López-García Álvaro, Jurado-Rivera José A, Bota Josefina, Cifre Josep, Baraza Elena
Department of Animal Biology, Plant Biology and Ecology, Universidad de Jaén, E23071 Jaén, Spain.
Department of Biology, Universitat de les Illes Balears, E07122 Palma de Mallorca, Spain.
J Fungi (Basel). 2020 Nov 27;6(4):317. doi: 10.3390/jof6040317.
The interest in the use of microbes as biofertilizers is increasing in recent years as the demands for sustainable cropping systems become more pressing. Although very widely used as biofertilizers, arbuscular mycorrhizal (AM) fungal associations with specific crops have received little attention and knowledge is limited, especially in the case of vineyards. In this study, the AM fungal community associated with soil and roots of a vineyard on Mallorca Island, Spain was characterized by DNA sequencing to resolve the relative importance of grape variety on their diversity and composition. Overall, soil contained a wider AM fungal diversity than plant roots, and this was found at both taxonomic and phylogenetic levels. The major effect on community composition was associated with sample type, either root or soil material, with a significant effect for the variety of the grape. This effect interacted with the spatial distribution of the plants. Such an interaction revealed a hierarchical effect of abiotic and biotic factors in shaping the composition of AM fungal communities. Our results have direct implications for the understanding of plant-fungal assemblages and the potential functional differences across plants in vineyard cropping.
近年来,随着对可持续种植系统的需求日益迫切,将微生物用作生物肥料的关注度不断提高。尽管丛枝菌根(AM)真菌与特定作物的关联作为生物肥料被广泛应用,但却很少受到关注,相关知识也很有限,尤其是在葡萄园方面。在本研究中,通过DNA测序对西班牙马略卡岛一个葡萄园土壤和根系中的AM真菌群落进行了特征分析,以确定葡萄品种对其多样性和组成的相对重要性。总体而言,土壤中的AM真菌多样性比植物根系更广泛,这在分类学和系统发育水平上均有发现。对群落组成的主要影响与样本类型(根系或土壤材料)有关,葡萄品种也有显著影响。这种影响与植物的空间分布相互作用。这种相互作用揭示了非生物和生物因素在塑造AM真菌群落组成方面的层级效应。我们的结果对于理解葡萄园种植中植物 - 真菌组合以及不同植物间潜在的功能差异具有直接意义。