Dethier Laura, Jespersen J Rasmus P, Lloyd Jemma, Pupi Elena, Li Ruochen, Zhou Wanru, Liu Fang, Bai Yang, Halkier Barbara Ann, Xu Deyang
DynaMo Center, Department of Plant and Environmental Sciences, Faculty of Science, University of Copenhagen, Frederiksberg, Denmark.
Chinese Academy of Sciences, Institute of Genetics and Developmental Biology, Beijing, China.
Environ Microbiol Rep. 2025 Oct;17(5):e70186. doi: 10.1111/1758-2229.70186.
Natural soils are reservoirs of potentially beneficial microbes that can improve plant performance. Here, we isolated 75 bacterial strains from surface-sterilised roots of Arabidopsis thaliana (Arabidopsis) grown in a natural soil derived from an alder swamp. Culture-dependent isolation of individual strains from the roots, followed by monoassociation-based screening, identified seven bacteria that promoted Arabidopsis seedling weight. Of those, we identified a new species from the Dyella genus which increased the biomass of Arabidopsis and tomato seedlings in agar, as well as the shoot biomass of Arabidopsis grown in both the alder swamp soil and potting soil. Dyella sp. A4 specifically promoted the elongation of lateral roots without affecting lateral root number and primary root elongation. The new Dyella sp. A4 expands the toolbox of biostimulants for plant growth promotion via modulating root architecture.
天然土壤是潜在有益微生物的储存库,这些微生物可以改善植物生长状况。在这里,我们从生长在桤木沼泽天然土壤中的拟南芥表面消毒根中分离出75株细菌菌株。通过依赖培养的方法从根部分离单个菌株,随后基于单菌共培养进行筛选,鉴定出7种促进拟南芥幼苗生长的细菌。其中,我们从Dyella属中鉴定出一个新物种,它增加了琼脂中拟南芥和番茄幼苗的生物量,以及在桤木沼泽土壤和盆栽土壤中生长的拟南芥地上部分生物量。Dyella sp. A4特别促进侧根伸长,而不影响侧根数量和主根伸长。新的Dyella sp. A4通过调节根系结构,扩展了促进植物生长的生物刺激剂工具箱。