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大型海藻毒性和过度捕捞影响下珊瑚礁的滞后现象

Hysteresis in coral reefs under macroalgal toxicity and overfishing.

作者信息

Bhattacharyya Joydeb, Pal Samares

机构信息

Department of Mathematics, University of Kalyani, Kalyani, 741235, India,

出版信息

J Biol Phys. 2015 Mar;41(2):151-72. doi: 10.1007/s10867-014-9371-y. Epub 2015 Feb 24.

Abstract

Macroalgae and corals compete for the available space in coral reef ecosystems.While herbivorous reef fish play a beneficial role in decreasing the growth of macroalgae, macroalgal toxicity and overfishing of herbivores leads to proliferation of macroalgae. The abundance of macroalgae changes the community structure towards a macroalgae-dominated reef ecosystem. We investigate coral-macroalgal phase shifts by means of a continuous time model in a food chain. Conditions for local asymptotic stability of steady states are derived. It is observed that in the presence of macroalgal toxicity and overfishing, the system exhibits hysteresis through saddle-node bifurcation and transcritical bifurcation. We examine the effects of time lags in the liberation of toxins by macroalgae and the recovery of algal turf in response to grazing of herbivores on macroalgae by performing equilibrium and stability analyses of delay-differential forms of the ODE model. Computer simulations have been carried out to illustrate the different analytical results.

摘要

大型海藻和珊瑚在珊瑚礁生态系统中争夺可用空间。虽然草食性礁鱼在减少大型海藻生长方面发挥着有益作用,但大型海藻的毒性以及对草食动物的过度捕捞导致大型海藻大量繁殖。大型海藻的丰富度使群落结构朝着以大型海藻为主导的礁生态系统转变。我们通过食物链中的连续时间模型研究珊瑚 - 大型海藻的相变。推导了稳态局部渐近稳定性的条件。据观察,在存在大型海藻毒性和过度捕捞的情况下,系统通过鞍结分岔和跨临界分岔表现出滞后现象。我们通过对常微分方程(ODE)模型的延迟微分形式进行平衡和稳定性分析,研究大型海藻释放毒素的时间滞后以及藻类草皮响应草食动物对大型海藻的啃食而恢复的时间滞后的影响。已进行计算机模拟以说明不同的分析结果。

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