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Modelling changes in trophic and structural impacts of alien ecosystem engineers on a rocky-shore island

机译:岩岸岛外星生态系统工程师营养和结构影响的模拟变化

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摘要

Between 1980 and 2012, successive arrivals by three alien ecosystem engineers on a rocky shore community at Marcus Island on the west coast of South Africa led to substantial changes in species composition and diversity. An ecosystem analysis of this open intertidal system was developed using Ecopath with Ecosim to determine the impacts of these aliens and the services they provide on the native community. A baseline Ecopath model of the community in 2015 was generated using values of biomass, pro-duction/biomass, consumption/biomass and the dietary composition of 30 functional groups. Ecosim, a time-dynamic modelling routine, was then used to simulate the changes in biomass of native species. A 1980 model (pre-invasion) was constructed and 22 simulations were run up to 2015 by systematically adding (1) biomass time series for non-native species; (2) relative biomass time series for native species; (3) mediation functions that mimicked biomass impacts due to changes in substrate, shelter and feeding grounds created by the alien ecosystem engineers; and (4) the effects of wave action as a source of mortality. Positive or negative influences of these ecological processes on diversity and the final biomasses of all groups in 2015 were assessed. Trophic impacts by the alien species affected diversity and biomass at the end of all simulations, but the addition of shelter or a combination of all three ecosystem services provided by ecosystem engineers (shelter, substrate and feeding grounds) resulted in 2015 model ecosystems that most closely matched the diversity and individual group biomasses empirically measured on Marcus Island in 2015. Wave action had only a minor impact. Marcus Island's rocky shore community was therefore driven mainly by the fixed input of alien species biomass and made more realistic by the incorporation of their ecosystem services. However, structural complexity and zonation, explored in a follow-up paper invoking spatial modelling, need to be represented for a more complete realisation of the ecosystem.
机译:在1980年至2012年间,在南非西海岸的马库斯岛上的三个外来生态系统工程师的连续抵达Marcus岛上导致物种组成和多样性的大量变化。使用EcoPath与Ecosim开发了这种开放式跨天度系统的生态系统分析,以确定这些外星人的影响以及他们在本地社区上提供的服务。利用生物质,产量/生物质,消费/生物质和30个官能团的膳食组成,产生2015年社区的基线Ecopath模型。然后使用ECOSIM,一种时间动态建模程序,用于模拟天然物种生物量的变化。建造了1980年(预侵入),通过系统地添加(1)用于非本地物种的生物量时间序列,22种模拟达到2015年; (2)本地物种的相对生物量序列; (3)由于外国生态系统工程师创建的基板,住房和喂养场的变化,模仿生物量影响的调解函数; (4)波动作的影响作为死亡率。评估了这些生态过程对2015年所有群体的多样性和最终生物量的正面或负面影响。外来物种在所有模拟结束时受到异种物种的营养因素影响,但添加了庇护所或通过生态系统工程师(住房,基板和喂料地)提供的所有三个生态系统服务的组合导致2015年模型生态系统最密切匹配2015年Marcus岛上经验衡量的多样性和个体组生物量。波动率只是一个微小的影响。因此,马库斯岛的岩石岸社区主要由外星物种生物量的固定输入驱动,并通过纳入其生态系统服务来制造更加令人逼真。然而,在调用空间建模的后续纸张中探讨的结构复杂性和分区,需要表示为生态系统的更完全实现。

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  • 来源
    《Oceanographic Literature Review》 |2020年第9期|1985-1986|共2页
  • 作者单位

    Department of Biological Sciences and Marine Research Institute University of Cape Town Private Bag X2 Rondebosch 7701 South Africa;

    Department of Biological Sciences and Marine Research Institute University of Cape Town Private Bag X2 Rondebosch 7701 South Africa;

    Department of Biological Sciences and Marine Research Institute University of Cape Town Private Bag X2 Rondebosch 7701 South Africa;

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