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Global change alters the stability of food webs

机译:全球变化改变了食物网的稳定性

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Recent research has generally shown that a small change in the number of species in a food web can have consequences both for community structure and ecosystem processes. However 'change' is not limited to just the number of species in a community, but might include an alteration to such properties as precipitation, nutrient cycling and temperature. How such changes might affect species interactions is important, not just through the presence or absence of interactions, but also because the patterning of interaction strengths among species is intimately associated with community stability. Interaction strengths encompass such properties as feeding rates and assimilation efficiencies, and encapsulate functionally important information with regard to ecosystem processes. Interaction strengths represent the pathways and transfer of energy through an ecosystem. We review the best empirical data available detailing the frequency distribution of interaction strengths in communities. We present the underlying (but consistent) pattern of species interactions and discuss the implications of this patterning. We then examine how such a basic pattern might be affected given various scenarios of 'change' and discuss the consequences for community stability and ecosystem functioning.
机译:最近的研究通常表明,食物网中物种数量的微小变化会对社区结构和生态系统过程产生影响。但是,“变化”不仅限于社区中物种的数量,还可能包括诸如降水,养分循环和温度等特性的变化。这种变化如何影响物种相互作用非常重要,这不仅是通过相互作用的存在与否,而且是因为物种之间相互作用强度的模式与群落稳定性密切相关。相互作用强度包括进食速度和吸收效率等特性,并封装了有关生态系统过程的重要功能信息。相互作用强度代表能量通过生态系统的路径和传递。我们回顾了可得的最佳经验数据,详细说明了社区中互动强度的频率分布。我们介绍了物种相互作用的基本(但一致)模式,并讨论了这种模式的含义。然后,我们研究了在各种“变化”情况下如何影响这种基本模式,并讨论了对社区稳定和生态系统功能的影响。

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