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Mycorrhizal fungal identity and diversity relaxes plant-plant competition

机译:菌根真菌的特性和多样性缓解了植物与植物之间的竞争

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There is a great interest in ecology in understanding the role of soil microbial diversity for plant productivity and coexistence. Recent research has shown increases in species richness of mutualistic soil fungi, the arbuscular mycorrhizal fungi (AMF), to be related to increases in aboveground productivity of plant communities. However, the impact of AMF richness on plant-plant interactions has not been determined. Moreover, it is unknown whether species-rich AMF communities can act as insurance to maintain productivity in a fluctuating environment (e.g., upon changing soil conditions). We tested the impact of four different AMF taxa and of AMF diversity (no AMF, single AMF taxa, and all four together) on competitive interactions between the legume Trifolium pratense and the grass Lolium multiflorum grown under two different soil conditions of low and high sand content. We hypothesized that more diverse mutualistic interactions (e.g., when four AMF taxa are present) can ease competitive effects between plants, increase plant growth, and maintain plant productivity across different soil environments. We used quantitative PCR to verify that AMF taxa inoculated at the beginning of the experiment were still present at the end. The presence of AMF reduced the competitive inequality between the two plant species by reducing the growth suppression of the legume by the grass. High AMF richness enhanced the combined biomass production of the two plant species and the yield of the legume, particularly in the more productive soil with low sand content. In the less productive (high sand content) soil, the single most effective AMF had an equally beneficial effect on plant productivity as the mixture of four AMF. Since contributions of single AMF to plant productivity varied between both soils, higher AMF richness would be required to maintain plant productivity in heterogeneous environments. Overall this work shows that AMF diversity promotes plant productivity and that AMF diversity can act as insurance to sustain plant productivity under changing environmental conditions.
机译:在生态学方面,人们非常了解土壤微生物多样性对植物生产力和共存的作用。最近的研究表明,互生土壤真菌(丛枝菌根真菌(AMF))物种丰富度的提高与植物群落地上生产力的提高有关。但是,AMF丰富度对植物-植物相互作用的影响尚未确定。此外,尚不清楚物种丰富的AMF社区是否可以作为在不断变化的环境中(例如,在土壤条件变化时)维持生产力的保证。我们测试了四种不同的AMF分类单元和AMF多样性(无AMF,单个AMF分类单元,以及所有这四种在一起)对在两种不同土壤条件下(低沙和高沙)生长的豆类Tri叶草和多花黑麦草之间竞争性相互作用的影响内容。我们假设,更多样化的互惠互动(例如,当存在四个AMF分类单元时)可以缓解植物之间的竞争效应,提高植物生长并在不同土壤环境中维持植物生产力。我们使用定量PCR来验证在实验开始时接种的AMF分类单元仍然存在。 AMF的存在通过减少草对豆类植物的生长抑制作用,减少了两种植物之间的竞争不平等。高AMF含量提高了两种植物的生物量总产量和豆类产量,特别是在低沙含量的高产土壤中。在低产(高含沙量)土壤中,单一的最有效的AMF与四种AMF的混合物对植物的生产力具有同等有利的作用。由于两种土壤中单一AMF对植物生产力的贡献各不相同,因此需要更高的AMF丰富度才能在异质环境中维持植物生产力。总体而言,这项工作表明,AMF多样性可以提高植物的生产力,AMF多样性可以作为在不断变化的环境条件下维持植物生产力的保证。

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