Bioaugmentation as microbiome engineering: a framework for evaluating functional performance, persistence, and safety. [PDF]
Cycoń M.
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Meloxicam in the Environment: Pathways of Entry, Ecotoxicity, and Removal Strategies. [PDF]
Tyan SM, Ivshina IB.
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Molecular insights into the high-efficiency catabolism of chloramphenicol for soil bioaugmentation by <i>Nocardia testacea</i> CS1. [PDF]
Wang Q +10 more
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Selective carboxylate production from detoxified lignocellulosic prehydrolysates through bioaugmented anaerobic fermentation. [PDF]
Rodríguez-Castro E +3 more
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Invasive plasmids as ecosystem engineers-from mechanism to application. [PDF]
Garland S, Orr VT, Hall JPJ, Harrison E.
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Limited impact of autochthonous bioaugmentation used for the bioremediation of the oily desert soil at elevated temperatures. [PDF]
Al-Mailem DM, Kansour MK.
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<i>Bacillus velezensis</i> LUB-8 bioaugmentation: a strategy for lactic acid reduction in pit mud of Chinese <i>nong-xiang baijiu</i>. [PDF]
He G +6 more
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Improvement of the quality and flavor profiles of persimmon vinegar by bioaugmented inoculation with <i>Lactobacillus acidophilus, Lactiplantibacillus plantarum</i> and <i>Wickerhamomyces anomalus</i>. [PDF]
Wan N, Wang M, Wang L, Wang D.
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Microbial remediation of recalcitrant pollutants in soil and geo-environmental engineering systems. [PDF]
S A, Priya AK.
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Plant and soil transcriptomics reveal the consequences of bioaugmentation of co-contaminated soil with Pseudomonas qingdaonensis ZCR6 during bacteria-assisted phytoremediation. [PDF]
Pacwa-Płociniczak M +4 more
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