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首页> 外文期刊>The Science of the Total Environment >Dung beetles as drivers of ecosystem multifunctionality: Are response and effect traits interwoven?
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Dung beetles as drivers of ecosystem multifunctionality: Are response and effect traits interwoven?

机译:粪甲虫是生态系统多功能性的驱动因素:响应和效应特征是否交织在一起?

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AbstractRapid biodiversity loss has emphasized the need to understand how biodiversity affects the provisioning of ecological functions. Of particular interest are species and communities with versatile impacts on multiple parts of the environment, linking processes in the biosphere, lithosphere, and atmosphere to human interests in the anthroposphere (in this case, cattle farming). In this study, we examine the role of a specific group of insects – beetles feeding on cattle dung – on multiple ecological functions spanning these spheres (dung removal, soil nutrient content and greenhouse gas emissions). We ask whether the same traits which make species prone to extinction (i.e.response traits) may also affect their functional efficiency (aseffect traits). To establish the link between response and effect traits, we first evaluated whether two traits (body mass and nesting strategy, the latter categorized as tunnelers or dwellers) affected the probability of a species being threatened. We then tested for a relationship between these traits and ecosystem functioning. Across Scandinavian dung beetle species, 75% of tunnelers and 30% of dwellers are classified as threatened. Hence, nesting strategy significantly affects the probability of a species being threatened, and constitutes a response trait. Effect traits varied with the ecological function investigated: density-specific dung removal was influenced by both nesting strategy and body mass, whereas methane emissions varied with body mass and nutrient recycling with nesting strategy. Our findings suggest that among Scandinavian dung beetles, nesting strategy is both a response and an effect trait, with tunnelers being more efficient in providing several ecological functions and also being more sensitive to extinction. Consequently, functionally important tunneler species have suffered disproportionate declines, and species not threatened today may be at risk of becoming so in the near future. This linkage between effect and response traits aggravates the consequences of ongoing biodiversity loss.Graphical abstractDisplay OmittedHighlightsDung beetles link processes throughout the pasture environment.The same traits affect a species' environmental response and functional efficiency.Different ecological functions vary in discord rather than in concert.Diverse dung beetle communities are needed to ensure ecosystem multifunctionality.
机译: 摘要 生物多样性的迅速丧失强调必须了解生物多样性如何影响生态功能的提供。特别令人关注的是对环境的多个部分具有多方面影响的物种和社区,它们将生物圈,岩石圈和大气中的过程与人类圈中的人类利益联系在一起(在这种情况下,是畜牧业)。在这项研究中,我们研究了特定的一组昆虫-以牛粪为食的甲虫-在跨越这些领域的多种生态功能(粪便清除,土壤养分含量和温室气体排放)中的作用。我们问是否使物种易于灭绝的相同性状(即响应性状)也可能影响其功能效率(如效应性状) 。为了建立反应性和效果性状之间的联系,我们首先评估了两个性状(体重和筑巢策略,后者被归类为隧道效应者或居住者)是否影响了物种受到威胁的可能性。然后,我们测试了这些特征与生态系统功能之间的关系。在整个斯堪的纳维亚粪便甲虫物种中,有75%的隧道虫和30%的居民被列为受威胁物种。因此,筑巢策略极大地影响了物种受到威胁的可能性,并构成了响应特征。影响特性随所研究的生态功能而变化:密度特定的粪便清除受嵌套策略和体重的影响,而甲烷排放随体重和嵌套策略的养分循环而变化。我们的研究结果表明,在斯堪的纳维亚的be虫中,筑巢策略既是一种反应也是一种效应,隧道虫在提供几种生态功能方面更有效,而且对灭绝更敏感。因此,具有重要功能的隧道动物的数量下降得不成比例,而今天没有受到威胁的物种可能在不久的将来变得如此。效果和响应特征之间的这种联系加剧了持续的生物多样性丧失的后果。 图形摘要 显示省略 突出显示 D虫链接整个牧场环境中的过程。 相同的性状会影响物种的环境响应和功能效率。< / ce:para> 不同的生态功能在不一致而不是一致的情况下会发生变化。 需要各种粪甲虫群落以确保生态系统的多功能性。

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