Taxis-enhanced mineralization and co-metabolism of PAHs by bacteria in micrometer-scale environments
2024
Castilla-Alcántara, José carlos | Ghoshal, S. | Ortega Calvo, J. J. | Ministerio de Ciencia, Innovación y Universidades (España) | Agencia Estatal de Investigación (España) | Castilla-Alcántara, José carlos [0000-0002-9123-1052] | Ghoshal, S. [0000-0001-9968-6150] | Ortega Calvo, J. J. [0000-0003-1672-5199] | Consejo Superior de Investigaciones Científicas [https://ror.org/02gfc7t72]
8 páginas.- 4 figuras.- 2 tablas.- 40 referencias.- Supplementary data to this article can be found online at https://doi.org/10.1016/j.scitotenv.2024.175520
اظهر المزيد [+] اقل [-]Polycyclic aromatic hydrocarbons (PAHs) are associated with micropores in sediments and soils. This limits the bioaccessibility of these compounds via existing bioremediation technologies, as biodegradation is strongly influenced by the ability of bacteria to access different sizes of pores. In this work, we employed naphthalene and pyrene as model contaminants to evaluate the transformation capacity of the soil bacterium Pseudomonas putida G7 (2 × 1 μm) via mineralization and co-metabolic activity, respectively. Under non-growing conditions and in the absence of hydraulic flow, we examined how the tactic behavior of this motile bacterium influenced biodegradation of these two PAHs when passing through membranes with micrometer-sized pores (3 and 5 μm). The bacteria were spontaneously retained by the membranes, which blocked the contaminants away from a passive dosing source. However, the cells were mobilized through 5 μm pores after the application plant root exudate components (γ-aminobutyric acid, citrate and fructose) as strong chemoeffectors, which enhanced the mineralization of naphthalene and co-metabolism of pyrene. The tactic-mediated biodegradation enhancement did not occur through 3 μm pores, possibly due a physical constrain to the gradient sensing mechanism. Our results suggest that bacterial transport by chemotaxis may enhance the biotransformation of poorly bioaccessible contaminants present in micro-meter scale environments.
اظهر المزيد [+] اقل [-]We would like to thank the Ministry of Science, Innovation and Universities, Spain (BES-2017-079905, PID2019-109700RB-C21 and PID2022-139732OB-C21 ) for supporting this work.
اظهر المزيد [+] اقل [-]Peer reviewed
اظهر المزيد [+] اقل [-]الكلمات المفتاحية الخاصة بالمكنز الزراعي (أجروفوك)
المعلومات البيبليوغرافية
تم تزويد هذا السجل من قبل Instituto de Recursos Naturales y Agrobiología Sevilla