首页> 外文期刊>Journal of Vegetation Science >Two alternatives to the stress-gradient hypothesis at the edge of life: the collapse of facilitation and the switch from facilitation to competition
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Two alternatives to the stress-gradient hypothesis at the edge of life: the collapse of facilitation and the switch from facilitation to competition

机译:生活边缘的压力梯度假说有两种选择:便利化的崩溃和从便利化到竞争的转变

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New evidence demonstrates that facilitation plays a crucial role even at the edge of life in Maritime Antarctica. These findings are interpreted as support for the stress-gradient hypothesis (SGH) - a dominant theory in plant community ecology that predicts that the frequency of facilitation directly increases with stress. A recent development to this theory, however, proposed that facilitation often collapses at the extreme end of stress and physical disturbance gradients. In this paper, we clarify the current debate on the importance of plant interactions at the edge of life by illustrating the necessity of separating the two alternatives to the SGH, namely the collapse of facilitation, and the switch from facilitation to competition occurring in water-stressed ecosystems. These two different alternatives to the SGH are currently often amalgamated with each other, which has led to confusion in recent literature. We propose that the collapse of facilitation is generally due to a decrease in the effect of the nurse plant species, whilst the switch from facilitation to competition is driven by environmental conditions and strategy of the response species. A clear separation between those two alternatives is particularly crucial for predicting the role of plant-plant interactions in mediating species responses to global change.
机译:新证据表明,便利化甚至在南极海洋生活的边缘也起着至关重要的作用。这些发现被解释为支持应力梯度假说(SGH)-植物群落生态学中的一个占主导地位的理论,该理论预测促进的频率随胁迫而直接增加。但是,该理论的最新发展表明,便利化常常在压力和物理干扰梯度的最末端崩溃。在本文中,我们通过阐明将SGH的两种替代方案(即便利化的崩溃和从便利化到竞争的转变)的必要性进行分离,阐明了生命边缘的植物相互作用的重要性的当前辩论。强调生态系统。目前,SGH的这两种不同的替代方案经常相互融合在一起,这在最近的文献中引起了混乱。我们认为,便利化的崩溃通常是由于护士植物物种的影响减弱,而环境条件和应对物种的策略则推动了从便利化向竞争的转变。对于预测植物-植物相互作用在介导物种对全球变化的反应中的作用而言,这两种选择之间的明确分隔特别重要。

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