Dobrzyński J, Kulkova I, Jakubowska Z, Wróbel B
Institute of Technology and Life Sciences-National Research Institute, Falenty, 3 Hrabska Avenue, 05-090, Raszyn, Poland.
Sci Rep. 2025 Jan 25;15(1):3248. doi: 10.1038/s41598-025-86820-3.
Plant growth-promoting bacteria (PGPB) are considered an effective eco-friendly biostimulator. However, relatively few studies have examined how PGPB affect the native bacterial community of major crops. Thus, this study investigates the impact of a PGPB consortium, comprising Pseudomonas sp. G31 and Azotobacter sp. PBC2 (P1A), on the soil bacterial community of wheat under field conditions. As a result of PGPB application, we observed a significant increase in seed yield, as well as in nitrate content (1st and 3rd time points) and available phosphorus (2nd time point) in the rhizosphere compared to control. For the metataxonomic study, Next-Generation Sequencing was performed using the Illumina NovaSeq 6000 system. The consortium used did not have a significant impact on the diversity of native soil bacteria and slightly affected the taxonomic composition of bacteria with no significant changes in bacterial dominants at the phylum and genus level. Nevertheless, 3 weeks after application, P1A increased the relative abundance of Nitrospira which could have influenced the increase in nitrates in the rhizosphere, and also decreased Bdellovibrio. The results indicate that the P1A consortium, due to its ability to promote plant growth without detrimental alternations in the bacterial community of the soil, may be a potential candidate for commercialization.
植物促生细菌(PGPB)被认为是一种有效的生态友好型生物刺激剂。然而,相对较少的研究考察了PGPB如何影响主要农作物的原生细菌群落。因此,本研究调查了由假单胞菌属G31和固氮菌属PBC2(P1A)组成的PGPB联合体在田间条件下对小麦土壤细菌群落的影响。施用PGPB后,我们观察到与对照相比,种子产量显著增加,根际硝酸盐含量(第1和第3个时间点)以及有效磷(第2个时间点)也显著增加。对于宏分类学研究,使用Illumina NovaSeq 6000系统进行了下一代测序。所使用的联合体对原生土壤细菌的多样性没有显著影响,对细菌的分类组成有轻微影响,在门和属水平上细菌优势菌群没有显著变化。然而,施用3周后,P1A增加了硝化螺旋菌属的相对丰度,这可能影响了根际硝酸盐的增加,同时也降低了蛭弧菌属的丰度。结果表明,P1A联合体由于其能够促进植物生长而不会对土壤细菌群落产生有害改变,可能是商业化的潜在候选者。