首页> 外文期刊>The Journal of Ecology >Ecological and evolutionary lability of plant traits affecting carbon and nutrient cycling. (Special Feature: The tree of life in ecosystems: evolution of plant effects on carbon and nutrient cycling.)
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Ecological and evolutionary lability of plant traits affecting carbon and nutrient cycling. (Special Feature: The tree of life in ecosystems: evolution of plant effects on carbon and nutrient cycling.)

机译:影响碳和养分循环的植物性状的生态和进化不稳定性。 (专着:生态系统中的生命之树:植物对碳和养分循环的影响的演变。)

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摘要

Efforts to understand the effects of plant traits on carbon and nutrient cycling have recently focused on species variation and the potential for species data to improve predictions of past, present and future variation in ecosystems. However, the evolutionary lability of relevant traits among closely related species and the extent of intraspecific variation warrant further consideration. Here, we examine interspecific and intraspecific variation in leaf N, LMA, root N and SRL at multiple scales, using Helianthus as a representative study system. Substantial evolutionary lability of traits is demonstrated by interspecific variation in phylogenetically explicit analyses of closely related Helianthus species, and population differentiation of wild H. anomalus and cultivated H. annuus. Intraspecific variation in leaf N and LMA, including genetic, environmental and ontogenetic responses, demonstrates that trait values for a single species can encompass a surprisingly large portion of the range encompassed by species in the leaf economics spectrum. Synthesis. We recommend using data from selected natural populations to model effects of leaf N and LMA on decomposition, while using data from common garden experiments to determine evolutionary lability and thus inform potential for evolutionary change. If the high evolutionary lability of traits demonstrated for Helianthus is found for other important genera, this would suggest that these key ecophysiological traits are likely to respond to the selective pressures of global climate and land-use change. We recommend using data from selected natural populations to model effects of leaf N and LMA on decomposition, while using data from common garden experiments to determine evolutionary lability and thus inform potential for evolutionary change. If the high evolutionary lability of traits demonstrated for Helianthus is found for other important genera, this would suggest that these key ecophysiological traits are likely to respond to the selective pressures of global climate and land-use change.
机译:理解植物性状对碳和养分循环的影响的努力最近集中在物种变异以及物种数据改善生态系统过去,现在和未来变异的预测的潜力上。但是,密切相关物种之间相关性状的进化不稳定性和种内变异的程度值得进一步考虑。在这里,我们使用向日葵作为代表研究系统,以多个尺度研究了叶片N,LMA,根N和SRL的种间和种内变异。通过对密切相关的向日葵物种进行系统发育显性分析的种间变异,以及野生H. anomalus和栽培H. annuus的种群分化,证明了这些性状具有相当大的进化不稳定性。叶片N和LMA的种内变异,包括遗传,环境和个体发育反应,表明单个物种的性状值可以涵盖叶片经济学范围内物种所涵盖范围的令人惊讶的很大一部分。合成。我们建议使用来自选定自然种群的数据来模拟叶片N和LMA对分解的影响,同时使用来自普通花园实验的数据来确定进化的不稳定性,从而为进化变化提供潜在的信息。如果在其他重要属中发现了向日葵的性状表现出的高度进化不稳定性,则表明这些关键的生态生理性状可能会响应全球气候和土地利用变化的选择性压力。我们建议使用来自选定自然种群的数据来模拟叶片N和LMA对分解的影响,同时使用来自普通花园实验的数据来确定进化的不稳定性,从而为进化变化提供潜在的信息。如果在其他重要属中发现了向日葵的性状表现出的高度进化不稳定性,则表明这些关键的生态生理性状可能会响应全球气候和土地利用变化的选择性压力。

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