Changes in the genetic structure of an invasive earthworm species (Lumbricus terrestris, Lumbricidae) along an urban - rural gradient in North America.

Changes in the genetic structure of an invasive earthworm species (Lumbricus terrestris, Lumbricidae) along an urban - rural gradient in North America.
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DOI:
10.1016/j.apsoil.2017.08.009
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发表时间:
2017-11
期刊:
Applied soil ecology : a section of Agriculture, Ecosystems & Environment
影响因子:
--
通讯作者:
Schaefer I
Schaefer I
中科院分区:
其他
文献类型:
--
作者:
Klein A;Cameron EK;Heimburger B;Eisenhauer N;Scheu S;Schaefer I

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大约 400 年前,欧洲定居者将欧洲蚯蚓引入北美。人类介导的引入极大地促进了欧洲物种的传播,这些物种通常被用作鱼饵,并且经常被故意丢弃在野外。我们在加拿大卡尔加里以南 100 公里范围内调查了 Lumbricus terrestris 的遗传结构,该地区在 20 年前可能还没有该物种。使用七个微卫星标记和线粒体 16S rDNA 基因研究了种群之间的遗传关系、基因流和种群之间的迁移事件。蚯蚓是在距城市不同距离处收集的,其中包括来自三个不同鱼饵经销商的鱼饵。结果表明,阿尔伯塔省的野外种群是最近才建立的,并且研​​究区域的诱饵和野外个体具有共同的起源。城市地区以外的种群内的遗传变异减少,最远的种群可能起源于单一的引入事件。结果强调了分子工具在了解入侵本地生态系统的外来物种(特别是破坏土壤的物种)种群的空间范围和连通性以及获取有关种群起源的信息方面的实用性。这些信息对于制定管理和预防策略以限制和控制北美非本地蚯蚓的生长至关重要。
European earthworms were introduced to North America by European settlers about 400 years ago. Human-mediated introductions significantly contributed to the spread of European species, which commonly are used as fishing bait and are often disposed deliberately in the wild. We investigated the genetic structure of Lumbricus terrestris in a 100 km range south of Calgary, Canada, an area that likely was devoid of this species two decades ago. Genetic relationships among populations, gene flow, and migration events among populations were investigated using seven microsatellite markers and the mitochondrial 16S rDNA gene. Earthworms were collected at different distances from the city and included fishing baits from three different bait distributors. The results suggest that field populations in Alberta established rather recently and that bait and field individuals in the study area have a common origin. Genetic variance within populations decreased outside of the urban area, and the most distant populations likely originated from a single introduction event. The results emphasise the utility of molecular tools to understand the spatial extent and connectivity of populations of exotic species, in particular soil-delling species, that invade native ecosystems and to obtain information on the origin of populations. Such information is crucial for developing management and prevention strategies to limit and control establishment of non-native earthworms in North America.
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