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Plant guilds drive biomass response to global warming and water availability in subalpine grassland

机译:植物公会推动生物质应对全球变暖,水在亚高山带的可用性草原

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摘要

1. The consequences of global warming and changes in resource availability were investigated in subalpine grasslands in the Pyrenees. These communities are considered to be especially vulnerable to climate change because of their position at the south-western edge of the semi-natural grassland biome in Europe. 2. Changes in patterns of above- and below-ground biomass were assessed for different plant guilds in two experiments, in which turves were transplanted from upland to lowland locations. The first experiment aimed to evaluate general responses to warming and drought, and the second to disentangle the effects of possible underlying mechanisms through resource manipulation by means of a nitrogen x phosphorus fertilization experiment. 3. The increased above-ground biomass in grassland turves transplanted to lowlands suggested that biomass production was more temperature-limited than water-limited. The enhancement effect found in the upland turves following phosphorus addition supported the hypothesis of a strong limitation arising from reduced nutrient availability, confirming the central role played by phosphorus in these grasslands and its potential importance in the response to global change. 4. Nitrogen addition did not stimulate total biomass but affected guild composition. Grasses dominated the uplands and at high resource levels, while forbs dominated the lowlands and when water and nutrients decreased. The counterintuitive effect of increased biomass with decreased water in the lowlands was related to shifts in dominance from grasses to forbs, probably enabled by decreased nutrient availability under drought conditions. 5. Synthesis and applications. Environmental factors interacted in complex ways, producing changes in biomass distribution and guild proportions in subalpine grassland. In addition, the results suggested that the capability of high-altitude grasslands to provide quality forage in summer time could be threatened in the northern Mediterranean region under climate change conditions because of: (i) a decrease in their reliability as a result of complex biomass interactions with temperature, water and nutrient dynamics; (ii) expected feedback mechanisms; and (iii) compositional shifts.
机译:1. 研究了资源可用性的在比利牛斯山亚高山草原。社区被认为是特别因为他们容易受到气候变化西南边缘的位置半野生的草原生物群落在欧洲。2。以上模式的变化和地下对不同的植物公会生物量进行了评估在两个实验中,跑马场移植从高地与低地位置。第一个实验旨在评估一般应对气候变暖,干旱,第二个解决可能的潜在的影响通过资源通过操纵机制x的氮磷施肥实验。在草原泥炭移植到低地表明,生物质生产更多比water-limited temperature-limited。在高地泥炭增强效果随着磷添加支持假设一个强大的限制引起的减少养分有效性确认磷在这些所扮演的重要角色草地和其潜在的重要性对全球变化的反应。没有刺激总生物量但影响公会组成。和高资源水平,而福布斯低地,当水和主导营养成分降低。增加的生物量与降低水的低地与主导地位的变化草牧草,可能通过减少在干旱条件下养分有效性。5. 因素以复杂的方式相互作用,产生生物量分配和公会的变化在亚高山草地比例。结果建议的能力高海拔草地提供质量饲料在夏天时间可能受到威胁北部地中海地区气候改变条件,因为:(i)下降他们的可靠性结果复杂的生物与温度、水和营养物质动力学;(3)成分变化。

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