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利用[某种]根瘤内生菌促进豆科植物生长并适应退化的河口土壤。

Enhanced legume growth and adaptation to degraded estuarine soils using sp. nodule endophytes.

作者信息

Flores-Duarte Noris J, Caballero-Delgado Sara, Pajuelo Eloisa, Mateos-Naranjo Enrique, Redondo-Gómez Susana, Navarro-Torre Salvadora, Rodríguez-Llorente Ignacio D

机构信息

Department of Microbiology and Parasitology, Faculty of Pharmacy, University of Sevilla, Sevilla, Spain.

Department of Plant Biology and Ecology, Faculty of Biology, University of Sevilla, Sevilla, Spain.

出版信息

Front Microbiol. 2022 Oct 20;13:1005458. doi: 10.3389/fmicb.2022.1005458. eCollection 2022.

Abstract

The joint estuary of Tinto and Odiel rivers (SW Spain) is one of the most degraded and polluted areas in the world and its recovery is mandatory. Legumes and their associated bacteria are recommended sustainable tools to fight against soils degradation and loss of fertility due to their known positive impacts on soils. The aim of this work was to isolate and characterize plant growth promoting nodule endophytes (PGPNE) from inside nodules of spp. naturally growing in the estuary of the Tinto and Odiel Rivers and evaluate their ability to promote legume adaptation in degraded soils. The best rhizobia and non-rhizobia among 33 endophytes were selected based on their plant growth promoting properties and bacterial enzymatic activities. These strains, identified as sp. N4, sp. N8, sp. N10 and sp. N12, were used for studies using plants. The effects of individual or combined inoculation on seed germination, plant growth and nodulation were studied, both on plates and pots containing nutrient-poor soils and moderately contaminated with metals/loids from the estuary. In general, inoculation with combinations of rhizobia and increased plant biomass (up to 1.5-fold) and nodules number (up to 2-fold) compared to single inoculation with rhizobia, ameliorating the physiological state of the plants and helping to regulate plant stress mechanisms. The greatest benefits were observed in plants inoculated with the consortium containing the four strains. In addition, combined inoculation with and increased As and metals accumulation in plant roots, without significant differences in shoot metal accumulation. These results suggest that PGPNE are useful biotools to promote legume growth and phytostabilization potential in nutrient-poor and/or metals contaminated estuarine soils.

摘要

廷托河和奥迪埃尔河的联合河口(西班牙西南部)是世界上退化和污染最严重的地区之一,其恢复势在必行。豆科植物及其相关细菌因其对土壤已知的积极影响,被认为是对抗土壤退化和肥力丧失的可持续工具。这项工作的目的是从廷托河和奥迪埃尔河河口自然生长的 spp. 的根瘤中分离和鉴定促进植物生长的根瘤内生菌(PGPNE),并评估它们促进豆科植物在退化土壤中适应的能力。根据其促进植物生长的特性和细菌酶活性,从 33 种内生菌中筛选出最佳的根瘤菌和非根瘤菌。这些菌株被鉴定为 sp. N4、 sp. N8、 sp. N10 和 sp. N12,用于使用 植物的 研究。研究了单独接种或联合接种对种子萌发、植物生长和结瘤的影响,实验在含有贫瘠土壤且受到河口金属/类金属中度污染的平板和花盆中进行。一般来说,与单独接种根瘤菌相比,接种根瘤菌和 的组合可增加植物生物量(高达 1.5 倍)和根瘤数量(高达 2 倍),改善植物的生理状态并有助于调节植物应激机制。在接种含有这四种菌株的联合体的植物中观察到最大的益处。此外,联合接种 和 增加了植物根部砷和金属的积累,地上部金属积累没有显著差异。这些结果表明,PGPNE 是促进豆科植物在贫瘠和/或金属污染的河口土壤中生长和植物稳定化潜力的有用生物工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0979/9631207/debb815eaf89/fmicb-13-1005458-g001.jpg

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