Department of Agriculture and Ecology, Faculty of Life Sciences, University of Copenhagen, Denmark.
J Invertebr Pathol. 2012 Jan;109(1):76-82. doi: 10.1016/j.jip.2011.10.001. Epub 2011 Oct 10.
Pollen beetles Meligethes aeneus were collected in oilseed rape fields at different sites in Switzerland in spring 2004-2005 and 32 isolates of the fungal genus Beauveria occurring as latent infections in the beetles were obtained and molecularly characterized. Three major clades, Beauveria bassiana sensu stricto (Clade A: n=13), Beauveriabrongniartii (Clade B: n=1) and Beauveria Clade C (n=18) were identified among the isolates based on sequences of the ITS region and the 5' end of EF1-α. B. bassiana s.s. was further separated in the two clades, Eu_1 (n=10) and Eu_4 (n=3). The intergenic region Bloc provided best resolution of the individual clades B. bassiana s.s. Eu_1, Eu_4 and B. brongniartii. No specific clade of Beauveria appeared to be associated with adult M. aeneus populations. However, data suggested high relative abundance of Beauveria Clade C among the fungal entomopathogens infecting M. aeneus. Characterization of the isolates by simple sequence repeats (SSR) revealed further genotypic diversity within the clades except B. bassiana s.s. Eu_4 which appeared to be clonal. However, the individual SSR markers were differentially amplifiable from isolates of the different clades. It is therefore important to identify the underlying phylogenetic affinity of Beauveria isolates to interpret results based on SSR markers. The data suggest that not all available SSR markers are suitable for reliable characterization of diversity within Beauveria Clade C.
2004-2005 年春季,在瑞士不同地点的油菜田采集花粉甲虫(Meligethes aeneus),获得了 32 株作为潜隐感染存在于甲虫体内的真菌属白僵菌(Beauveria)分离株,并对其进行了分子特征分析。基于 ITS 区和 EF1-α 5'端的序列,在分离株中鉴定出了 3 个主要的分支,白僵菌(Beauveria bassiana)严格意义上的种(Clade A:n=13)、白僵菌 Brongniartii 种(Clade B:n=1)和白僵菌 Clade C(n=18)。B. bassiana s.s.进一步分为 2 个分支,Eu_1(n=10)和 Eu_4(n=3)。种间区 Bloc 对白僵菌 s.s. Eu_1、Eu_4 和 B. brongniartii 各个分支的分辨率最高。似乎没有特定的白僵菌分支与成年 M. aeneus 种群相关。然而,数据表明,感染 M. aeneus 的真菌昆虫病原真菌中白僵菌 Clade C 的相对丰度较高。通过简单序列重复(SSR)对分离株进行的特征分析显示,除了 B. bassiana s.s. Eu_4 似乎呈克隆状态外,各个分支内存在进一步的遗传多样性。然而,不同分支的分离株的个别 SSR 标记的可扩增性不同。因此,为了解释基于 SSR 标记的结果,识别白僵菌分离株的潜在系统发育亲缘关系非常重要。数据表明,并非所有可用的 SSR 标记都适合对白僵菌 Clade C 内的多样性进行可靠的特征分析。