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Population genetics and phylogeography of endangered Oxytropis campestris var. chartacea and relatives: arctic-alpine disjuncts in eastern North America

机译:濒危嗜水Ox的种群遗传学和系统地理学。海藻纲和亲缘:北美东部的北极-高山分离

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Fassett's locoweed (Oxytropis campestris var. chartacea, Fabaceae) is an endangered perennial endemic to Wisconsin. Patterns of genetic variation within and among six remaining populations and their relationship to other members of the O. campestris complex were analysed using AFLPs from 140 accessions across northern North America. Within-population measures of genetic diversity were high (mean expected heterozygosity H-E = 0.16; mean nucleotide diversity pi = 0.015) compared with other herbaceous plants. Estimates of among-population differentiation were low (F-ST = 0.12; Phi(ST) = 0.29), consistent with outcrossing. Genetic and geographical distances between populations were significantly correlated within Fassett's locoweed (r(2) = 0.73, P < 0.002 for Mantel test) and O. campestris as a whole (r(2) = 0.63, P < 0.0001). Individual and population-based phylogenetic analyses showed that Fassett's locoweed is monophyletic and sister to O. campestris var. johannensis. Morphometric analyses revealed significant differences between Fassett's locoweed and populations of var. johannensis. The first chromosome count for Fassett's locoweed indicates that it is tetraploid (2n = 32), unlike hexaploid var. johannensis. High within-population diversity and relatively low among-population differentiation are consistent with populations of Fassett's locoweed being relicts of a more continuous Pleistocene distribution. Our data support the continued recognition of Fassett's locoweed and protection under federal and state regulations. High levels of genetic diversity within populations suggest that maintain-ing the ecological conditions that favour the life cycle of this plant may be a more pressing concern than the erosion of genetic variation.
机译:Fassett的猪杂草(Oxytropis campestris var。chartacea,豆科)是威斯康星州的一种濒危多年生特有种。使用北美北部140个种质的AFLP分析了六个剩余种群内部和之中的遗传变异模式,以及它们与O. campestris复杂群的关系。与其他草本植物相比,种群内遗传多样性的测量值很高(平均预期杂合度H-E = 0.16;平均核苷酸多样性pi = 0.015)。人群间分化的估计较低(F-ST = 0.12; Phi(ST)= 0.29),与异源杂交一致。种群之间的遗传和地理距离与Fassett的疯草(r(2)= 0.73,对于Mantel测试,P <0.002)和整个桔梗(r(2)= 0.63,P <0.0001)显着相关。基于个体和人群的系统发育分析表明,Fassett的疯草是单系的,并且是O. campestris var的姐妹。约翰。形态分析表明,Fassett的疯草和var种群之间存在显着差异。约翰。 Fassett的疯草的第一个染色体计数表明它是四倍体(2n = 32),与六倍体var不同。约翰。较高的种群内多样性和较低的种群间分化与Fassett的疯草种群是更新世连续分布的遗迹相一致。我们的数据支持根据联邦和州法规对Fassett的疯草和保护措施的持续认可。种群中高水平的遗传多样性表明,维持有利于该植物生命周期的生态条件可能比侵蚀遗传变异更为紧迫。

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