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Co-occurring grass species differ in their associated microbial community composition in a temperate native grassland.

机译:在温带天然草地上,共生的草种在相关微生物群落组成上有所不同。

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Background and aims: Specific associations exist between plant species and the soil microbial community and these associations vary between habitat types and different plant groups. However, there is evidence that the associations are highly specific. Hence, we aimed to determine the specificity of plant-microbe relationships amongst co-occurring grass species in a temperate grassland. Methods and results: We examined the broad microbial groups of bacteria and fungi as well as a specific fungal group, the arbuscular mycorrhizal community amongst two dominant C3 and C4 species and one sub-dominant C3 species using terminal restriction fragment length polymorphism (T-RFLP) analysis. We found that the two dominant species were more similar to each other in their bacterial and arbuscular mycorrhizal community composition than either was to the sub-dominant species, but not in their fungal community composition. We also found no clear evidence that those differences were directly linked to soil chemical properties. Conclusions: Our results demonstrate that co-occurring grass species have a distinct soil microbial community and T-RFLP analysis is able to detect plant species effect on the microbial community composition on an extremely local scale, providing an insight into the differences in the response of bacterial, fungal and arbuscular mycorrhizal communities to different, but similar and co-occurring, plant species.
机译:背景与目的:植物物种与土壤微生物群落之间存在特定的关联,并且这些关联在生境类型和不同植物群之间也不同。但是,有证据表明这些关联是高度特定的。因此,我们旨在确定温带草原中共生草种之间植物与微生物关系的特异性。方法和结果:我们检查了细菌和真菌的广泛微生物群以及特定的真菌群,两个主要的C 3 和C 4 物种之间的丛枝菌根群落和末端限制性片段长度多态性(T-RFLP)分析了一种亚优势C 3 。我们发现,两个优势种在细菌和丛枝菌根群落组成上彼此之间的相似性都比在次优势物种上相似,但在真菌群落组成上却不相似。我们也没有发现明确的证据表明这些差异与土壤化学性质直接相关。结论:我们的结果表明,同时存在的草种具有独特的土壤微生物群落,并且T-RFLP分析能够在极局部的范围内检测植物物种对微生物群落组成的影响,从而洞察了不同生物的响应。细菌,真菌和丛枝菌根群落为不同但相似且同时存在的植物物种。

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