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首页> 外文期刊>Applied Soil Ecology >Influence of grass species and soil type on rhizosphere microbial community structure in grassland soils.
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Influence of grass species and soil type on rhizosphere microbial community structure in grassland soils.

机译:草种和土壤类型对草原土壤根际微生物群落结构的影响。

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A number of studies have reported species specific selection of microbial communities in the rhizosphere by plants. It is hypothesised that plants influence microbial community structure in the rhizosphere through rhizodeposition. We examined to what extent the structure of bacterial and fungal communities in the rhizosphere of grasses is determined by the plant species and different soil types. Three grass species were planted in soil from one site, to identify plant-specific influences on rhizosphere microbial communities. To quantify the soil-specific effects on rhizosphere microbial community structure, we planted one grass species (Lolium perenne L.) into soils from three contrasting sites. Rhizosphere, non-rhizosphere (bulk) and control (non-planted) soil samples were collected at regular intervals, to examine the temporal changes in soil microbial communities. Rhizosphere soil samples were collected from both root bases and root tips, to investigate root associated spatial influences. Both fungal and bacterial communities were analysed by terminal restriction fragment length polymorphism (TRFLP). Both bacterial and fungal communities were influenced by the plant growth but there was no evidence for plant species selection of the soil microbial communities in the rhizosphere of the different grass species. For both fungal and bacterial communities, the major determinant of community structure in rhizospheres was soil type. This observation was confirmed by cloning and sequencing analysis of bacterial communities. In control soils, bacterial composition was dominated by Firmicutes and Actinobacteria but in the rhizosphere samples, the majority of bacteria belonged to Proteobacteria and Acidobacteria. Bacterial community compositions of rhizosphere soils from different plants were similar, indicating only a weak influence of plant species on rhizosphere microbial community structure..
机译:许多研究报告了植物对根际微生物群落的物种特异性选择。假设植物通过根际沉积影响根际中的微生物群落结构。我们研究了在何种程度上草的根际细菌和真菌群落的结构是由植物种类和不同土壤类型决定的。在一个地点的土壤中种植了三种草种,以确定植物对根际微生物群落的特定影响。为了量化土壤对根际微生物群落结构的特异性影响,我们从三个不同的地点向土壤中种植了一种草种(黑麦草)。定期收集根际,非根际(散装)和对照(非种植)土壤样品,以检查土壤微生物群落的时间变化。从根基和根尖收集根际土壤样品,以研究与根相关的空间影响。通过末端限制性片段长度多态性(TRFLP)分析了真菌和细菌群落。细菌和真菌群落都受植物生长的影响,但是没有证据表明选择了不同草种的根际土壤微生物群落的植物物种。对于真菌和细菌群落,根际群落结构的主要决定因素是土壤类型。细菌群落的克隆和测序分析证实了这一观察结果。在对照土壤中,细菌组成主要由Firmicutes和放线菌组成,但在根际样品中,大多数细菌属于Proteobacteria和Acidobacteria。来自不同植物的根际土壤细菌群落组成相似,表明植物物种对根际微生物群落结构的影响很小。

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