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Genotypic richness and phenotypic dissimilarity enhance population performance

机译:基因型丰富度和表型差异增强了种群表现

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Increases in biodiversity can result from an increase in species richness, as well as from a higher genetic diversity within species. Intraspecific genetic diversity, measured as the number of genotypes, can enhance plant primary productivity and have cascading effects at higher trophic levels, such as an increase in herbivore and predator richness. The positive effects of genotypic mixtures are not only determined by additive effects, but also by interactions among genotypes, such as facilitation or inhibition. However, so far there has been no effort to predict the extent of such effects. In this study, we address the question of whether the magnitude of the effect of genotype number on population performance can be explained by the extent of dissimilarity in key traits among genotypes in a mixture. We examine the relative contribution of genotype number and phenotypic dissimilarity among genotypes to population performance of the soil arthropod, Orchesella cincta. Nearly homogeneous genotypes were created from inbred isofemale lines. Phenotypic dissimilarity among genotypes was assessed in terms of three life-history traits that are associated with population growth rate, i.e., egg size, egg development time, and juvenile growth rate. A microcosm experiment with genotype mixtures consisting of one, two, four, and eight genotypes, showed that genotypic richness strongly increased population size and biomass production and was associated with greater net diversity effects. Most importantly, there was a positive log-linear relationship between phenotypic dissimilarity in a mixture and the net diversity effects for juvenile population size and total biomass. In other words, the degree of phenotypic dissimilarity among genotypes determined the magnitude of the genotypic richness effect, although this relationship leveled off at higher values of phenotypic dissimilarity. Although the exact mechanisms responsible for these effects are currently unknown, similar advantages of trait dissimilarity have been found among species. Hence, to better understand population performance, genotype number and phenotypic dissimilarity should be considered collectively.
机译:物种丰富度的增加以及物种内部更高的遗传多样性可以导致生物多样性的增加。种内遗传多样性(按基因型数量衡量)可以提高植物的初级生产力,并在较高的营养水平上具有级联效应,例如食草动物和捕食者的丰富度增加。基因型混合物的积极作用不仅取决于累加效应,还取决于基因型之间的相互作用,例如促进或抑制。但是,到目前为止,还没有任何努力来预测这种影响的程度。在这项研究中,我们解决了一个问题,即基因型数量对种群表现的影响大小是否可以通过混合物中基因型之间关键性状的不相似程度来解释。我们研究了基因型数量和表型差异之间的相对贡献对土壤节肢动物Orchesella cincta种群表现的影响。从近交同雌系产生近乎均一的基因型。基因型之间的表型差异是根据与人口增长率相关的三种生活史特征来评估的,即蛋的大小,卵的发育时间和幼年的增长率。缩影实验使用由一种,两种,四种和八种基因型组成的基因型混合物,表明基因型丰富性极大地增加了种群规模和生物量生产,并具有更大的净多样性效应。最重要的是,混合物中的表型差异与少年种群规模和总生物量的净多样性效应之间存在正对数线性关系。换句话说,基因型之间的表型差异程度决定了基因型丰富度效应的强度,尽管这种关系在较高的表型差异值时趋于平稳。尽管目前尚不清楚造成这些影响的确切机制,但已在物种之间发现了相似性状相似的优势。因此,为了更好地了解种群表现,应该综合考虑基因型数量和表型差异。

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