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首页> 外文期刊>Conservation genetics >Genetic diversity and population structure of Eugenia dysenterica DC. ('cagaiteira'-Myrtaceae) in Central Brazil: Spatial analysis and implications for conservation and management
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Genetic diversity and population structure of Eugenia dysenterica DC. ('cagaiteira'-Myrtaceae) in Central Brazil: Spatial analysis and implications for conservation and management

机译:紫丁香DC的遗传多样性和种群结构。巴西中部的“ cagaiteira”-桃金娘科:空间分析及其对保护和管理的影响

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Studies about eh organization of the genetic variability and population structure in natural plant populations are used o support conservation and management programs. Among the Cerrado fruit tree species that possess potential economic importance in agriculture, the "Cagaiteira" (Eugenia dysenterica DC.-Mytaceae), deserves an special position. We obtained information about allele and genotypic frequencies in 10 local populations, situated up to 250 km apart, from six isozymes that furnished a total of 8 loci. The average within-population fixation index (f) was 0.337, and the outcrossing rate was 0.835, suggesting a mixed mating system for this species, which seems to be preferably algoamous. Based on genetic diversity and analysis of variance techniques, a high degree of population differentiation (θ_P=0.154) was found, in comparison with other tropical tree species. Genetic divergence, analyzed by Nei's genetic distances, clustered with UPGMA and oridated by non-metric multidimensional scaling, showed spatial analyses, using Mantel tests and boundary tests, basically confirmed these patterns and revealed a complex pattern of genetic variation in geographic space. the intercept of the multivariate spatial correlograms was around 120 km, an indication of the minimum distance between samples needed to conserve genetic diversity among samples. This spatial scale can be used to define population genetics units for conservation programs or to establish sampling strategies.
机译:关于自然植物种群遗传变异性和种群结构的组织研究用于支持保护和管理计划。在农业中具有潜在经济重要性的塞拉多果树物种中,“ Cagaiteira”(Eugenia dysenterica DC.-Mytaceae)应享有特殊地位。我们从6个同工酶(共提供8个基因座)中,获得了10个相距不超过250公里的本地人群的等位基因和基因型频率信息。种群内平均固定指数(f)为0.337,异种交配率为0.835,这表明该物种的混合交配系统似乎是理想的。基于遗传多样性和方差分析技术,与其他热带树种相比,发现了高度的种群分化(θ_P= 0.154)。通过Nei的遗传距离分析,与UPGMA聚类并由非度量多维标度支持的遗传发散,显示了空间分析,使用了Mantel检验和边界检验,基本证实了这些模式,并揭示了地理空间中遗传变异的复杂模式。多元空间相关图的截距约为120 km,这表明了样本之间保持样本间遗传多样性所需的最小距离。该空间比例可用于定义保护计划的种群遗传单位或建立采样策略。

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