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植物促生根际细菌(PGPR)在多种作物和复杂种植系统中的广谱应用。

Broad-spectrum applications of plant growth-promoting rhizobacteria (PGPR) across diverse crops and intricate planting systems.

作者信息

Zhang Shixiang, Li Fengmin, Chang Luyin, Zhang Qiyu, Zhang Zhenyu, Wu Tianci, Wu Yanlin, Wang Zhi, Su Yulong, Yang Xingyou, Gao Weichang, Li Mengsha, Wu Yue, Jiang Ying

机构信息

Zhengzhou Tobacco Research Institute of CNTC, Zhengzhou, China.

College of Resources and Environment, Henan Agricultural University, Zhengzhou, China.

出版信息

Microbiol Spectr. 2025 Mar 4;13(3):e0187924. doi: 10.1128/spectrum.01879-24. Epub 2025 Jan 22.

Abstract

Multifunctional plant growth-promoting rhizobacteria (PGPR) have garnered significant attention in agricultural applications; however, a few have applied them in crop rotation or intercropping fields. To identify PGPR with strong colonization ability and broad spectrum benefit, we screened strains from the local tobacco rhizosphere and evaluated their growth-promoting effects across various crops and farming systems. In this study, strain L8, identified as , was selected as a multifunctional PGPR capable of producing indole-3-acetic acid (IAA), solubilizing potassium, and mobilizing both organic and inorganic phosphorus. Compared with the control group, the soil treated with strain L8 in tobacco pot experiments showed significantly higher levels of IAA, available potassium, and available phosphorus. Furthermore, tobacco plants inoculated with L8 exhibited significantly improved growth parameters compared with the uninoculated control. The results indicated that compared with the control, strain L8 increased tobacco fresh weight (by 83.18%), plant height (by 29.32%), relative chlorophyll content (by 14.33%), as well as plant phosphorus (by 23.78%) and potassium (by 30.81%). Interestingly, L8 not only enhanced tobacco growth but also improved tobacco root morphology, significantly increasing root length (1.55-fold), root surface area (1.78-fold), and root volume (2.05-fold) compared with the control. These findings provide valuable insights into utilizing plant growth-promoting bacteria for tobacco production. Moreover, the inoculation strain L8 enriched soil organic matter and nutrient content in both wheat ()-maize () rotation and peanut ()-maize intercropping systems. Furthermore, within the intricate tillage systems of wheat-corn rotation and peanut-corn intercropping, multifunctional PGPR strain L8 can play a crucial role in crop growth promotion, yield increase, and higher soil nutrient availability.IMPORTANCEThese findings aim to study the application of plant growth-promoting rhizobacteria (PGPR) in diverse crops and complex planting systems, showing their adaptability and effectiveness in various agricultural contexts. The study suggests that this strain improves nutrient utilization in the soil, enhances soil health, and plays a significant role in plant growth through the secretion of substances like auxin (IAA). In parallel, we observed that applying this strain improved the production efficiency of wheat, corn, and peanuts within complex farming systems, indicating that this method holds the potential for enhancing both the yield and quality of various crops.

摘要

多功能植物促生根际细菌(PGPR)在农业应用中受到了广泛关注;然而,很少有人将它们应用于轮作或间作田。为了鉴定具有强大定殖能力和广谱益处的PGPR,我们从当地烟草根际筛选菌株,并评估它们在各种作物和种植系统中的促生长效果。在本研究中,鉴定为 的菌株L8被选为多功能PGPR,它能够产生吲哚-3-乙酸(IAA)、溶解钾,并活化有机和无机磷。与对照组相比,在烟草盆栽试验中用菌株L8处理的土壤中IAA、有效钾和有效磷的含量显著更高。此外,接种L8的烟草植株与未接种的对照组相比,生长参数有显著改善。结果表明,与对照组相比,菌株L8使烟草鲜重增加(83.18%)、株高增加(29.32%)、相对叶绿素含量增加(14.33%),以及植株磷含量增加(23.78%)和钾含量增加(30.81%)。有趣的是,L8不仅促进了烟草生长,还改善了烟草根系形态,与对照组相比,根长显著增加(1.55倍)、根表面积增加(1.78倍)和根体积增加(2.05倍)。这些发现为利用植物促生细菌进行烟草生产提供了有价值的见解。此外,接种菌株L8提高了小麦( )-玉米( )轮作和花生( )-玉米间作系统中的土壤有机质和养分含量。此外,在小麦-玉米轮作和花生-玉米间作的复杂耕作系统中,多功能PGPR菌株L8在促进作物生长、提高产量和提高土壤养分有效性方面可以发挥关键作用。

重要性

这些发现旨在研究植物促生根际细菌(PGPR)在不同作物和复杂种植系统中的应用,展示它们在各种农业环境中的适应性和有效性。该研究表明,这种菌株提高了土壤中的养分利用率,增强了土壤健康,并通过分泌生长素(IAA)等物质在植物生长中发挥重要作用。同时,我们观察到在复杂的耕作系统中应用这种菌株提高了小麦、玉米和花生的生产效率,表明这种方法具有提高各种作物产量和质量的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5a4/11878030/88cc2bdbbaf3/spectrum.01879-24.f001.jpg

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