Crop Research Institute, Prague, Czech Republic.
Institute of Microbiology, Czech Academy of Sciences, Prague, Czech Republic.
Environ Microbiol Rep. 2022 Oct;14(5):732-741. doi: 10.1111/1758-2229.13108. Epub 2022 Aug 4.
Arbuscular mycorrhizal fungi (AMF) provide crucial support for the establishment of plants in novel environments. We hypothesized that the OTU/genus richness and diversity of soil- and root-associated AMF associated with alien plant species in their exotic ranges are lower than those in their native ranges. We examined the root-associated and soil-dwelling AMF of 11 invasive plant species in their native and exotic ranges in the United States and Europe by DNA sequencing of the ITS2 locus. Examined root-associated AMF assemblages were simplified, which manifested as the loss of several AMF genera in the exotic ranges of the plants. These fungal assemblages were also characterized by greater dominance and simplification of the fungal assemblages. The dominant fungal genera were present regardless of whether their host plants were in their native or exotic ranges. Interestingly, both the native and invaded soils hosted diverse local AMF assemblages. Therefore, alien plant invasions were not limited to soils with low AMF diversity. Some AMF taxa could be context-dependent passengers rather than drivers of alien plant invasions. Further studies should identify functions of AMF missing or less abundant in roots of plants growing in exotic ranges.
丛枝菌根真菌 (AMF) 为植物在新环境中的建立提供了至关重要的支持。我们假设,与外来植物物种相关的土壤和根系相关 AMF 的 OTU/属丰富度和多样性在其外来分布区低于其原生分布区。我们通过 ITS2 基因座的 DNA 测序,检查了美国和欧洲 11 种入侵植物物种在其原生和外来分布区的根系相关和土壤栖居 AMF。研究发现,根系相关的 AMF 组合简化了,这表现为植物在其外来分布区的几种 AMF 属的丧失。这些真菌组合的特征还包括真菌组合的更大优势和简化。无论其宿主植物是在原生还是外来分布区,优势真菌属都存在。有趣的是,原生和入侵土壤都存在多样化的本地 AMF 组合。因此,外来植物入侵并不仅限于 AMF 多样性低的土壤。一些 AMF 分类群可能是外来植物入侵的情境依赖性乘客,而不是驱动因素。进一步的研究应该确定在生长在外来分布区的植物的根系中缺失或较少的 AMF 类群的功能。