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The Limits of Dispersal: Fine Scale Spatial Genetic Structure in Australian Sea Lions

机译:分散的限制:澳大利亚海狮的细尺空间遗传结构

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摘要

Describing patterns of connectivity throughout a species range is critical to conservation management. In common with other mammals, pinnipeds typically display male-biased dispersal. Earlier studies using mitochondrial DNA showed that the endangered Australian sea lion (Neophoca cinerea) exhibits extreme matrilineal structure throughout its range. If male dispersal were similarly restricted, most breeding colonies may not receive sufficient levels of new genetic variation to buffer against risks associated with inbreeding and environmental change. To address these concerns we used 16 microsatellite loci to obtain a more highly resolving measure of genetic structure among colonies and determine whether dispersal is male-biased. We found that both male and female Australian sea lions are highly philopatric with limited dispersal. Within those constraints, when animals disperse between close colonies (<110 km) there is a tendency for males to move further than females. Our findings are intriguing considering the dispersal potential of Australian sea lions and the unique asynchronous breeding opportunities that might be expected to provide an incentive for male reproductive movements between geographically close colonies.
机译:描述整个物种范围内的连接模式对于保护管理至关重要。与其他哺乳动物共同,钉子通常会显示均匀的分散。使用线粒体DNA的早期研究表明,濒临灭绝的澳大利亚海狮(Neophoca Cinerea)在其范围内呈现极端的母系结构。如果雄性分散体类似地限制,大多数繁殖菌落可能无法接受足够的新遗传变异,以缓冲与近亲繁殖和环境变化相关的风险。为了解决这些问题,我们使用了16个微卫星基因座,以获得菌落之间更高度解决的遗传结构测量,并确定分散是雄性偏置的。我们发现,男性和女性澳大利亚海狮都是具有有限分散的高度哲学。在那些约束中,当动物分散在紧密菌落(<110km)之间时,雄性倾向于比女性更进一步。考虑到澳大利亚海狮的分散潜力以及可能预期的独特异步育种机会,我们的调查结果却是兴趣,这些机会在地理上关闭殖民地之间的男性生殖运动提供激励。

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