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Molecular investigation on strain genetic relatedness and population structure of Beauveria bassiana

机译:球孢白僵菌菌株遗传相关性和种群结构的分子研究

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摘要

Triplicate molecular methods, i.e. polymerase chain reaction-restriction fragment length polymorphism of the pr1 gene, microsatellite markers and 28S rDNA typing by detecting the presence or absence of group I introns, were used for population study of the entomopathogenic fungus, Beauveria bassiana. The findings showed that the average genetic diversity index of geographical populations was significantly smaller than that of populations derived from insect host orders, indicating that the genetic relatedness of B. bassiana strains was highly associated with geographical locality rather than insect host species. The reproductive style of all the B. bassiana populations was found to be non-clonal. Population structure analysis revealed that the average divergent coefficient among populations of B. bassiana was far below 1 (0.1112), which indicated that there was no significant genetic differentiation between populations, and that the overall genetic diversity mainly resulted from the genetic variations within geographical populations. Statistically, genetic distances between populations were positively correlated with geographical distances, suggesting that geographical separation poses an obstacle to the possibility and frequency of genetic exchanges between populations. On the other hand, gene flow was indirectly established to occur between B. bassiana populations.
机译:一式三份的分子方法,即pr1基因的聚合酶链反应-限制性片段长度多态性,微卫星标记和通过检测是否存在I组内含子的28S rDNA分型被用于昆虫致病性真菌球孢白僵菌的种群研究。研究结果表明,地理种群的平均遗传多样性指数显着小于来自昆虫寄主的种群,这表明球孢杆菌菌株的遗传相关性与地理高度相关,而不是与昆虫寄主物种高度相关。发现所有B. bassiana种群的繁殖方式都是非克隆的。种群结构分析表明,球孢白僵菌种群之间的平均发散系数远低于1(0.1112),这表明种群之间没有显着的遗传分化,总体遗传多样性主要是由地理种群内的遗传变异造成的。从统计学上讲,种群之间的遗传距离与地理距离呈正相关,这表明地理隔离对种群之间的遗传交换的可能性和频率构成了障碍。另一方面,基因流被间接地建立为发生在球孢杆菌种群之间。

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