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首页> 外文期刊>Genetic Resources and Crop Evolution >Global analysis of Coffea canephora Pierre ex Froehner (Rubiaceae) from the Guineo-Congolese region reveals impacts from climatic refuges and migration effects
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Global analysis of Coffea canephora Pierre ex Froehner (Rubiaceae) from the Guineo-Congolese region reveals impacts from climatic refuges and migration effects

机译:对几内亚-刚果地区的小叶咖啡(Pierre Bie Froehner(Rubiaceae))的全球分析揭示了气候保护区的影响和迁徙影响

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As the second species used for commercial coffee, evaluation of Coffea canephora Pierre ex Froehner population genetics is a challenging task for coffee breeding. This study examined the pattern of genetic variability and genetic relationships of cultivated and wild populations of C. canephora sampled across the Guineo-Congolese region of Africa and some improved populations maintained in field genebanks. A total of 293 individuals, sampled from 17 populations, were genotyped with 39 nuclear microsatellite markers. Genetic diversity and structure were investigated with both a model-based and a graphical approach; isolation by distance was also tested. Relationships between the diversity clusters are discussed with regard to differentiation due to several glacial refuges during the Last Glacial Maximum (LGM). High genetic diversity within C. canephora is confirmed with a mean number of alleles of 11.85 per marker, a mean gene diversity of 0.72 and a mean observed heterozygosity of 0.36. An overall structure of two main groups (Guinean and Congolese) subdivided in six subgroups (2 for the Guinean and 4 for the Congolese) was found, including one described for the first time in the Guinean group. A fine structure within the Guinean group was also newly detected. Genetic structure of C. canephora appears to be consistent with its geographic repartition at the continent scale. Structure of diversity was found in accordance with localizations of refuge zones during LGM and migration from this period. Results from this genetic structure study raise our capabilities to better manage and use the collections of genetics resources for breeding purposes. Those results will be used in future association studies to optimize the number of genotypes to be phenotyped.
机译:作为用于商业咖啡的第二个物种,对咖啡中的Pierre ex Froehner种群遗传学进行评估是咖啡育种的一项艰巨任务。这项研究检查了非洲几内亚-刚果地区的人工种植的和野生的C. canephora种群的遗传变异和遗传关系模式,以及田间种质库中维持的一些改良种群。对来自17个人群的293个人进行了基因分型,使用39个核微卫星标记。遗传多样性和结构的研究既采用基于模型的方法又采用图形方法。还测试了按距离隔离。讨论了在最后一次冰河最大期(LGM)期间由于几个冰川避难所而引起的分化之间的多样性集群之间的关系。可以确认can。canephora内的高遗传多样性,每个标记的平均等位基因数目为11.85,平均基因多样性为0.72,平均观察到的杂合度为0.36。发现了两个主要群体(几内亚和刚果)的整体结构,分为六个亚组(几内亚为2个,刚果为4个),其中一个在几内亚组中首次描述。几内亚小组内的精细结构也被新发现。 C. canephora的遗传结构似乎与其在大陆范围内的地理划分是一致的。发现的结构是根据LGM期间避难区的位置和从此期间的迁徙而发现的。这项遗传结构研究的结果提高了我们更好地管理和利用遗传资源进行育种的能力。这些结果将用于将来的关联研究中,以优化要进行表型化的基因型数量。

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