Advances in Microbiology

Advances in Microbiology

ISSN Print: 2165-3402
ISSN Online: 2165-3410
www.scirp.org/journal/aim
E-mail: aim@scirp.org
"Effect of Heavy Metals on the Growth of Bacteria Isolated from Sewage Sludge Compost Tea"
written by María Vela-Cano, Antonio Castellano-Hinojosa, Antonia Fernández Vivas, María Victoria Martínez Toledo,
published by Advances in Microbiology, Vol.4 No.10, 2014
has been cited by the following article(s):
  • Google Scholar
  • CrossRef
[1] Enhancing sunflower resilience: Zinc-solubilizing bacteria mitigate cadmium uptake and translocation
2024
[2] Remediation of hydrocarbons and metals by hydrocarbon utilizing Pseudomonas taiwanensis YSA‐17 isolated from soil contaminated with petroleum
Journal of Basic …, 2023
[3] Efficacy of cadmium tolerant bacteria in combination with jasmonic acid to alleviate cdtoxicity in cauliflower.
Soil & Environment, 2023
[4] МҰНАЙТОТЫҚТЫРУШЫ БАКТЕРИЯЛАР НЕГІЗІНДЕГІ БИОСОРБЕНТТІҢ ДЕСТРУКТИВТІ БЕЛСЕНДІЛІГІН ЗЕРТТЕУ
Микробиология және …, 2023
[5] Rhodococcus: A promising genus of actinomycetes for the bioremediation of organic and inorganic contaminants
Journal of …, 2022
[6] Plant and microbe mediated bioremediation: A long-term remedy for heavy metal pollution
Asia-Pacific Journal of Molecular Biology and Biotechnology, 2022
[7] عزل وتعريف بكتريا Rhodococcus ودراسة كفاءتها في المعالجة الحيوية للمعادن الثقيلة في رماد النفايات الطبية‎
2021
[8] Diversity and Application of Heavy-Metal Resistant Microbes
Microbes in Microbial Communities, 2021
[9] Remediation of petroleum-contaminated soils with microbial and microbial combined methods: Advances, mechanisms, and challenges
Sustainability, 2021
[10] Exopolysaccharides and indole-3-acetic acid producing Bacillus safensis strain FN13 potential candidate for phytostabilization of heavy metals
2020
[11] Correlation Analysis of Bacterial Growth and Heavy Metal Concentration in Composting of Leachate Sludge and Municipal Sludge
2020
[12] Potential of Exopolysaccharides Producing-Lead Tolerant Bacillus Strains for Improving Spinach Growth under Lead Stress
International Journal of Agriculture and Biology, 2020
[13] Pb2+ biosorption from aqueous solutions by live and dead biosorbents of the hydrocarbon-degrading strain Rhodococcus sp. HX-2
2020
[14] Marine biotechnologies for the decontamination and restoration of degraded marine habitats
2020
[15] Interaction of Rhodococcus with Metals and Biotechnological Applications
2019
[16] Earthworms and cadmium–Heavy metal resistant gut bacteria as indicators for heavy metal pollution in soils?
2019
[17] Antimicrobial Aggregates for the In-Situ Control of Microbially Induced Concrete Corrosion
2018
[18] Assessment of arsenic oxidation potential of Microvirga indica S-MI1b sp. nov. in heavy metal polluted environment
Chemosphere, 2018
[19] Spontaneous thallium (I) oxidation with electricity generation in single-chamber microbial fuel cells
Applied Energy, 2018
[20] Earthworms and Cadmium-heavy metal resistant gut bacteria as indicators for heavy metal pollution in soils?
2018
[21] Characterisation of Novel Isosaccharinic Acid Degrading Bacteria and Communities
2018
[22] Bioaugmentation and phytoremediation of heavy metal from leachate contaminated soil/Jayanthi Barasarathi
2018
[23] Study of Total Bacteria and Ammonia-Oxidizing Bacteria and Ammonia-Oxidizing Archaea in Response to Irrigation with Sewage Sludge Compost Tea in Agricultural …
Compost Science & Utilization, 2018
[24] Bioaugmentation and Phytoremediation of Heavy Metal from Leachate Contaminated Soil
2018
[25] Handbook of metal-microbe interactions and bioremediation
2017
[26] Cadmium and lead tolerance mechanisms in bacteria and the role of halotolerant and moderately halophilic bacteria in their remediation
2017
[27] Assessment of the Diversity and Bioremediation Potential of Mercury-Resistant Marine Bacteria in the Bay of Bengal, Odisha, India
2017
[28] Evaluation of Heavy Metals Resistance in Biofilm Cells of Native Rhodococcus spp. Isolated from Soil.
Archives of Hygiene …, 2017
[29] 34 Cadmium and Lead Tolerance Mechanisms in Bacteria and the Role of Halotolerant and Moderately Halophilic Bacteria in Their Remediation
Handbook of Metal–Microbe Interactions and Bioremediation, 2017
[30] Effect of heavy-metal on synthesis of siderophores by Pseudomonas aeruginosa ZGKD3
Journal of Physics: Conference Series, 2017
[31] Biodegradation of di-n-butyl phthalate by bacterial consortium LV-1 enriched from river sludge
PLOS ONE, 2017
[32] Evaluation of heavy metals resistance in biofilm cells of native Rhodococcus spp. isolated from soil
2017
[33] Effects of Some Heavy Metals on Growth, Protein Content and Pigment Production by Streptomyces Coelicolor SM1
2016
[34] Characterization of induced metal responses of bacteria isolates from active non-sanitary landfill in Malaysia
International Biodeterioration & Biodegradation, 2016
[35] Effect of Pseudomonas fluorescens RB4 and Bacillus subtilis 189 on the phytoremediation potential of Catharanthus roseus (L.) in Cu and Pb contaminated soils
Research in Human Development, 2016
[36] The study of simultaneous resistance to heavy metals and antibiotics in resistant bacteria to silver and cadmium isolated from the wastewater
International …, 2016
[37] Pattern of multiresistant to antimicrobials and heavy metal tolerance in bacteria isolated from sewage sludge samples from a composting process at a recycling plant in southern Brazil
Environmental monitoring and assessment, 2015
[38] Pattern of multiresistant to antimicrobials and heavy metal tolerance in bacteria isolated from sewage sludge samples from a composting process at a recycling plant …
2015
[39] Bioremediation of heavy metals—an environmental cleanup technology
2015
[40] Bioremediation of Heavy Metals-An Environmental Cleanup Technology
2014
Free SCIRP Newsletters
Copyright © 2006-2025 Scientific Research Publishing Inc. All Rights Reserved.
Top