Plant-Microbe Interactions, Department of Biology, Faculty of Science, Utrecht University, Utrecht, the Netherlands.
Plant Soil Interactions, Division Agroecology and Environment, Agroscope, Zürich, Switzerland.
Environ Microbiol Rep. 2024 Feb;16(1):e13205. doi: 10.1111/1758-2229.13205. Epub 2023 Nov 29.
Soil and plant roots are colonized by highly complex and diverse communities of microbes. It has been proposed that bacteria and fungi have synergistic effects on litter decomposition, but experimental evidence supporting this claim is weak. In this study, we manipulated the composition of two microbial kingdoms (Bacteria and Fungi) in experimental microcosms. In microcosms that were inoculated with fungi, litter loss was 47% higher than in microcosms that were not inoculated or only inoculated with bacteria. Combined inoculation with both bacteria and fungi did not significantly enhance decomposition compared with the fungi-only treatments, and, as such, we found no evidence for complementary effects using our experimental setup. Inoculation with fungi also had a positive impact on plant growth after 4 and 8 weeks (480% and 710% growth stimulation, respectively). After 16 weeks, plant biomass was highest in microcosms where both bacteria and fungi were present pointing to fungal-bacterial complementarity in stimulating plant growth. Overall, this study suggests that fungi are the main decomposers of plant litter and that the inoculated fungi contribute to plant growth in our experimental system.
土壤和植物根系被高度复杂和多样化的微生物群落所定植。有人提出细菌和真菌对凋落物分解具有协同作用,但支持这一说法的实验证据很薄弱。在这项研究中,我们在实验微宇宙中操纵了两个微生物王国(细菌和真菌)的组成。在接种真菌的微宇宙中,凋落物损失比未接种或仅接种细菌的微宇宙高出 47%。与仅接种真菌的处理相比,同时接种细菌和真菌并没有显著增强分解作用,因此,我们在实验设置中没有发现互补效应的证据。真菌接种也对 4 周和 8 周后的植物生长产生了积极影响(分别为 480%和 710%的生长刺激)。16 周后,在同时存在细菌和真菌的微宇宙中,植物生物量最高,这表明真菌-细菌在刺激植物生长方面具有互补性。总的来说,这项研究表明真菌是植物凋落物的主要分解者,接种的真菌有助于我们实验系统中植物的生长。