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首页> 外文期刊>Global change biology >Shifting grassland plant community structure drives positive interactive effects of warming and diversity on aboveground net primary productivity
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Shifting grassland plant community structure drives positive interactive effects of warming and diversity on aboveground net primary productivity

机译:草地植物群落结构的变化驱动了变暖和多样性对地上净初级生产力的积极互动影响

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摘要

Ecosystems worldwide are increasingly impacted by multiple drivers of environmental change, including climate warming and loss of biodiversity. We show, using a long-term factorial experiment, that plant diversity loss alters the effects of warming on productivity. Aboveground primary productivity was increased by both high plant diversity and warming, and, in concert, warming (approximate to 1.5 degrees C average above and belowground warming over the growing season) and diversity caused a greater than additive increase in aboveground productivity. The aboveground warming effects increased over time, particularly at higher levels of diversity, perhaps because of warming-induced increases in legume and C4 bunch grass abundances, and facilitative feedbacks of these species on productivity. Moreover, higher plant diversity was associated with the amelioration of warming-induced environmental conditions. This led to cooler temperatures, decreased vapor pressure deficit, and increased surface soil moisture in higher diversity communities. Root biomass (0-30cm) was likewise consistently greater at higher plant diversity and was greater with warming in monocultures and at intermediate diversity, but at high diversity warming had no detectable effect. This may be because warming increased the abundance of legumes, which have lower root:shoot ratios than the other types of plants. In addition, legumes increase soil nitrogen (N) supply, which could make N less limiting to other species and potentially decrease their investment in roots. The negative warmingxdiversity interaction on root mass led to an overall negative interactive effect of these two global change factors on the sum of above and belowground biomass, and thus likely on total plant carbon stores. In total, plant diversity increased the effect of warming on aboveground net productivity and moderated the effect on root mass. These divergent effects suggest that warming and changes in plant diversity are likely to have both interactive and divergent impacts on various aspects of ecosystem functioning.
机译:全世界的生态系统越来越受到环境变化的多种驱动因素的影响,其中包括气候变暖和生物多样性的丧失。我们通过长期的因子分解实验表明,植物多样性的丧失改变了升温对生产力的影响。较高的植物多样性和变暖提高了地上初级生产力,同时,变暖(整个生长季节地上和地下变暖的平均水平约为1.5摄氏度)和多样性导致地上生产力的增加大于添加。地上变暖的影响随着时间的推移而增加,特别是在较高的多样性水平上,这可能是由于变暖引起的豆类和C4束草的丰度增加,以及这些物种对生产力的有利反馈。此外,较高的植物多样性与变暖引起的环境条件的改善有关。这导致了较高的多样性社区中温度更低,蒸气压赤字减少和表层土壤水分增加。在较高的植物多样性下,根生物量(0-30cm)同样始终较高,在单一栽培和中间多样性下,随着升温,其根系生物量也更大,但在高多样性下,没有可察觉的影响。这可能是因为变暖增加了豆科植物的数量,而豆科植物的根:茎比要比其他类型的植物低。另外,豆类增加了土壤氮的供应,这可能使氮对其他物种的限制减少,并有可能减少其对根的投资。根系质量的负增温-多样性相互作用导致这两个全球变化因子对地上和地下生物量之和的总体负性相互作用,从而可能对植物总碳储量产生负面影响。总体而言,植物多样性增加了升温对地上净生产力的影响,并减轻了对根质量的影响。这些不同的影响表明,变暖和植物多样性的变化可能对生态系统功能的各个方面产生互动和不同的影响。

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