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首页> 外文期刊>Journal of Vegetation Science >Correlations between genetic and species diversity: effects of resource quantity and heterogeneity.
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Correlations between genetic and species diversity: effects of resource quantity and heterogeneity.

机译:遗传多样性与物种多样性之间的关系:资​​源数量和异质性的影响。

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Questions: It is hypothesized that species and genetic diversity are correlated because niche differentiation among species and genotypes is either affected by the same processes (positive) or each level restricts the amount of diversity in the other (negative). Although many studies have observed both positive and negative relationships, others have found no correlation between the two diversity measures. Are measures of species (richness, diversity and evenness) and genetic diversity correlated, and how does resource (soil moisture, light, nitrogen and phosphorus) quantities and heterogeneity affect both levels of diversity Location: Intact tallgrass prairie at Konza Prairie Biological Station, northeast Kansas, US. Methods: We investigate the correlation between plant species and genetic diversity in a long-term precipitation manipulation experiment - the Rainfall Manipulation Plots (RaMPs) - located in intact tallgrass prairie as well as adjacent non-manipulated prairie. The RaMPs experiment has been imposing ambient and more variable precipitation regimes (a 50% increase in timing between rainfall events without changing total rainfall amount) during the growing season since 1998, resulting in reduced mean soil moisture and increased soil moisture variability. Thus, the RaMPs and non-manipulated prairie plots capture a range of soil moisture amounts and variability. Genetic diversity (measured as genotype richness and genomic dissimilarity among individuals) was quantified for the dominant grass species, Andropogon gerardii, which has large impacts on plant community structure and ecosystem function. Results: We found species and genetic diversity were not significantly correlated. Genotypic richness was negatively related to soil moisture variability, but measures of species diversity were not. In the non-manipulated plots only, we found generally negative relationships between resource quantity (light and nitrogen) and community diversity, and positive relationships between resource heterogeneity (CV of light) and community diversity. Conclusions: Our results suggest that a lack of a positive or negative relationship between species and genetic diversity could be due to these two levels of diversity responding differently to the identity, quantity and heterogeneity of resources.
机译:问题:假设物种和遗传多样性是相关的,因为物种和基因型之间的生态位分化要么受同一过程(正)的影响,要么每个水平都限制了另一水平(负)的多样性。尽管许多研究都观察到正向和负向关系,但其他研究却未发现两种多样性测度之间存在相关性。物种(丰富度,多样性和均匀性)和遗传多样性的度量值是否相关,资源(土壤水分,光,氮和磷)的数量和异质性如何影响这两个多样性水平位置:东北Konza Prairie生物站的完整草丛草原美国堪萨斯州。方法:我们在一个长期降雨操纵实验中研究了植物物种与遗传多样性之间的相关性-位于完整草木大草原以及邻近的未操纵大草原的降雨操纵图(RaMPs)。自1998年以来,RaMPs试验一直在生长季节内施加环境和更多变化的降水方式(两次降雨之间的时间间隔增加了50%,而总降雨量没有变化),导致平均土壤湿度降低和土壤湿度变异性增加。因此,RaMPs和未经处理的草原图捕获了一定范围的土壤水分含量和变异性。定量分析了优势草种Andropogon gerardii的遗传多样性(以个体之间的基因型丰富度和基因组相似性衡量),这对植物群落结构和生态系统功能具有重大影响。结果:我们发现物种和遗传多样性没有显着相关。基因型丰富度与土壤水分变异性呈负相关,但对物种多样性的度量却没有。仅在未处理的样地中,我们通常发现资源数量(光和氮)与社区多样性之间存在负相关关系,而资源异质性(光的CV)与社区多样性之间存在正关系。结论:我们的结果表明,物种与遗传多样性之间缺乏正向或负向关系可能是由于这两个层次的多样性对资源的身份,数量和异质性的反应不同。

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