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Occupation Dynamics and Impacts of Damselfish Territoriality on Recovering Populations of the Threatened Staghorn Coral Acropora cervicornis

机译:雀鲷的占领动态及其对受威胁的鹿角珊瑚(Acropora cervicornis)种群恢复的影响

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摘要

Large-scale coral reef restoration is needed to help recover structure and function of degraded coral reef ecosystems and mitigate continued coral declines. In situ coral propagation and reef restoration efforts have scaled up significantly in past decades, particularly for the threatened Caribbean staghorn coral, Acropora cervicornis, but little is known about the role that native competitors and predators, such as farming damselfishes, have on the success of restoration. Steep declines in A. cervicornis abundance may have concentrated the negative impacts of damselfish algal farming on a much lower number of coral prey/colonies, thus creating a significant threat to the persistence and recovery of depleted coral populations. This is the first study to document the prevalence of resident damselfishes and negative effects of algal lawns on A. cervicornis along the Florida Reef Tract (FRT). Impacts of damselfish lawns on A. cervicornis colonies were more prevalent (21.6% of colonies) than those of other sources of mortality (i.e., disease (1.6%), algal/sponge overgrowth (5.6%), and corallivore predation (7.9%)), and damselfish activities caused the highest levels of tissue mortality (34.6%) among all coral stressors evaluated. The probability of damselfish occupation increased as coral colony size and complexity increased and coral growth rates were significantly lower in colonies with damselfish lawns (15.4 vs. 29.6 cm per year). Reduced growth and mortality of existing A. cervicornis populations may have a significant effect on population dynamics by potentially reducing important genetic diversity and the reproductive potential of depleted populations. On a positive note, however, the presence of resident damselfishes decreased predation by other corallivores, such as Coralliophila and Hermodice, and may offset some negative impacts caused by algal farming. While most negative impacts of damselfishes identified in this study affected large individual colonies and <50% of the A. cervicornis population along the FRT, the remaining wild staghorn population, along with the rapidly increasing restored populations, continue to fulfill important functional roles on coral reefs by providing essential habitat and refuge to other reef organisms. Although the effects of damselfish predation are, and will continue to be, pervasive, successful restoration efforts and strategic coral transplantation designs may help overcome damselfish damage by rapidly increasing A. cervicornis cover and abundance while also providing important information to educate future conservation and management decisions.
机译:需要进行大规模的珊瑚礁恢复,以帮助恢复退化的珊瑚礁生态系统的结构和功能,并减轻珊瑚的持续衰退。在过去的几十年中,就地珊瑚的繁殖和礁石恢复工作已显着扩大,特别是对于濒临灭绝的加勒比鹿角珊瑚Acropora cervicornis,但鲜为人知的是本地竞争者和掠食者(如养殖豆娘)所起的作用。恢复。宫颈曲霉菌数量的急剧下降可能已将豆蔻养殖的负面影响集中在数量少得多的珊瑚猎物/殖民地上,从而对枯竭的珊瑚种群的存续和恢复构成了重大威胁。这是第一个记录常住的雀鲷的流行和藻类草坪对佛罗里达礁带(FRT)上的A. cervicornis的负面影响的研究。与其他死亡率来源(即疾病(1.6%),藻类/海绵体过度生长(5.6%)和珊瑚虫掠食性(7.9%))相比,豆蔻草坪对宫颈曲霉菌菌落的影响(占菌落的21.6%)更为普遍。 ),而在所有评估的珊瑚压力源中,豆娘活动导致最高的组织死亡率(34.6%)。随着珊瑚群落的规模和复杂性的增加,雀鲷占领的可能性增加,而在具有雀鲷草坪的殖民地中,珊瑚的生长速度则显着降低(每年15.4对29.6厘米)。现有的宫颈曲霉种群的减少的生长和死亡率可能通过潜在地减少重要的遗传多样性和枯竭种群的繁殖潜力而对种群动态产生重大影响。但从积极的方面来看,常住的雀鲷的存在减少了其他珊瑚虫(如Coralliophila和Hermodice)的捕食,并可能抵消了藻类养殖造成的一些负面影响。尽管在这项研究中发现的豆娘害最消极的影响影响了大的单个殖民地和FRT沿岸的A. cervicornis种群的50%,但其余的野生鹿角种群以及迅速恢复的种群继续在珊瑚上发挥重要的功能作用通过为其他珊瑚礁生物提供必要的栖息地和庇护所而形成的珊瑚礁。尽管河豚捕食的影响已经并将继续存在,但成功的恢复工作和战略性珊瑚移植设计将通过迅速增加子宫颈曲霉菌的覆盖率和丰度来帮助克服河豚危害,同时还提供重要信息以教育未来的保护和管理决策。

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  • 年(卷),期 -1(10),11
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  • 页码 e0141302
  • 总页数 15
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