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Development of microsatellite markers for two Australian Persoonia (Proteaceae) species using two different techniques

机译:使用两种不同技术开发两种澳大利亚Persoonia(Proteaceae)物种的微卫星标记

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摘要

• Premise of the study: Microsatellite markers were developed and cross-species transferability assessed for two Persoonia species to evaluate genetic diversity and population genetic structure of these broadly distributed southwest Australian tree species.• Methods and Results: Microsatellite-enriched libraries and 454 GS-FLX shotgun sequencing were used to identity nine microsatellite loci for P. elliptica (one 454; eight cloning) and six for P. longifolia (three 454; three cloning). These loci were screened for variation in individuals from populations in southwestern Australia. In P. elliptica, observed and expected heterozygosities ranged from 0.46 to 0.93 and 0.42 to 0.88, respectively. For P. longifolia, observed and expected heterozygosities ranged from 0.04 to 0.88 and 0.04 to 0.84, respectively.• Conclusions: The microsatellites identified in this study will enable the examination of population and spatial structuring of genetic diversity in P. elliptica and P. longifolia, two priority species for mine site restoration in southwestern Australia.
机译:•研究前提:开发了微卫星标记,并评估了两种Persoonia物种的跨物种转移性,以评估这些分布广泛的西南澳大利亚树种的遗传多样性和种群遗传结构。•方法和结果:富含微卫星的文库和454 GS-使用FLX gun弹枪测序来鉴定椭圆假单胞菌的9个微卫星基因座(一个454;八个克隆)和长假疟原虫的六个微卫星基因座(三个454;三个克隆)。对这些基因座筛选了澳大利亚西南部人口中个体的变异。在P. elliptica中,观察到的和预期的杂合度分别为0.46至0.93和0.42至0.88。对于P. longifolia,观察到的和预期的杂合度分别为0.04至0.88和0.04至0.84。•结论:本研究中鉴定的微卫星将使人们能够检查P. elliptica和P. longifolia的种群和遗传多样性的空间结构,是澳大利亚西南部矿山恢复的两个优先物种。

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