Suppr超能文献

捕食者-猎物反转:北海生态系统滞后的一种可能机制?

Predator-prey reversal: a possible mechanism for ecosystem hysteresis in the North Sea?

机构信息

Norwegian Institute for Nature Research (NINA), Arctic Ecology Department, Polar Environmental Centre, N-9296 Tromsø, Norway.

出版信息

Ecology. 2010 Aug;91(8):2191-7. doi: 10.1890/09-1500.1.

Abstract

Removal of large predatory fishes from marine ecosystems has resulted in persistent ecosystem shifts, with collapsed predator populations and super-abundant prey populations. One explanation for these shifts is reversals of predator-prey roles that generate internal feedbacks in the ecosystems. Pelagic forage fish are often predators and competitors to the young life stages of their larger fish predators. I show that cod recruitment in the North Sea has been negatively related to the spawning-stock biomass of herring for the last 44 years. Herring, together with the abundance of Calanus finmarchicus, the major food for cod larvae, were the main predictors of cod recruitment. These predictors were of equivalent importance, worked additively, and explained different parts of the dynamics in cod recruitment. I suggest that intensive harvesting of cod has released herring from predator control, and that a large population of herring suppresses cod recruitment through predation on eggs and larvae. This feedback mechanism can promote alternative stable states and therefore cause hysteresis to occur under changing conditions; however, harvesting of herring might at present prevent a shift in the ecosystem to a herring-dominated state.

摘要

从海洋生态系统中移除大型掠食性鱼类会导致持续的生态系统转变,即掠食者种群减少,而猎物种群过剩。这些转变的一个解释是,捕食者-猎物角色的逆转会在生态系统中产生内部反馈。洄游性饵料鱼通常是其较大鱼类捕食者的幼鱼阶段的捕食者和竞争者。我发现,过去 44 年来,北海鳕鱼的补充群体数量与鲱鱼的产卵群体生物量呈负相关。鲱鱼及其主要食物——桡足类的丰度是鳕鱼幼鱼补充群体的主要预测因素。这些预测因素同等重要,具有加性作用,并解释了鳕鱼补充群体动态的不同部分。我认为,对鳕鱼的密集捕捞已经使其摆脱了捕食者的控制,而大量的鲱鱼通过捕食鳕鱼的卵和幼鱼来抑制鳕鱼的补充群体数量。这种反馈机制可以促进替代稳定状态的出现,因此在条件变化下会导致滞后现象;然而,目前对鲱鱼的捕捞可能会阻止生态系统向以鲱鱼为主导的状态转变。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验