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Environmental DNA as a valuable and unique source of information about ecological networks in Arctic terrestrial ecosystems

机译:环境DNA是北极陆地生态系统中生态网络的有价值和独特信息

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摘要

Arctic terrestrial ecosystems are particularly vulnerable to the effects of ongoing and predicted climate changes. The current states of environmental biodiversity and ecological networks in the Arctic need to be known and understood to monitor how they change and how these changes may influence the particular components of the ecosystem. Despite the fact that the Arctic tundra is generally poor in nutrients, it has a surprisingly high biodiversity, especially of invertebrates and microorganisms. Besides macroclimatic features, there may be local factors influencing biodiversity, such as microclimate, water availability, or large seabird colonies depositing guano. This last can have a substantial impact on the soil's physicochemical features, and consequently the distribution, number, and diversity of tundra-associated plants and animals in the vicinity of the colony. Changes in the Arctic biodiversity and the functioning of the ecosystem at all trophic levels are difficult to investigate using traditional methods. In this review, we discuss how modern molecular techniques, including next generation sequencing, influence our ability to investigate and understand this ecosystem at both the micro- and the macroscale and how they can complement the more traditional approaches to studying ecological networks in the Arctic.
机译:北极陆地生态系统特别容易受到持续和预测的气候变化的影响。北极地区环境生物多样性和生态网络的当前状态需要知道并理解,以监测它们如何改变以及这些变化如何影响生态系统的特定组成部分。尽管北极苔原一般营养成分较差,但它具有令人惊讶的高生物多样性,特别是无脊椎动物和微生物。除了Macroclimatic特征外,可能存在影响生物多样性的本地因素,例如小气候,水可用性或沉积鸟粪的大型海鸟殖民地。最后一个可能对土壤的物理化学特征产生重大影响,从而产生了苔原相关植物和殖民地附近的分布,数量和多样性。北极生物多样性的变化以及生态系统在所有营养师水平的运作难以使用传统方法调查。在这篇综述中,我们讨论了现代分子技术如何,包括下一代测序,影响我们在微观和宏观和宏观上调查和理解这种生态系统的能力以及它们如何补充更传统的方法来研究北极地区的生态网络。

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