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The influence of tillage on the structure of rhizosphere and root-associated arbuscular mycorrhizal fungal communities

机译:耕作对根际和根系丛枝菌根真菌群落结构的影响

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Soil environmental factors affect the structure of arbuscular mycorrhizal (AM) fungal communities present in soil. However, it is not understood to which degree management practices such as tillage lead to dissimilarities between intra- and extraradical AM fungal communities. This study aims to assess the influence of two different soil management practices (conventional tillage and no-till) on the diversity of AMF communities, both in rhizosphere soil and inside corn roots. We hypothesized that under no-till, roots are colonized as they grow through the undisturbed fungal mycelia left from the previous crop whereas under conventional tillage they are colonized by those propagules that survived disturbance and can re-establish in their new relocated and mixed environment. We predicted that the degree of similarity of AM fungal communities inside versus outside the roots would be greater under no-till than under tillage. Using terminal restriction fragment length polymorphism (T-RFLP) and denaturing gradient gel electrophoresis we observed a different AM fungal community present in roots under no-till than under conventional tillage. Moreover, the communities present in the rhizosphere soil were different than in the roots of the corn plants. These results suggest that soil management does alter the diversity of AM fungal communities associated with corn roots and that plants influence the structure of the AMF community colonizing their roots. Sequencing results indicated that the majority of AMF species found in this agricultural soil was Glomus spp. However, further work is required to determine the extent to which AM fungal genotypic alterations by soil management influences competitive relationships.
机译:土壤环境因素影响土壤中存在的丛枝菌根(AM)真菌群落的结构。但是,尚不了解耕作等哪种管理措施会导致AM内和自由基外真菌群落之间的差异。这项研究旨在评估两种不同的土壤管理措施(常规耕作和免耕)对根际土壤和玉米根内部AMF群落多样性的影响。我们假设在免耕条件下,根系通过先前作物留下的未受干扰的真菌菌丝体生长时被定植,而在常规耕作下,它们被那些在干扰下幸存下来并可以在新的搬迁和混合环境中重新建立的繁殖体定植。我们预测,免耕条件下根部外的AM真菌群落的相似度将比耕作时更大。使用末端限制性片段长度多态性(T-RFLP)和变性梯度凝胶电泳,我们观察到免耕与常规耕作相比,根部存在不同的AM真菌群落。此外,根际土壤中存在的群落不同于玉米植物根部中的群落。这些结果表明,土壤管理确实改变了与玉米根相关的AM真菌群落的多样性,并且植物影响了植根于其根部的AMF群落的结构。测序结果表明,在这种农业土壤中发现的大多数AMF物种是Glomus spp。但是,需要进一步的工作来确定土壤管理引起的AM真菌基因型改变对竞争关系的影响程度。

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