Li Qing, He Yue, Feng Jian, He Yutong, Zhang Sheng
Key Laboratory for Bio-Resources and Eco-Environment of the Ministry of Education, College of Life Sciences, Sichuan University, Chengdu, China.
Plant Cell Environ. 2025 Jan;48(1):599-614. doi: 10.1111/pce.15162. Epub 2024 Sep 19.
The enhancement of plant growth by soil fertilization and microbial inoculation involves different mechanisms, particularly by altering the phyllosphere microbiome. This study investigated how nitrogen (N) fertilization, Pseudomonas fluorescens strain R124 inoculation and their combined effects influence the growth of different-aged Salix matsudana cuttings by modulating N dynamics within the phyllosphere microbiome. Results showed that P. fluorescens inoculation was significantly more effective than N fertilization alone, enhancing biomass, plant nutrient uptake, soil nutrient content and root development by 90.51%, 18.18%, 72.74% and 126.20%, respectively. Crucially, the inoculation notably shifted the beta-diversity of the phyllosphere microbial community, with K-strategy fungi enhancing plant N fixation and subsequent plant growth. Cuttings from middle-aged forests displayed more robust growth than those from young-aged, associated with a varied impact on phyllosphere fungi, notably increasing the relative abundance of Myriangiales in young (76.37%) and Capnodiales in middle-aged cuttings (42.37%), which improve phyllosphere stability and plant health. These findings highlight the effectiveness of microbial inoculation over N fertilization in promoting plant growth and provide valuable insights for the sustainable management of willow plantations at different stages of development.
通过土壤施肥和微生物接种来促进植物生长涉及不同的机制,特别是通过改变叶际微生物群落。本研究调查了氮肥施用、荧光假单胞菌菌株R124接种及其联合效应对不同年龄旱柳插条生长的影响,通过调节叶际微生物群落中的氮动态来实现。结果表明,接种荧光假单胞菌比单独施用氮肥显著更有效,分别使生物量、植物养分吸收、土壤养分含量和根系发育提高了90.51%、18.18%、72.74%和126.20%。至关重要的是,接种显著改变了叶际微生物群落的β多样性,K策略真菌增强了植物的固氮作用及随后的植物生长。中年林的插条比幼年林的插条生长更健壮,这与对叶际真菌的不同影响有关,显著增加了幼年插条中多腔菌目的相对丰度(76.37%)和中年插条中煤炱目的相对丰度(42.37%),这提高了叶际稳定性和植物健康。这些发现突出了微生物接种在促进植物生长方面优于氮肥施用的有效性,并为柳树人工林不同发育阶段的可持续管理提供了有价值的见解。