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Individual Performances and the Interaction Between Arid Land Plants Affected by the Growth Season Water Pulses

机译:生长季节水脉冲影响的旱地植物个体行为与相互作用

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Understanding the effects of rainfall pattern on the plant interactions is a prerequisite for anticipating the effects of climate change on communities and ecosystems. Effects of a change in growth-season rainfall pattern were tested on individual performances, and the interaction between arid land plants. Simulated rain events were applied either as two rains of 20 mm, or as four rains of 10 mm, on natural vegetation of steppe rangelands in Nasr-Abad, Yazd, Iran. Phenotype responses were assessed by measuring the density of annuals and current year growth of perennials. Facilitation effects were assessed by comparing density of annuals in open space and within thesubcanopy of perennials. Competition between perennials was tested using target-neighbor designs. Effects of rain size were more significant than rain frequency. There were linear increases in performances of both annuals and perennials, as the magnitude of pulse sizes increased linearly from zero (control), to 10 and 20 ml per event. Larger rain events led to a shift in relationships between annual and perennials from facilitation to no interactions, and a change in the interaction between perennial plants from no relationship to the competition Accordingly, arid land plant communities showed some potential to buffer the short time effects of climate change, which may occur as variations in the intra-annual rainfall pattern.
机译:了解降雨模式对植物相互作用的影响是预测气候变化对社区和生态系统影响的前提。测试了生长季节降雨模式变化对个体表现以及干旱土地植物之间相互作用的影响。在伊朗亚兹德的纳斯尔-阿巴德的草原牧场的自然植被上,以两次降雨为例,两次降雨为20毫米,两次降雨为10毫米。通过测量多年生植物的年密度和当年生长量来评估表型反应。通过比较开放空间和多年生植物亚冠层内年生植物的密度来评估促进作用。使用目标邻域设计测试了多年生植物之间的竞争。降雨大小的影响比降雨频率更重要。随着脉冲大小的大小从零(对照)线性增加到每个事件10 ml和20 ml,年度和多年生植物的表现均呈线性增加。较大的降雨事件导致一年生植物与多年生植物之间的关系从促进转变为无相互作用,并且多年生植物之间的相互作用从无关系转变为竞争。因此,干旱的陆地植物群落显示出一定的潜力,可以缓解短时间的影响。气候变化,这可能是年内降雨模式的变化。

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