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Screening chloroplast regions in Calophyllum brasiliense (Calophyllaceae) for suitability for population genetic analyses

机译:筛选巴西小叶藻(Calophyllaceae)中的叶绿体区域,以适合人群遗传分析

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摘要

The uniparental inheritance and conserved structure of the chloroplast genome among many angiosperms makes it suitable for constructing gene lineages and inferring population histories based on these relationships.However,the analysis of a single chloroplast region to solve population issues has not yielded the desired amount of variability due to the low mutation rate.Therefore,it is necessary to screen and carefully analyze chloroplast intergenic or intronic regions to select the most appropriate for studying the genetic variability in the chloroplast genome of a particular taxon.In this context,the aim of this work was to characterize 8 regions in Calophyllum brasiliense using 11 selected primer pairs and to evaluate their usefulness for phylogeographic analysis.Intergenic spacers petA-psbJ,petG-trnP and rpl32-trnL and the trnL intron demonstrated potentially informative sites.The combination of these 4 regions will allow the analysis of genetic population structure and the integration of historical aspects to inform strategies for conserving C.brasiliense,especially for highly impacted populations and those at risk of local extinction.
机译:许多被子植物中叶绿体基因组的单亲遗传和保守结构使其适合于构建基因谱系并基于这些关系推断种群历史。但是,分析单个叶绿体区域以解决种群问题并没有产生所需的可变性因此,有必要筛选和仔细分析叶绿体基因间或内含子区域,以选择最适合研究特定分类单元叶绿体基因组遗传变异性的方法。在这种情况下,本研究的目的目的是使用11个选定的引物对表征巴西Calophyllum Brasiliense的8个区域,并评估其在系统地理分析中的有用性。基因间隔子petA-psbJ,petG-trnP和rpl32-trnL和trnL内含子显示出潜在的信息位点。这4个区域的组合将允许分析遗传种群结构和整合历史方面的信息为保护巴西念珠菌的策略提供参考,尤其是对受影响较大的人群和面临局部灭绝风险的人群。

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  • 来源
    《林业研究(英文版)》 |2018年第4期|983-990|共8页
  • 作者单位

    Laboratorio GIGA, Instituto de Biología Subtropical, Nodo Posadas, Universidad Nacional de Misiones(UNaM),Consejo Nacional de Investigaciones Científicas y Técnicas(CONICET), Jujuy 1745, N3300NFK Posadas, Misiones,Argentina;

    Cátedra de Genética Molecular, Facultad de Ciencias Exactas Químicas y Naturales(FCEQyN), Universidad Nacional de Misiones(UNaM), Félix de Azara 1552,N3300LQH Posadas, Misiones, Argentina;

    Laboratorio GIGA, Instituto de Biología Subtropical, Nodo Posadas, Universidad Nacional de Misiones(UNaM),Consejo Nacional de Investigaciones Científicas y Técnicas(CONICET), Jujuy 1745, N3300NFK Posadas, Misiones,Argentina;

    Laboratorio de Sistemática y Biología Evolutiva(LASBE)-Facultad de Ciencias Naturales y Museo(FCNyM),Universidad Nacional de La Plata-(UNLP), Avenida 122 y 60, 1900 La Plata, Buenos Aires, Argentina;

    Laboratorio GIGA, Instituto de Biología Subtropical, Nodo Posadas, Universidad Nacional de Misiones(UNaM),Consejo Nacional de Investigaciones Científicas y Técnicas(CONICET), Jujuy 1745, N3300NFK Posadas, Misiones,Argentina;

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