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与种群规模和环境因素有关的环境 DNA 的季节性变化。

Seasonal variation in environmental DNA in relation to population size and environmental factors.

机构信息

Durrell Institute of Conservation and Ecology, School of Anthropology and Conservation, University of Kent, Marlowe Building, Canterbury, Kent, CT2 7NR, UK.

出版信息

Sci Rep. 2017 Apr 10;7:46294. doi: 10.1038/srep46294.

Abstract

Analysing DNA that organisms release into the environment (environmental DNA, or eDNA) has enormous potential for assessing rare and cryptic species. At present the method is only reliably used to assess the presence-absence of species in natural environments, as seasonal influences on eDNA in relation to presence, abundance, life stages and seasonal behaviours are poorly understood. A naturally colonised, replicated pond system was used to show how seasonal changes in eDNA were influenced by abundance of adults and larvae of great crested newts (Triturus cristatus). Peaks in eDNA were observed in early June when adult breeding was coming to an end, and between mid-July and mid-August corresponding to a peak in newt larval abundance. Changes in adult body condition associated with reproduction also influenced eDNA concentrations, as did temperature (but not rainfall or UV). eDNA concentration fell rapidly as larvae metamorphosed and left the ponds. eDNA concentration may therefore reflect relative abundance in different ponds, although environmental factors can affect the concentrations observed. Nevertheless, eDNA surveys may still represent an improvement over unadjusted counts which are widely used in population assessments but have unreliable relationships with population size.

摘要

分析生物释放到环境中的 DNA(环境 DNA,或 eDNA)对于评估稀有和隐匿物种具有巨大的潜力。目前,该方法仅可靠地用于评估自然环境中物种的存在与否,因为与存在、丰度、生命阶段和季节性行为有关的季节性 eDNA 影响还了解甚少。利用自然定植和复制的池塘系统,展示了 eDNA 如何受到成体和成体幼虫数量的影响。6 月初,当成年繁殖即将结束时,eDNA 出现峰值,7 月中旬至 8 月中旬,与之对应是新孵化的幼体数量的峰值。与繁殖相关的成年体况变化也会影响 eDNA 浓度,温度也会影响(但降雨量和紫外线不会)。随着幼体变态并离开池塘,eDNA 浓度迅速下降。因此,eDNA 浓度可能反映了不同池塘中的相对丰度,尽管环境因素会影响观察到的浓度。尽管如此,eDNA 调查可能仍然优于广泛用于种群评估但与种群规模的关系不可靠的未经调整的计数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4284/5385492/5929e46ed907/srep46294-f1.jpg

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