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首页> 外文期刊>Global change biology >Climate change effects on plant biomass alter dominance patterns and community evenness in an experimental old-field ecosystem.
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Climate change effects on plant biomass alter dominance patterns and community evenness in an experimental old-field ecosystem.

机译:气候变化对植物生物量的影响改变了实验性老田生态系统中的优势模式和群落均匀度。

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Atmospheric and climatic change can alter plant biomass production and plant community composition. However, we know little about how climate change-induced alterations in biomass production affect plant species composition. To better understand how climate change will alter both individual plant species and community biomass, we manipulated atmospheric [CO2], air temperature, and precipitation in a constructed old-field ecosystem. Specifically, we compared the responses of dominant and subdominant species to our climatic treatments, and explored how changes in plant dominance patterns alter community evenness over 2 years. Our study resulted in four major findings: (1) all treatments, elevated [CO2], warming, and increased precipitation increased plant community biomass and the effects were additive rather than interactive, (2) plant species differed in their response to the treatments, resulting in shifts in the proportional biomass of individual species, which altered the plant community composition; however, the plant community response was largely driven by the positive precipitation response of Lespedeza, the most dominant species in the community, (3) precipitation explained most of the variation in plant community composition among treatments, and (4) changes in precipitation caused a shift in the dominant species proportional biomass that resulted in lower community evenness in the wet relative to dry treatments. Interestingly, compositional and evenness responses of the subdominant community to the treatments did not always follow the responses of the whole plant community. Our data suggest that changes in plant dominance patterns and community evenness are an important part of community responses to climatic change, and generally, that such compositional shifts can alter ecosystem biomass production and nutrient inputs.
机译:大气和气候变化会改变植物生物量的产生和植物群落的组成。但是,我们几乎不了解气候变化导致的生物量生产变化如何影响植物物种组成。为了更好地了解气候变化将如何改变单个植物物种和群落生物量,我们在一个已构建的旧田地生态系统中操纵了大气[CO 2 ],气温和降水。具体来说,我们比较了优势物种和优势物种对我们的气候处理的反应,并探索了植物优势模式的变化如何在两年内改变了社区的均匀度。我们的研究得出了四个主要发现:(1)所有处理,[CO 2 ]升高,变暖和降水增加均增加了植物群落生物量,其影响是累加而非互动,(2)植物种类它们对处理的反应不同,导致单个物种的比例生物量发生变化,从而改变了植物群落的组成;但是,植物群落的响应很大程度上是由群落中最主要的物种 Lespedeza 的正降水响应驱动的;(3)降水解释了处理之间植物群落组成的大部分变化,并且( 4)降水变化导致优势物种比例生物量发生变化,这导致相对于干法处理,湿润的群落均匀度降低。有趣的是,主要群落对处理的组成和均匀性响应并不总是跟随整个植物群落的响应。我们的数据表明,植物优势模式和群落均匀性的变化是群落对气候变化的重要反应,而且总体而言,这种成分变化会改变生态系统的生物量生产和营养输入。

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