Zampieri Elisa, Cucu Maria Alexandra, Franchi Elisabetta, Fusini Danilo, Pietrini Ilaria, Centritto Mauro, Balestrini Raffaella
Institute for Sustainable Plant Protection (CNR-IPSP), National Research Council of Italy, Turin, Italy.
R&D Environmental & Biological Laboratories, Eni S.P.A, San Donato Milanese, Italy.
Curr Microbiol. 2025 Mar 17;82(5):199. doi: 10.1007/s00284-025-04171-8.
Plant growth-promoting bacteria (PGPB) are vital for enhancing plant growth, productivity, and sustainability in agriculture, also addressing food security challenges. The plant growth-promoting (PGP) potential of ten bacterial strains, isolated from a cultivated field in southern Italy, was characterized with biochemical and molecular analyses and plant growth-promoting activity was tested on two durum wheat varieties (RGT Aventadur and Farah) and a lentil one (Altamura Lentil) under semi-controlled conditions. The isolated strains were classified using 16S rRNA gene sequencing. Results showed that they belonged to Pseudomonaceae, Rhizobiaceae, Bacillaceae and Micrococcaceae families. They exhibited typical features of PGPB, such as inorganic phosphate solubilization, production of indole acetic acid, ammonia, and biofilm formation. Bacterial inoculation of wheat plants led to the identification of potentially interesting strains that positively affected biometric parameters (i.e., shoot height, tiller number and spike weight) in a genotype-dependent way. The contrasting effect of some bacterial strains on the two wheat genotypes supports the necessity to accurately formulate synthetic microbial consortia characterized by long-term PGP traits, taking into account that the application under field conditions might also be influenced by native soil microbiota.
植物促生细菌(PGPB)对于促进植物生长、提高农业生产力和可持续性至关重要,同时也有助于应对粮食安全挑战。从意大利南部一块耕地中分离出的10株细菌菌株,通过生化和分子分析对其植物促生(PGP)潜力进行了表征,并在半控制条件下对两个硬粒小麦品种(RGT Aventadur和Farah)和一个小扁豆品种(阿尔塔穆拉小扁豆)进行了植物促生活性测试。使用16S rRNA基因测序对分离出的菌株进行分类。结果表明,它们分别属于假单胞菌科、根瘤菌科、芽孢杆菌科和微球菌科。它们表现出植物促生细菌的典型特征,如无机磷溶解、吲哚乙酸、氨的产生以及生物膜形成。对小麦植株进行细菌接种后,鉴定出了一些潜在有趣的菌株,这些菌株以基因型依赖的方式对生物特征参数(即株高、分蘖数和穗重)产生了积极影响。一些细菌菌株对两种小麦基因型的不同作用支持了精确配制具有长期植物促生特性的合成微生物群落的必要性,同时要考虑到田间条件下的应用可能也会受到本地土壤微生物群的影响。