Department of Plant Biology, University of Turin and IPP-CNR, Turin, Italy.
FEMS Microbiol Ecol. 2011 Feb;75(2):321-31. doi: 10.1111/j.1574-6941.2010.01003.x. Epub 2010 Dec 13.
The huge diversity of fungi may reflect both the heterogeneity of the niches they occupy and the diverse stresses they must cope with. In order to investigate the genetic and functional diversity in the ericoid mycorrhizal fungus Oidiodendron maius subjected to heavy metal stress, we isolated O. maius strains from a serpentine site naturally enriched by heavy metals. Despite the high Cr and Ni soil concentrations, a high level of diversity was found in the serpentine fungal community. The growth of these isolates in the presence of different metal contaminants identified some tolerant strains, suggesting a site-specific adaptation. To investigate within-species gene divergence in stressful environments, we then compared the sequence polymorphism of a neutral (internal transcribed spacer) and a functional (Cu,ZnSOD) gene in O. maius isolates derived from the serpentine site, from a site heavily polluted with industrial wastes and from unpolluted sites. For all isolates tested, the polymorphism was higher in the nucleotide sequence of the functional gene. However, when compared with isolates from the serpentine area, isolates from industrially polluted sites showed a significantly higher polymorphism in the Cu,ZnSOD promoter region, suggesting that environmental stress may influence the rate of mutations in specific regions of the Sod1 locus.
真菌的巨大多样性可能反映了它们所占据的生态位的异质性和它们必须应对的各种压力。为了研究受重金属胁迫的杜鹃类菌根真菌 Oidiodendron maius 的遗传和功能多样性,我们从富含重金属的蛇纹石地点分离出了 O. maius 菌株。尽管土壤中 Cr 和 Ni 的浓度很高,但在蛇纹石真菌群落中发现了高度的多样性。这些分离物在存在不同金属污染物的情况下的生长情况鉴定出了一些耐受菌株,表明存在特定于地点的适应性。为了研究在胁迫环境中种内基因分化,我们随后比较了来自蛇纹石地点、工业废物污染严重地点和未污染地点的 O. maius 分离株的中性(内部转录间隔区)和功能(Cu,ZnSOD)基因的序列多态性。对于所有测试的分离株,功能基因的核苷酸序列中的多态性更高。然而,与来自蛇纹石地区的分离株相比,来自工业污染地区的分离株在 Cu,ZnSOD 启动子区域表现出更高的多态性,这表明环境胁迫可能影响 Sod1 基因座特定区域的突变率。