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首页> 外文期刊>Global change biology >The importance of biotic interactions and local adaptation for plant response to environmental changes: field evidence along an elevational gradient.
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The importance of biotic interactions and local adaptation for plant response to environmental changes: field evidence along an elevational gradient.

机译:生物相互作用和局部适应对于植物对环境变化的响应的重要性:沿海拔梯度的实地证据。

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Predicting the response of species to environmental changes is a great and on-going challenge for ecologists, and this requires a more in-depth understanding of the importance of biotic interactions and the population structuration in the landscape. Using a reciprocal transplantation experiment, we tested the response of five species to an elevational gradient. This was combined to a neighbour removal treatment to test the importance of local adaptation and biotic interactions. The trait studied was performance measured as survival and biomass. Species response varied along the elevational gradient, but with no consistent pattern. Performance of species was influenced by environmental conditions occurring locally at each site, as well as by positive or negative effects of the surrounding vegetation. Indeed, we observed a shift from competition for biomass to facilitation for survival as a response to the increase in environmental stress occurring in the different sites. Unlike previous studies pointing out an increase of stress along the elevation gradient, our results supported a stress gradient related to water availability, which was not strictly parallel to the elevational gradient. For three of our species, we observed a greater biomass production for the population coming from the site where the species was dominant (central population) compared to population sampled at the limit of the distribution (marginal population). Nevertheless, we did not observe any pattern of local adaptation that could indicate adaptation of populations to a particular habitat. Altogether, our results highlighted the great ability of plant species to cope with environmental changes, with no local adaptation and great variability in response to local conditions. Our study confirms the importance of taking into account biotic interactions and population structure occurring at local scale in the prediction of communities' responses to global environmental changes.
机译:对于生态学家来说,预测物种对环境变化的响应是一项巨大而持续的挑战,这需要对生物相互作用和景观中种群结构的重要性有更深入的了解。使用相互移植实验,我们测试了五种物种对海拔梯度的响应。将其与邻居去除处理结合起来以测试局部适应和生物相互作用的重要性。研究的性状是作为存活率和生物量测量的性能。物种响应沿海拔梯度变化,但是没有一致的模式。物种的表现受到每个地点局部发生的环境条件以及周围植被的积极或消极影响的影响。确实,我们观察到从对生物质的竞争到对生存的促进,这是对在不同地点发生的环境压力增加的反应。与先前的研究指出应力沿高度梯度增加不同,我们的研究结果支持了与水利用量相关的应力梯度,该应力梯度并不严格与高度梯度平行。对于我们的三个物种,与在分布极限处采样的种群(边缘种群)相比,我们观察到来自该物种占主导地位的种群(中心种群)的生物量产量更高。然而,我们没有观察到任何可以表明种群适应特定生境的本地适应模式。总而言之,我们的结果强调了植物物种应对环境变化的强大能力,没有局部适应性,并且对局部条件的响应也存在很大差异。我们的研究证实了在预测社区对全球环境变化的响应时,考虑到地方规模上发生的生物相互作用和种群结构的重要性。

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