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首页> 外文期刊>Microbial Biotechnology >Potential for plant growth promotion by a consortium of stress‐tolerant 2,4‐dinitrotoluene‐degrading bacteria: isolation and characterization of a military soil
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Potential for plant growth promotion by a consortium of stress‐tolerant 2,4‐dinitrotoluene‐degrading bacteria: isolation and characterization of a military soil

机译:耐胁迫的2,4-二硝基甲苯降解菌财团促进植物生长的潜力:军用土壤的分离和鉴定

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SummaryThe presence of explosives in soils and the interaction with drought stress and nutrient limitation are among the environmental factors that severely affect plant growth on military soils. In this study, we seek to isolate and identify the cultivable bacteria of a 2,4-dinitrotoluene (DNT) contaminated soil (DS) and an adjacent grassland soil (GS) of a military training area aiming to isolate new plant growth-promoting (PGP) and 2,4-DNT-degrading strains. Metabolic profiling revealed disturbances in Ecocarbon use in the bare DS; isolation of cultivable strains revealed a lower colony-forming-unit count and a less diverse community associated with DS in comparison with GS. New 2,4-DNT-tolerant strains were identified by selective enrichments, which were further characterized by auxanography for 2,4-DNT use, resistance to drought stress, cold, nutrient starvation and PGP features. By selecting multiple beneficial PGP and abiotic stress-resistant strains, efficient 2,4-DNT-degrading consortia were composed. After inoculation, consortium UHasselt Sofie 3 with seven members belonging to Burkholderia, Variovorax, Bacillus, Pseudomonas and Ralstonia species was capable to successfully enhance root length of Arabidopsis under 2,4-DNT stress. After 9 days, doubling of main root length was observed. Our results indicate that beneficial bacteria inhabiting a disturbed environment have the potential to improve plant growth and alleviate 2,4-DNT stress.
机译:总结爆炸物在土壤中的存在以及与干旱胁迫和养分限制的相互作用是严重影响军用土壤上植物生长的环境因素。在这项研究中,我们试图分离和鉴定军事训练区的2,4-二硝基甲苯(DNT)污染土壤(DS)和邻近的草地土壤(GS)的可培养细菌,目的是分离促进新植物生长的细菌( PGP)和2,4-DNT降解菌株。代谢曲线分析显示,裸露的DS中的生态碳使用受到干扰;与GS相比,可培养菌株的分离显示出较低的菌落形成单位数和与DS相关的群落较少多样性。通过选择性富集鉴定了新的耐2,4-DNT的菌株,并通过辅助层析法对2,4-DNT的使用,对干旱胁迫的抗性,耐寒性,营养缺乏和PGP特性进行了进一步表征。通过选择多个有益的PGP和非生物抗逆菌株,组成了有效的2,4-DNT降解菌群。接种后,具有七个伯克霍尔德氏菌,Variovorax,芽孢杆菌,假单胞菌和Ralstonia菌种的七个成员的UHasselt Sofie 3财团能够成功地提高2,4-DNT胁迫下拟南芥的根长。 9天后,观察到主根长度加倍。我们的结果表明,居住在受干扰环境中的有益细菌具有改善植物生长和缓解2,4-DNT胁迫的潜力。

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