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Population structure of Russula brevipes across stands, hosts, and geographic regions.

机译:横跨展台,寄主和地理区域的红鹤的种群结构。

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Little research has been conducted specifically on mechanisms that maintain ectomycorrhizal populations or the dynamics of genetic variation in natural forest situations. The objective of this research was to assess the factors influencing the genetic structure of Russula brevipes, one of the most widely dispersed and abundant late successional fungi found in conifer forests, at local, population and biogeographic scales. Allelic variation in microsatellite loci and mitochondrial DNA polymorphisms were analyzed in several populations to determine population structure across stands and hosts, and to gain insight into mechanisms of genetic differentiation such as dispersal, degree to which populations were isolated from other populations, and historical factors that shaped population structure. To assess population structure, sporocarps were collected in Douglas-fir, lodgepole pine, and Sitka spruce stands in regions of the Pacific Northwest and Rocky Mountains. Allelic variation in microsatellite loci indicated no evidence of host genetic structuring in populations of R. brevipes. In the Pacific Northwest, genetic structuring indicated a divide across Oregon separating populations collected in Washington and northern Oregon from populations in northern California and central Oregon. Significant regional population structuring suggested that mechanisms of spore dispersal in R. brevipes are not effective for long distance transport. In addition, identification of two populations with distinct genetic profiles with little overlap in allele frequencies suggested that barriers to mating likely gave rise to isolated populations in Sitka spruce. Genotypic diversity was measured by directly estimating the number of clones from genetic markers, mapping genotypes in local populations, and estimating the extent of migration and recombination in subpopulations of R. brevipes. The results of the genetic diversity analyses indicated that populations were structured in geographic regions with infrequent migration and mating in localized populations in the Pacific Northwest. In the Rocky Mountains, populations consisted of low genotypic diversity resulting from genetically distinct source populations. Populations of R. brevipes are genetically structured in regional populations with little gene flow across broad geographic scales.
机译:在天然林中维持外生菌根种群或遗传变异动态的机制方面,几乎没有开展任何研究。这项研究的目的是评估影响 Russula brevipes 的遗传结构的因素,它是针叶林中分布最广泛,分布最丰富的针叶林的局部,种群和生物地理尺度。分析了几个种群的微卫星基因座和线粒体DNA多态性的等位基因变异,以确定林分和宿主之间的种群结构,并深入了解了遗传分化机制,例如扩散,种群与其他种群的隔离程度以及历史因素。形的人口结构。为了评估种群结构,在太平洋西北部和落基山脉地区的道格拉斯冷杉,黑松树和锡特卡云杉林中采集了果皮。微卫星基因座中的等位基因变异表明在 R种群中没有宿主遗传结构的证据。 brevipes 。在西北太平洋地区,遗传结构表明俄勒冈州之间存在鸿沟,将华盛顿州和俄勒冈州北部收集的人口与加利福尼亚州北部和俄勒冈州中部的人口分开。重要的区域人口结构表明, R中的孢子扩散机制。 brevipes 对于长途运输无效。此外,对具有不同遗传特征且等位基因频率几乎没有重叠的两个种群的鉴定表明,交配障碍很可能导致了锡特卡云杉中的孤立种群。通过直接估计遗传标记的克隆数,绘制当地人群的基因型以及估计亚群的迁移和重组程度,来测量基因型多样性。 brevipes 。遗传多样性分析的结果表明,人口结构在地理区域内,西北太平洋的局部种群很少迁移和交配。在落基山脉,由于遗传上不同的来源种群,种群具有低基因型多样性。 R的种群。缩写在区域人群中具有遗传结构,在广泛的地理范围内几乎没有基因流。

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