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首页> 外文期刊>Animal Conservation >Cryptic genetic divergence in the giant Tasmanian freshwater crayfish Astacopsis gouldi (Decapoda: Parastacidae): implications for conservation
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Cryptic genetic divergence in the giant Tasmanian freshwater crayfish Astacopsis gouldi (Decapoda: Parastacidae): implications for conservation

机译:塔斯马尼亚淡水小龙虾Astacopsis gouldi(十足目:寄生菊)的隐性遗传差异:对保护的意义

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摘要

The giant Tasmanian freshwater crayfish Astacopsis gouldi prized by fisherman, is the world's largest freshwater invertebrate. Astacopsis gouldi is known only from river drainages in northern Tasmania. A narrow distribution, pollution of habitat and over-harvesting has led to the rapid decline of populations and subsequent loss from a number of drainages. We collected mitochondrial DNA sequences to assess population structure and genetic diversity from throughout the species' distribution. We found a lineage from north-eastern Tasmania, which was genetically divergent compared with the remaining distribution in north-western Tasmania. Populations from the remaining distribution, including haplotypes found across a noted faunal barrier (Tamar River), were genetically homogeneous with <1% sequence divergence. This finding is concordant with a hypothesis of more interconnected drainages associated with lower sea levels in the past. The new cryptic lineage from north-east Tasmania requires further investigation and may be of extremely high conservation value. Conservation efforts for A. gouldi, combining habitat restoration with in situ management of wild populations and some population augmentation into once occupied rivers, will also have a positive impact for conservation of freshwater ecosystems in northern Tasmania.
机译:塔斯马尼亚淡水小龙虾Astacopsis gouldi被渔民所珍视,是世界上最大的淡水无脊椎动物。仅在塔斯马尼亚州北部的河道中才知道葡萄球菌。狭窄的分布,栖息地的污染和过度的采伐导致人口迅速减少,随后由于许多排水渠而流失。我们收集了线粒体DNA序列,以评估整个物种分布中的种群结构和遗传多样性。我们发现了塔斯马尼亚东北部的血统,与塔斯马尼亚西北部的其余分布相比,在遗传上存在分歧。来自其余分布的种群,包括在一个著名的动物隔离带(塔玛河)上发现的单倍型,在遗传上是同质的,序列差异小于1%。这一发现与过去与较低的海平面相关联的排水更多互连的假设相一致。来自塔斯马尼亚州东北部的新的神秘世系需要进一步研究,可能具有极高的保护价值。古尔迪古猿的保护工作,将栖息地的恢复与对野生种群的就地管理以及向曾经被占领的河流中的一些种群增加相结合,也将对塔斯马尼亚北部的淡水生态系统的保护产生积极影响。

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