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Regional Genetic Structure and Environmental Variables Influence our Conservation Approach for Feather Heads (Ptilotus macrocephalus)

机译:区域遗传结构和环境变量影响我们保护羽毛头的方法(Ptilotus macrocephalus)

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摘要

Continued alterations to the Australian environment compromise the long-term viability of many plant species. We investigate the population genetics of Ptilotus macrocephalus, a perennial herb that occurs in 2 nationally endangered communities on the Victorian Volcanic Plain Bioregion (VVP), Australia, to answer key questions regarding regional differentiation and to guide conservation strategies. We evaluate genetic structure and diversity within and among 17 P. macrocephalus populations from 3 regions of southeastern Australia using 17 microsatellite markers developed de novo. Genetic structure was present in P. macrocephalus between the 3 regions but not at the population level. Environmental factors, namely temperature and precipitation, significantly explained differentiation between the North region and the other 2 regions indicating isolation by environment. Within regions, genetic structure currently shows a high level of gene flow and genetic variation. Our results suggest that within-region gene flow does not reflect current habitat fragmentation in southeastern Australia whereas temperature and precipitation are likely to be responsible for the differentiation detected among regions. Climate change may severely impact P. macrocephalus on the VVP and test its evolutionary resilience. We suggest taking a proactive conservation approach to improve long-term viability by sourcing material for restoration to assist gene flow to the VVP region to promote an increased adaptive capacity.
机译:澳大利亚环境的不断变化损害了许多植物物种的长期生存能力。我们调查了Ptilotus macrocephalus的种群遗传学,Ptilotus macrocephalus是一种多年生草本植物,它发生在澳大利亚维多利亚火山平原生物区(VVP)的两个国家濒危社区中,以回答有关区域分化的关键问题并指导保护策略。我们使用从新开发的17个微卫星标记,评估了澳大利亚东南部3个地区的17个大头P种群内及其之间的遗传结构和多样性。遗传结构存在于3个区域之间的大型对虾中,但不在种群水平上。环境因素,即温度和降水,在很大程度上解释了北部地区与其他两个地区之间的差异,表明被环境隔离。在区域内,遗传结构目前显示出高水平的基因流动和遗传变异。我们的研究结果表明,区域内的基因流动不能反映澳大利亚东南部当前的生境破碎化,而温度和降水可能是造成区域间差异的原因。气候变化可能严重影响大头虾对VVP的影响并测试其进化适应力。我们建议采取积极的保护方法,通过采购修复材料来帮助基因流向VVP区,以提高适应能力,从而提高长期生存能力。

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