Demographic recovery of corals at a wave-exposed reef following catastrophic disturbance

IF 2.7 2区 生物学 Q1 MARINE & FRESHWATER BIOLOGY
Liam Lachs, Piera Biondi, Marine Gouezo, Victor Nestor, Dawnette Olsudong, James Guest, Yimnang Golbuu
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Abstract

Rapid recovery of coral cover following acute disturbance has been documented on many reefs. Yet measuring coverage alone can mask shifts in community and demographic structure. Here, we quantify long-term changes in population size structure for three common genera (Acropora, Pocillopora, and Stylophora) at an eastern outer reef in Palau, Micronesia, following catastrophic loss of corals due to typhoon Bopha in 2012, based on size measurements from 3648 coral colonies. Mean colony size returned to pre-disturbance levels within 4 and 6 years for Stylophora and Pocillopora, respectively. By 2020, Pocillopora colony density far exceeded pre-disturbance levels, with rapid successful recruitment following typhoon Bopha. Despite recovery of Acropora colony density by 2020, populations remained dominated by smaller colonies. We demonstrate that full demographic recovery can occur more rapidly for pocilloporids (within 6 years) compared to Acropora which had not fully recovered by 8 years post-disturbance, possibly due to fewer annual recruitment events and larger maximum colony sizes. Our results highlight the value of demographic metrics as early indicators of recovery.

Abstract Image

波浪暴露的珊瑚礁在遭受灾难性干扰后的珊瑚数量恢复情况
许多珊瑚礁都记录了严重干扰后珊瑚覆盖率的快速恢复。然而,仅仅测量覆盖率可能会掩盖群落和人口结构的变化。在此,我们根据对 3648 个珊瑚群落的大小测量,量化了密克罗尼西亚帕劳东部外礁三个常见珊瑚属(Acropora、Pocillopora 和 Stylophora)在 2012 年台风宝霞造成珊瑚灾难性损失后种群大小结构的长期变化。在 4 年和 6 年时间内,石珊瑚和海红珊瑚的平均珊瑚群大小分别恢复到受干扰前的水平。到 2020 年,Pocillopora 珊瑚群的密度远远超过了干扰前的水平,在台风 "宝霞 "过后,珊瑚群迅速成功招募。尽管到 2020 年 Acropora 的群落密度有所恢复,但种群仍以较小的群落为主。我们的研究结果表明,与 Acropora 相比,pocilloporids 的种群恢复速度更快(6 年内),而 Acropora 在受干扰后 8 年仍未完全恢复,这可能是由于较少的年度招募活动和较大的最大群落规模造成的。我们的研究结果凸显了人口统计学指标作为早期恢复指标的价值。
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来源期刊
Coral Reefs
Coral Reefs 生物-海洋与淡水生物学
CiteScore
6.80
自引率
11.40%
发文量
111
审稿时长
4-8 weeks
期刊介绍: Coral Reefs, the Journal of the International Coral Reef Society, presents multidisciplinary literature across the broad fields of reef studies, publishing analytical and theoretical papers on both modern and ancient reefs. These encourage the search for theories about reef structure and dynamics, and the use of experimentation, modeling, quantification and the applied sciences. Coverage includes such subject areas as population dynamics; community ecology of reef organisms; energy and nutrient flows; biogeochemical cycles; physiology of calcification; reef responses to natural and anthropogenic influences; stress markers in reef organisms; behavioural ecology; sedimentology; diagenesis; reef structure and morphology; evolutionary ecology of the reef biota; palaeoceanography of coral reefs and coral islands; reef management and its underlying disciplines; molecular biology and genetics of coral; aetiology of disease in reef-related organisms; reef responses to global change, and more.
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