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Molecular detection of trophic interactions: emerging trends, distinct advantages, significant considerations and conservation applications

机译:营养相互作用的分子检测:新兴趋势,明显优势,重要考虑因素和保护应用

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AbstractThe emerging field of ecological genomics contains several broad research areas. Comparative genomic and conservation genetic analyses are providing great insight into adaptive processes, species bottlenecks, population dynamics and areas of conservation priority. Now the same technological advances in high-throughput sequencing, coupled with taxonomically broad sequence repositories, are providing greater resolution and fundamentally new insights into functional ecology. In particular, we now have the capacity in some systems to rapidly identify thousands of species-level interactions using non-invasive methods based on the detection of trace DNA. This represents a powerful tool for conservation biology, for example allowing the identification of species with particularly inflexible niches and the investigation of food-webs or interaction networks with unusual or vulnerable dynamics. As they develop, these analyses will no doubt provide significant advances in the field of restoration ecology and the identification of appropriate locations for species reintroduction, as well as highlighting species at ecological risk. Here, I describe emerging patterns that have come from the various initial model systems, the advantages and limitations of the technique and key areas where these methods may significantly advance our empirical and applied conservation practices.
机译:摘要生态基因组学的新兴领域包括几个广泛的研究领域。比较基因组学和保护遗传学分析为适应过程,物种瓶颈,种群动态和保护优先领域提供了很好的见识。现在,高通量测序的相同技术进步,以及分类学广泛的序列库,正在为功能性生态学提供更大的分辨率和根本上的新见解。特别是,我们现在在某些系统中具有使用基于痕量DNA检测的非侵入性方法快速识别数千种物种级相互作用的能力。这是保护生物学的有力工具,例如,可以识别具有特别不灵活的生态位的物种,并研究具有异常或脆弱动态的食物网或相互作用网络。随着分析的发展,这些分析无疑将在恢复生态学领域以及为物种重新引入确定合适的位置以及突出具有生态风险的物种方面提供重大进展。在这里,我描述了来自各种初始模型系统的新兴模式,该技术的优势和局限性以及这些方法可以显着提高我们的经验和应用保护实践的关键领域。

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