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Balancing maximum sustainable yield and ecological resilience in an exploited two-predator one-prey system

机译:在利用的双捕食者单猎物系统中平衡最大的可持续产量和生态弹性

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摘要

In this paper, we consider a two-predator one-prey system to determine the feedback of exploitation in individual as well as joint population levels. As balancing yield with resilience is highly essential for the conservation of species in the marine ecosystem, here we measure both the maximum sustainable yield (MSY) and resilience simultaneously. Then we investigate both the trade-offs and synergies among maximum yield, conservation, and resilience that emerge from different harvesting plans. It is found that for single species harvesting, a prey species-oriented system is capable of producing more yield in compare to any predator-oriented system but for resilience, a prey species-oriented system is far behind the others. In the case of joint harvesting of all the species, it is observed that the first predator-oriented system has a better ability to absorb the disturbances than the other cases. The correlation between yield and resilience at the MSY level is studied in all the cases. It is further observed that the increase of intraspecific competition in the predator decreases the risk of sustainability. In this way, this study may be helpful for fishery management to fulfill their goals without affecting the ecosystem's health in the long run.
机译:在本文中,我们考虑了一个双捕食者单猎物系统,以确定个人中的利用以及联合人口水平的反馈。随着韧性的平衡产量对于海洋生态系统中的物种守恒来说是非常重要的,在这里,我们可以同时测量最大可持续产量(MSY)和弹性。然后我们调查从不同收获计划中出现的最大收益率,保护和弹性之间的权衡和协同作用。结果发现,对于单一物种收获,捕食物种的系统能够与任何导向的任何捕食者的系统相比,产生更多的产量,而是为了弹性,猎物所需的系统远远落后于其他系统。在关节收获所有物种的情况下,观察到第一捕食者的系统具有更好的吸收干扰能力而不是其他案例。在所有情况下,研究了MSY水平的产量和弹性之间的相关性。进一步观察到,捕食者中的内心竞争的增加降低了可持续性的风险。通过这种方式,这项研究可能有助于渔业管理层在长远来看,在不影响生态系统的健康的情况下实现目标。

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