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首页> 外文期刊>Evolutionary Ecology >Resource transport between ramets alters soil resource pattern: a simulation study on clonal growth
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Resource transport between ramets alters soil resource pattern: a simulation study on clonal growth

机译:分株间的资源迁移改变土壤资源格局:克隆生长的模拟研究

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摘要

Clonal plants spread horizontally, and can transport nutrients between ramets. Decaying biomass feeds back nutrients into the soil, but importantly, the place of deposition may differ from the place of uptake. To our knowledge, the present model is the first attempt to couple population dynamics with resource dynamics with the consideration of lateral transport. The simulations start from various initial resource patterns. Six types of clonal plants are compared, which differ in the birth and survival rates of ramets. Size of the ramet population and the amount of translocated resource are recorded over time. In addition, we consider the pattern of gaps in the canopy of the clonal plant from the aspect of two colonizer species: a strong and a weak competitor. The results suggest that the most important factor determining the impact of a clonal plant on its environment is ramet survival; the rate of ramet production is only secondary. Phenotypic plasticity in the production of ramets does not appearto be important: it has only minor effect on resource translocation and on the availability of colo-nizable gaps,
机译:克隆植物水平分布,可以在分株之间运输养分。腐烂的生物质将养分反馈到土壤中,但重要的是,沉积的位置可能与吸收的位置不同。据我们所知,本模型是在考虑横向运输的情况下将人口动态与资源动态耦合的首次尝试。模拟从各种初始资源模式开始。比较了六种类型的克隆植物,它们在分株的出生和成活率上有所不同。随着时间的推移,记录了分株种群的数量和易位资源的数量。另外,我们从两个定植者物种:强竞争者和弱竞争者的角度考虑了克隆植物冠层间隙的模式。结果表明决定克隆植物对其环境影响的最重要因素是分株存活。分株产量仅次于。分株生产中的表型可塑性似乎并不重要:它对资源转移和可分配可利用的缺口的可用性影响很小,

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