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Seaweed-Coral Interactions: Variance in Seaweed Allelopathy Coral Susceptibility and Potential Effects on Coral Resilience

机译:海藻与珊瑚的相互作用:海藻化感作用珊瑚易感性以及对珊瑚弹性的潜在影响的差异

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摘要

Tropical reefs are in global decline with seaweeds commonly replacing corals. Negative associations between macroalgae and corals are well documented, but the mechanisms involved, the dynamics of the interactions, and variance in effects of different macroalgal-coral pairings are poorly investigated. We assessed the frequency, magnitude, and dynamics of macroalgal-coral competition involving allelopathic and non-allelopathic macroalgae on three, spatially grouped pairs of no-take Marine Protected Areas (MPAs) and non-MPAs in Fiji. In non-MPAs, biomass of herbivorous fishes was 70–80% lower, macroalgal cover 4–9 fold higher, macroalgal-coral contacts 5–15 fold more frequent and 23–67 fold more extensive (measured as % of colony margin contacted by macroalgae), and coral cover 51–68% lower than in MPAs. Coral contacts with allelopathic macroalgae occurred less frequently than expected by chance across all sites, while contact with non-allelopathic macroalgae tended to occur more frequently than expected. Transplants of allelopathic macroalgae (Chlorodesmis fastigiata and Galaxaura filamentosa) against coral edges inflicted damage to Acropora aspera and Pocillopora damicornis more rapidly and extensively than to Porites cylindrica and Porites lobata, which appeared more resistant to these macroalgae. Montipora digitata experienced intermediate damage. Extent of damage from macroalgal contact was independent of coral colony size for each of the 10 macroalgal-coral pairings we established. When natural contacts with Galaxaura filamentosa were removed in the field, recovery was rapid for Porites lobata, but Pocillopora damicornis did not recover and damage continued to expand. As macroalgae increase on overfished tropical reefs, allelopathy could produce feedbacks that suppress coral resilience, prevent coral recovery, and promote the stability of algal beds in habitats previously available to corals.
机译:热带珊瑚礁正在全球范围内衰退,海藻通常替代了珊瑚。大型藻类与珊瑚之间的负相关性已有大量文献记载,但对涉及的机理,相互作用的动力学以及不同大型藻类-珊瑚配对的影响差异的研究很少。我们评估了斐济三类按空间分组的非采捕性海洋保护区和非动植物保护区上涉及化感和非化感性大型藻类的大型藻类-珊瑚竞争的频率,强度和动态。在非海洋保护区中,草食性鱼类的生物量降低70-80%,大型藻类覆盖度提高4-9倍,大型藻类与珊瑚的接触频率提高5-15倍,范围扩大23-67倍(以大型藻类),珊瑚覆盖率比MPA低51–68%。在所有地点,与化感性大藻类发生珊瑚接触的频率均低于偶然发生的频率,而与非化感性大藻类发生接触的频率高于预期。对珊瑚边缘的化感巨藻(Chlorodesmis fastigiata和Galaxaurafilosa)的移植比对圆孔珊瑚和多孔叶珊瑚更迅速,更广泛地破坏了对阿科罗珀阿斯珀拉菌和破孔波利斯的伤害,后者似乎对这些大型藻类具有更强的抵抗力。数指蒙彼托拉遭受了中度伤害。对于我们建立的10个大藻类-珊瑚配对,大藻类接触造成的破坏程度与珊瑚菌落大小无关。当在田间去除了与Galaxaurafilaosa的自然接触时,Porites lobata的恢复很快,但是Pocillopora damicornis却没有恢复,伤害继续扩大。随着过度捕捞的热带珊瑚礁上大型藻类数量的增加,化感作用可能会产生反馈,从而抑制珊瑚的复原力,阻止珊瑚的恢复并促进以前珊瑚可利用的生境中藻类床的稳定性。

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  • 总页数 12
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