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Diversity-productivity relationships in two ecologically realistic rarity-extinction scenarios

机译:两种生态现实的稀有灭绝情景中的多样性-生产率关系

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To develop a better understanding of how biodiversity loss and productivity are related, we need to consider ecologically realistic rarity (i.e. reduced evenness and increased dominance) and extinction (i.e. reduced richness) scenarios. Furthermore, we need to identify and better understand the factors that influence species and community yielding behaviors because the general conditions for overyielding are the same as those for coexistence. We established experimental tallgrass prairie plots in Iowa to determine how two ecologically realistic rarity-extinction scenarios influenced aboveground net primary productivity (ANPP) and disassembly. Equal-mass seedlings of six tallgrass prairie species were transplanted into field plots to establish realistic declining species evenness (high, medium, low) and richness (4, 1) treatments. Across declining evenness treatments, the relative abundance of the ubiquitous tall species Andropogon gerardii increased, the relative abundance of the tall species Salvia azurea was constant, and the relative abundance of two short (dissimilar height scenario) or two tall species (tall scenario) decreased. Monocultures of Andropogon represented a continuation of this trend until there was complete dominance by Andropogon and extinction of all other species. Our treatments also allowed us to test if variation in plant height contributes to the complementarity effect. Niche partitioning in plant height was not positively related to complementarity. The effects of declining species evenness and richness on the diversity-productivity relationship were different for these two ecologically realistic rarity-extinction scenarios. Specifically, as diversity declined across treatments, ANPP and the selection effects decreased in tall communities, but not in dissimilar communities. Additionally, differences between these two scenarios revealed that decreased species yielding behavior is associated with two tallgrass prairie extinction risk factors, rarity and short height. The differences between these scenarios demonstrate the importance of incorporating the known patterns of diversity declines into future studies.
机译:为了更好地了解生物多样性丧失与生产力之间的关系,我们需要考虑生态上现实的稀有性(即降低的均匀度和优势度)和灭绝(即降低的丰富度)情景。此外,由于过度生产的一般条件与共存条件相同,因此我们需要确定并更好地理解影响物种和社区生产行为的因素。我们在爱荷华州建立了实验性草丛大草原图,以确定两个生态现实的稀有灭绝情景如何影响地上净初级生产力(ANPP)和分解。将六个高草草原物种的等质量幼苗移植到田间地块,以建立现实的物种下降的均匀度(高,中,低)和丰富度(4、1)处理。在下降的均匀度处理中,无处不在的高种Andropogon gerardii的相对丰度增加,丹参Salvia azurea的高种相对常数是恒定的,两个矮种(不同高度的情景)或两个高种(高情景)的相对丰度降低了。 Andropogon的单一文化代表了这一趋势的延续,直到Andropogon完全控制了所有其他物种并使其灭绝为止。我们的处理方法还使我们能够测试植物高度的变化是否有助于互补效应。植物高度上的生态位分配与互补性没有正相关。在这两个生态现实的稀有灭绝情景中,物种均匀度和丰富度下降对多样性-生产力关系的影响是不同的。具体来说,随着治疗方法多样性的降低,ANPP和选择效应在高群落中降低,但在异种群落中不降低。此外,这两种情况之间的差异表明,物种减产行为的减少与两个高草草原物种灭绝的危险因素,稀有性和矮身高有关。这些场景之间的差异表明了将已知的多样性下降模式纳入未来研究的重要性。

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