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Temperature accelerates the rate fields become forests

机译:温度加快了田间成林的速度

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摘要

Secondary succession, the postdisturbance transition of herbaceous to woody-dominated ecosystems, occurs faster at lower latitudes with important ramifications for ecosystem processes. This pattern could be driven by the direct effect of temperature on tree growth; however, an alternative mechanism is tree–herb competition, which may be more intense in more fertile northern soils. We manipulated soil fertility and herbaceous species composition in identical experiments at six sites spanning the Eastern United States (30–43° N) and monitored the growth and survival of four early successional trees. Tree seedling mass 2 years after sowing was strongly associated with site differences in mean growing season temperature, regardless of species or soil treatment. The effect of temperature was twofold: seedlings grew faster in response to warmer site temperatures, but also due to the reduction of competitive interference from the herbaceous community, which was inhibited in warmer sites. Our results suggest that increasing temperatures will promote a faster transition of fields to forests in temperate ecosystems.
机译:次生演替是从草本到木本为主的生态系统的扰动后过渡,在低纬度地区发生得更快,并对生态系统过程产生重要影响。温度对树木生长的直接影响可以驱动这种模式。然而,另一种机制是树—草竞争,在更肥沃的北方土壤中竞争可能更加激烈。我们在横跨美国东部(30-43°N)的六个地点进行的相同实验中,操纵了土壤肥力和草本物种组成,并监测了四棵早期演替树木的生长和存活。播种2年后的树木幼苗质量与平均生长季节温度的部位差异密切相关,而与物种或土壤处理方式无关。温度的影响是双重的:随着温度升高,幼苗生长更快,这也是由于减少了来自草本群落的竞争干扰,而在较温暖的位置受到抑制。我们的结果表明,温度升高将促进温带生态系统中的田地更快地过渡到森林。

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