基于微卫星位点的块茎Spondias tuberosa (anacdiaceae)遗传多样性和遗传结构分析

Viviane Nunes dos Santos, C. A. Fernandes Santos, Viseldo Ribeiro de Oliveira, Antonio Elton Da Silva Costa, Fabricio Francisco Santos da Silva
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引用次数: 2

摘要

简介:Spondias tuberosa是巴西半干旱地区特有的一种树木,具有果树栽培潜力。目的:了解巴西半干旱区4个地区结核葡萄球菌(S. tuberosa)种质资源的多样性和遗传结构,为开展该物种的保护遗传资源研究提供依据。方法:采用CTAB - 2x法提取巴西Embrapa Semiárido种质资源库中24份tuberosa叶片样品的DNA。本研究使用了10个微卫星基因座。结果:使用Jaccard系数相似矩阵生成的UPGMA树状图在截断点0.44处包含4组。相似系数在0.30 ~ 0.84之间,表明各种质间存在较大差异。用软件结构进行的贝叶斯分析表明,有两个亚种群,一个由Januária地区的加入组成,另一个由Juazeiro, uau和Petrolina地区的加入组成。分子变异分析的ΦST值为0.12,表明4个群体的遗传分化程度中等,表明遗传变异在区域功能上是中等结构的。结论:综上所述,结核葡萄球菌的遗传多样性在研究区域的分布并不均匀。因此,应收集更多种群的种质,以增加种质库中物种的遗传多样性。
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Diversity and genetic structure of Spondias tuberosa (Anacardiaceae) accessions based on microsatellite loci
Introduction: Spondias tuberosa is a tree endemic to the semiarid region of Brazil with fruticulture potential. Objective: To estimate the diversity and genetic structure of S. tuberosa accessions from four areas of the semiarid region of Brazil, in order to facilitate conservation genetic resources studies in this species. Methods: DNA was extracted, using the CTAB 2x method, from leaf samples of 24 accessions of S. tuberosa available in the germplasm bank at Embrapa Semiárido, Brazil. Ten microsatellite loci were used in this study. Results: The UPGMA dendrogram, generated with a Jaccard coefficient similarity matrix, contains four groups at a 0.44 cutoff point. The similarity coefficient ranged from 0.30 to 0.84, indicating great divergence among the accessions. A Bayesian analysis conducted with the software Structure suggests there are two subpopulations, one formed by accessions from the Januária region and another by accessions from the Juazeiro, Uauá and Petrolina regions. The ΦST value of 0.12 for the analysis of molecular variance indicates moderate genetic differentiation among the four populations, suggesting that the genetic variability is moderately structured in function of region. Conclusions: Together, the analyses indicate that the genetic diversity of S. tuberosa is not uniformly distributed in the studied regions. Thus, germplasm from a greater number of populations should be collected to increase the germplasm bank genetic diversity of the species.
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