抗白化的一种可能机制是与耐胁迫共生体建立联系,这些共生体对白化具有抗性,但在温和条件下可能不是那么理想的共生伙伴。已发现一些珊瑚会同时与多种共生体物种建立联系,这可能使它们既能获得对胁迫敏感的共生体的益处,又能获得耐胁迫共生体的益处。然而,共生体在宿主体内的竞争可能导致其中一个伙伴被竞争性排除,同时与多个伙伴建立联系的后果目前还不太清楚。我们修改了一个珊瑚 - 藻类共生的机制模型,以研究环境条件对胁迫敏感型和耐胁迫型共生体在宿主体内竞争动态的影响,以及获得耐胁迫共生体对从白化中恢复的动态过程的影响。我们发现,在高光条件下,添加耐胁迫共生体可以提高宿主的存活率并促进其从白化中恢复。在中等光照水平下,耐胁迫共生体被竞争性排除的过程较为缓慢。有趣的是,在耐胁迫共生体帮助宿主恢复后,有一些白化后竞争性排除的情况发生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab42/9558299/e26abab8d516/coac066f1.jpg

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