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Study On Genetic Variation And Relationships Among Four Acacia Species Using Rapd And Sscp Marker

机译:利用Rapd和Sscp标记研究四种相思树种的遗传变异及相关性

摘要

Genetic diversity and relationship of four Acacia species, Acacia aulacocarpa, A. Cunn. ex Benth., A. auriculiformis Cunn. ex Benth., A. crassicarpa Cunn. ex Benth. and A. mangium Willd. were investigated using DNA molecular markers. Using RAPD analysis, a total of 20 arbitrar y primers successfully gave 127 polymorphic fragments. These RAPD data were used to estimate genetic distance and construct dendrograms using the unweighted pair-group with the arithmetic mean average (UPGMA) method. The four species were divided into two major clusters. A. auriculiformis and A. mangium were in one cluster, and the other cluster contained both A. aulacocarpa and A. crassicarpa. The divergence time of the two species (A. auriculiformis and A. mangium) in the former cluster appeared to be relatively early in comparison to in the latter (A. aulacocarpa and A. crassicarpa) based on RAPD data. This result was also supported by Principal Component Analysis (PCA). Among the four species, A. aulacocarpa showed the highest divergence in nuclear DNA (ncDNA), followed by A. auriculiformis. SSCP analysis also revealed that these two species possessed a haplotypic variation of the trnL-trnF intergenic spacer region of chloroplast DNA. In A. aulacocarpa, a large difference in the composition of both nuclear and chloroplast genomes was obser ved between populations distributed in Queensland, Australia and those in New Guinea Island. In contrast, compared to the other species, A. mangium showed the lowest genetic diversity and less genetic differentiation among populations.
机译:四种相思树种的遗传多样性和亲缘关系前Benth。,A。auriculiformis Cunn。前Benth。,A。crassicarpa Cunn。前Benth。和man。使用DNA分子标记进行了研究。使用RAPD分析,总共20个任意引物成功地给出了127个多态性片段。这些RAPD数据用于估计遗传距离,并使用算术平均数(UPGMA)方法使用未加权对组构建树状图。这四个物种被分为两个主要簇。 A. auriculiformis和A. mangium在一个簇中,另一簇同时包含A. aulacocarpa和A. crassicarpa。根据RAPD数据,前者集群中的两个物种(A. auriculiformis和A. mangium)的发散时间似乎比后者集群中的(A. aulacocarpa和A. crassicarpa)的发散时间相对早。主成分分析(PCA)也支持此结果。在这四个物种中,A。aulacocarpa在核DNA(ncDNA)中表现出最高的差异,其次是A. auriculiformis。 SSCP分析还显示这两个物种具有叶绿体DNA的trnL-trnF基因间隔区的单倍型变异。在Aulacocarpa中,澳大利亚昆士兰州和新几内亚岛的种群在核和叶绿体基因组的组成上都存在很大差异。相比之下,与其他物种相比,芒A的遗传多样性最低,而群体间的遗传分化则较少。

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