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Barcoding a Quantified Food Web: Crypsis, Concepts, Ecology and Hypotheses

机译:对量化的食物网进行条形码编码:栗,概念,生态学和假设

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摘要

The efficient and effective monitoring of individuals and populations is critically dependent on correct species identification. While this point may seem obvious, identifying the majority of the more than 100 natural enemies involved in the spruce budworm (Choristoneura fumiferana – SBW) food web remains a non-trivial endeavor. Insect parasitoids play a major role in the processes governing the population dynamics of SBW throughout eastern North America. However, these species are at the leading edge of the taxonomic impediment and integrating standardized identification capacity into existing field programs would provide clear benefits. We asked to what extent DNA barcoding the SBW food web would alter our understanding of the diversity and connectence of the food web and the frequency of generalists vs. specialists in different forest habitats. We DNA barcoded over 10% of the insects collected from the SBW food web in three New Brunswick forest plots from 1983 to 1993. For 30% of these specimens, we amplified at least one additional nuclear region. When the nodes of the food web were estimated based on barcode divergences (using molecular operational taxonomic units (MOTU) or phylogenetic diversity (PD) – the food web became much more diverse and connectence was reduced. We tested one measure of food web structure (the “bird feeder effect”) and found no difference compared to the morphologically based predictions. Many, but not all, of the presumably polyphagous parasitoids now appear to be morphologically-cryptic host-specialists. To our knowledge, this project is the first to barcode a food web in which interactions have already been well-documented and described in space, time and abundance. It is poised to be a system in which field-based methods permit the identification capacity required by forestry scientists. Food web barcoding provided an effective tool for the accurate identification of all species involved in the cascading effects of future budworm outbreaks. Integrating standardized barcodes within food webs may ultimately change the face of community ecology. This will be most poignantly felt in food webs that have not yet been quantified. Here, more accurate and precise connections will be within the grasp of any researcher for the first time.
机译:对个人和种群的有效监控主要取决于正确的物种识别。尽管这一点似乎很明显,但要确定涉及云杉芽虫(Choristoneura fumiferana – SBW)食物网的100多个天敌中的大多数仍然是一项艰巨的任务。寄生虫在整个北美东部控制SBW种群动态的过程中起着重要作用。但是,这些物种处于生物分类障碍的最前沿,将标准化识别能力纳入现有实地计划将提供明显的好处。我们问到,对SBW食物网进行条形码编码的DNA会在多大程度上改变我们对食物网的多样性和联系以及在不同森林生境中通才与专家的频率的理解。从1983年至1993年,我们在三个新不伦瑞克省森林地带的SBW食物网中收集了超过10%昆虫的DNA条形码。对于30%的这些标本,我们至少扩增了一个额外的核区域。当根据条形码差异(使用分子操作分类单位(MOTU)或系统发生多样性(PD))估算食物网的节点时,食物网变得更加多样化,连接性降低了。我们测试了一种测量食物网结构的方法( (“鸟类饲养者效应”),与基于形态学的预测相比没有发现差异。许多(但不是全部)推测为多食性寄生虫的人现在看来是形态隐秘的宿主专家。据我们所知,该项目是第一个对食品网进行条形码编码,其中已经很好地记录了相互作用并在空间,时间和丰度方面进行了描述,它有望成为一种基于现场方法允许林业科学家识别能力的系统。准确识别所有可能与未来虫害暴发连锁反应有关的物种的工具,将标准化条形码整合到食物网中可能会最终充分改变了社区生态的面貌。在尚未量化的食物网中,这种感觉最为刺耳。在这里,任何研究人员都将首次掌握更准确,更精确的联系。

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