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Assessment of arbuscular mycorrhizal fungal diversity in roots of Solidago gigantea growing in a polluted soil in Northern Italy

机译:意大利北部污染土壤中生长的一枝黄花根中的丛枝菌根真菌多样性评估

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The arbuscular mycorrhizal (AM) status of Solidago gigantea was investigated in a contaminated site of Northern Italy, where the chemical industry ACNA (Associated National Chemical Companies) was active till 1999. To counteract the devastating effects of chemicals and to allow re-vegetation, soil from an uncontaminated area was used to cover the highly polluted hills of the industrial site about 25 years ago. On the basis of the current floristic features, the hill was divided into four areas. Heavy metal content in soil and in plant shoots and roots was determined by chemical analysis. The AM fungal community colonizing S. gigantea was investigated from a morphological and a molecular point of view. All plants were modestly colonized, but the fungal structures within the roots were normal. By PCR-RFLP and sequencing of 18S rDNA, 14 AM fungal types were identified: three of them were present in all the considered areas and nine appeared to be specific to certain areas. Glomus was the predominant AM genus. Our analysis demonstrates the presence and the relatively high level of AM species variety and shows how a remediation programme based on cover-soil has been efficient to restore a community of AM fungi, tolerant enough to proliferate in a still contaminated soil.
机译:在意大利北部的一个受污染的地点调查了巨果Solidago的丛枝菌根(AM)状况,在那里化学工业ACNA(Associated National Chemical Companies)一直活跃到1999年。大约25年前,来自未受污染区域的土壤被用来覆盖工业区污染严重的山丘。根据当前的植物特征,将山丘分为四个区域。通过化学分析确定土壤以及植物茎和根中的重金属含量。从形态学和分子学的角度研究了定殖在巨型链球菌中的AM真菌群落。所有植物均定居,但根部内的真菌结构正常。通过PCR-RFLP和18S rDNA测序,鉴定出14种AM真菌类型:其中3种存在于所有考虑的区域,其中9种似乎特定于某些区域。 Glomus是AM的主要属。我们的分析证明了AM菌种的存在和相对较高的水平,并显示了基于覆盖土壤的修复计划如何有效地恢复AM菌群落,其耐受性足以在仍然受到污染的土壤中繁殖。

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