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Modeling the role of marine protected areas on the recovery of shallow rocky reef ecosystem after a catastrophic submarine volcanic eruption

机译:模拟海洋保护区对灾难性海底火山爆发后浅岩礁生态系统恢复的作用

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Modeling is a useful approach to learn about the capacity of the systems to recover after disturbances. In October 2011, a submarine volcanic eruption in The Punta Restinga-Mar de Las Calmas Marine Protected Area (RMC-MPA) caused catastrophic mass mortality. We modeled the recovery dynamics of the fully protected (no-take zone), partially protected (buffer zone), and unprotected (fished zone) areas to evaluate their resilience and their potential to restore fishing resources. Recovery varied with species and levels of protection. Benthic macroalgae and parrotfish populations recovered the fastest. Piscivore fishes, macroinvertebrate feeders, and macroinvertebrate detritivores required more extended recovery periods. The levels of protection played a significant role in recovery, with the no-take zone showing more resilience than the buffer and fished zones. Our results suggest that no-take zones are crucial in the recovery process after catastrophic events. Regular monitoring of benthic communities provided the necessary data to model these communities and to point to the regulation of the artisanal fleet activity in restricted fishing areas as a mechanism to further enhance the recovery of fishing stocks.
机译:建模是了解系统在干扰后恢复的能力的有用方法。 2011年10月,蓬塔雷廷加-滨海拉斯卡马斯海洋保护区(RMC-MPA)的海底火山喷发造成了灾难性的大规模死亡。我们对完全受保护(无采伐区),部分受保护(缓冲区)和未受保护(捕捞区)区域的恢复动态进行了建模,以评估其复原力和恢复捕捞资源的潜力。恢复程度随物种和保护级别的不同而不同。底栖大型藻类和鹦嘴鱼种群恢复最快。食肉动物的鱼类,大型无脊椎动物的摄食动物和大型无脊椎动物的碎屑动物需要更长的恢复时间。保护水平在恢复中起着重要作用,禁区显示出比缓冲区和捕捞区更大的复原力。我们的结果表明,禁区对于灾难性事件后的恢复过程至关重要。对底栖生物群落的定期监测提供了必要的数据,以对这些群落进行建模,并指出了对受限捕捞区域手工船队活动的监管,以此作为进一步加强捕捞种群恢复的机制。

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