Effect of plant communities on bacterial and fungal communities in a Central European grassland.

IF 6.2 2区 环境科学与生态学 Q1 GENETICS & HEREDITY
Clémentine Lepinay, Tomáš Větrovský, Milan Chytrý, Pavel Dřevojan, Karel Fajmon, Tomáš Cajthaml, Petr Kohout, Petr Baldrian
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Abstract

Background: Grasslands provide fundamental ecosystem services that are supported by their plant diversity. However, the importance of plant taxonomic diversity for the diversity of other taxa in grasslands remains poorly understood. Here, we studied the associations between plant communities, soil chemistry and soil microbiome in a wooded meadow of Čertoryje (White Carpathians, Czech Republic), a European hotspot of plant species diversity.

Results: High plant diversity was associated with treeless grassland areas with high primary productivity and high contents of soil nitrogen and organic carbon. In contrast, low plant diversity occurred in grasslands near solitary trees and forest edges. Fungal communities differed between low-diversity and high-diversity grasslands more strongly than bacterial communities, while the difference in arbuscular mycorrhizal fungi (AMF) depended on their location in soil versus plant roots. Compared to grasslands with low plant diversity, high-diversity plant communities had a higher diversity of fungi including soil AMF, a different fungal and soil AMF community composition and higher bacterial and soil AMF biomass. Root AMF composition differed only slightly between grasslands with low and high plant diversity. Trees dominated the belowground plant community in low-diversity grasslands, which influenced microbial diversity and composition.

Conclusions: The determinants of microbiome abundance and composition in grasslands are complex. Soil chemistry mainly influenced bacterial communities, while plant community type mainly affected fungal (including AMF) communities. Further studies on the functional roles of microbial communities are needed to understand plant-soil-microbe interactions and their involvement in grassland ecosystem services.

植物群落对中欧草地细菌和真菌群落的影响。
背景:草地提供的基本生态系统服务由其植物多样性支持。然而,人们对草地上植物分类多样性对其他类群多样性的重要性仍然知之甚少。在这里,我们研究了欧洲植物物种多样性热点地区 Čertoryje(捷克共和国白喀尔巴阡山脉)有林草甸的植物群落、土壤化学和土壤微生物组之间的关系:结果:植物多样性高与初级生产力高、土壤氮和有机碳含量高的无树草地有关。与此相反,靠近孤树和森林边缘的草地植物多样性较低。真菌群落在低多样性草地和高多样性草地之间的差异比细菌群落更大,而丛枝菌根真菌(AMF)的差异则取决于它们在土壤中的位置和在植物根部的位置。与植物多样性低的草地相比,高多样性植物群落的真菌多样性更高,包括土壤 AMF,真菌和土壤 AMF 群落组成不同,细菌和土壤 AMF 生物量更高。植物多样性低的草地和植物多样性高的草地的根部 AMF 组成仅略有不同。树木在低多样性草地的地下植物群落中占主导地位,这影响了微生物的多样性和组成:结论:决定草地微生物群丰度和组成的因素非常复杂。土壤化学主要影响细菌群落,而植物群落类型主要影响真菌(包括AMF)群落。需要进一步研究微生物群落的功能作用,以了解植物-土壤-微生物之间的相互作用及其在草地生态系统服务中的参与。
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来源期刊
Environmental Microbiome
Environmental Microbiome Immunology and Microbiology-Microbiology
CiteScore
7.40
自引率
2.50%
发文量
55
审稿时长
13 weeks
期刊介绍: Microorganisms, omnipresent across Earth's diverse environments, play a crucial role in adapting to external changes, influencing Earth's systems and cycles, and contributing significantly to agricultural practices. Through applied microbiology, they offer solutions to various everyday needs. Environmental Microbiome recognizes the universal presence and significance of microorganisms, inviting submissions that explore the diverse facets of environmental and applied microbiological research.
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