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Shifting interaction strength between estuarine mysid species across a temperature gradient

机译:跨温度梯度的河口类蝇id类物种之间的相互作用强度转移

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In many coastal regions, mean coastal atmospheric and water temperatures are projected to shift as climate change ensues. Interaction strengths between organisms are likely to change along with environmental changes, given interspecific heterogeneity in responses to physico-chemical variables. Biological interaction outcomes have the potential to alter food web production and trophic level biomass distribution. This is particularly pertinent for key species that are either abundant or play disproportionately large roles in ecosystem processes. Using a functional response approach, we quantified the effects of shifting temperatures on interactions between key mysid species-sympatric in their distribution across a biogeographic transition zone along the east coast of South Africa. TheRhopalophthalmus terranatalisfunctional response type towardMesopodopsis wooldridgeiprey was independent of temperature, with all treatments producing Type II functional responses. Temperature effects on predator-prey dynamics were, however, evident as interaction strength was greatest at 21 °C, as measured by maximum feeding rates. Unlike maximum feeding rate, attack rates increased linearly with increasing temperature across the experimental treatments. Our findings suggest that interaction strength between the mysid shrimp species is likely to vary spatially along the current length of their sympatric distribution and temporally in certain regions where temperatures are projected to change. Such experimental interaction investigations are becoming increasingly important given our relatively poor understanding of the consequences of environmental change for effects on interactions among species and their wider ecosystem implications.
机译:在许多沿海地区,随着气候变化的发生,预计沿海平均大气温度和水温将发生变化。考虑到对理化变量的种间异质性,生物之间的相互作用强度可能会随环境变化而变化。生物相互作用的结果有可能改变食物网的产量和营养级生物量的分布。这对于在生态系统过程中数量丰富或起着不成比例重要作用的关键物种尤其重要。使用功能响应方法,我们量化了温度变化对关键的象鼻类-同胞同伴在整个南非东海岸生物地理过渡区分布的相互作用的影响。毛状拟中螺的对生红景天是功能性反应类型,与温度无关,所有处理均产生II型功能性反应。然而,温度对捕食者-猎物动力学的影响是明显的,因为通过最大摄食速率测得,相互作用强度在21°C时最大。与最大进料速率不同,在整个实验处理过程中,侵袭率会随着温度的升高而线性增加。我们的研究结果表明,虾类物种之间的相互作用强度可能会沿同胞分布的当前长度在空间上发生变化,而在某些预计温度会发生变化的区域中则可能在时间上发生变化。鉴于我们对环境变化对物种之间的相互作用及其更广泛的生态系统影响的影响的理解相对较差,这种实验性相互作用研究变得越来越重要。

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