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Responses of Plant Community Composition and Biomass Production to Warming and Nitrogen Deposition in a Temperate Meadow Ecosystem

机译:温带草甸生态系统植物群落组成和生物量产生对变暖和氮沉降的响应

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摘要

Climate change has profound influences on plant community composition and ecosystem functions. However, its effects on plant community composition and biomass production are not well understood. A four-year field experiment was conducted to examine the effects of warming, nitrogen (N) addition, and their interactions on plant community composition and biomass production in a temperate meadow ecosystem in northeast China. Experimental warming had no significant effect on plant species richness, evenness, and diversity, while N addition highly reduced the species richness and diversity. Warming tended to reduce the importance value of graminoid species but increased the value of forbs, while N addition had the opposite effect. Warming tended to increase the belowground biomass, but had an opposite tendency to decrease the aboveground biomass. The influences of warming on aboveground production were dependent upon precipitation. Experimental warming had little effect on aboveground biomass in the years with higher precipitation, but significantly suppressed aboveground biomass in dry years. Our results suggest that warming had indirect effects on plant production via its effect on the water availability. Nitrogen addition significantly increased above- and below-ground production, suggesting that N is one of the most important limiting factors determining plant productivity in the studied meadow steppe. Significant interactive effects of warming plus N addition on belowground biomass were also detected. Our observations revealed that environmental changes (warming and N deposition) play significant roles in regulating plant community composition and biomass production in temperate meadow steppe ecosystem in northeast China.
机译:气候变化对植物群落组成和生态系统功能具有深远影响。但是,其对植物群落组成和生物量生产的影响尚不清楚。进行了为期四年的田间试验,以研究变暖,氮(N)的添加及其相互作用对中国东北温带草甸生态系统植物群落组成和生物量生产的影响。实验性升温对植物物种的丰富度,均匀度和多样性没有明显影响,而氮的添加极大地降低了物种的丰富度和多样性。变暖趋向于降低类线虫物种的重要性值,但增加了Forbs的价值,而添加N则相反。变暖趋向于增加地下生物量,但具有减少地下生物量的相反趋势。变暖对地上产量的影响取决于降水量。在降水较高的年份,实验性增温对地上生物量影响不大,但在干旱年份,地表生物量受到显着抑制。我们的结果表明,变暖通过对水的有效利用而间接影响植物的生产。氮的添加显着增加了地上和地下的产量,这表明氮是决定所研究草甸草原植物生产力的最重要限制因素之一。还检测到变暖加氮对地下生物量的显着交互作用。我们的观察表明,环境变化(变暖和氮沉降)在调节中国东北温带草原草原生态系统的植物群落组成和生物量生产中发挥着重要作用。

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