Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 6 de 6
Filter
Add more filters










Database
Language
Publication year range
1.
Braz J Microbiol ; 55(1): 245-254, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38212508

ABSTRACT

Plastics are widely used for diverse applications due to their versatility. However, their negative impact on ecosystems is undeniable due to their long-term degradation. Thus, there is a rising need for developing eco-friendlier alternatives to substitute fossil-based plastics, like biopolymers. PHA are synthesized intracellularly by microorganisms under stressful conditions of growth and have similar characteristics to conventional polymers, like their melting point, transition temperatures, crystallinity, and flexibility. Although it is feasible to use biopolymers for diverse industrial applications, their elevated production cost due to the supplies needed for microbiological procedures and the low productivity yields obtained have been the main limiting factors for their commercial success. The present study assessed the ability of Bacillus megaterium strain MNSH1-9K-1 to produce biopolymers using low-cost media from different kinds of fruit-peel residues. The results show that MNSH1-9K-1 can produce up to 58 g/L of PHB when grown in a medium prepared from orange-peel residues. The data obtained provide information to enhance the scalability of these kinds of biotechnological processes.


Subject(s)
Bacillus megaterium , Polyhydroxyalkanoates , Ecosystem , Biopolymers/metabolism , Biotechnology
2.
Folia Microbiol (Praha) ; 68(2): 167-179, 2023 Apr.
Article in English | MEDLINE | ID: mdl-36367638

ABSTRACT

In this review, research on the use of microalgae as an option for bioremediation purposes of pharmaceutical compounds is reported and discussed thoroughly. Pharmaceuticals have been detected in water bodies around the world, attracting attention towards the increasing potential risks to humans and aquatic biota. Unfortunately, pharmaceuticals have no regulatory standards for safe disposal in many countries. Despite the advances in new analytical techniques, the current wastewater treatment facilities in many countries are ineffective to remove the whole presence of pharmaceutical compounds and their metabolites. Though new methods are substantially effective, removal rates of drugs from wastewater make the cost-effectiveness ratio a not viable option. Therefore, the necessity for investigating and developing more adequate removal treatments with a higher efficiency rate and at a lower cost is mandatory. The present review highlights the algae-based removal strategies for bioremediation purposes, considering their pathway as well as the removal rate and efficiency of the microalgae species used in assays. We have critically reviewed both application of living and non-living microalgae biomass for bioremediation purposes considering the most commonly used microalgae species. In addition, the use of modified and immobilized microalgae biomass for the removal of pharmaceutical compounds from water was discussed. Furthermore, research considering various microalgal species and their potential use to detoxify organic and inorganic toxic compounds were well evaluated in the review. Further research is required to exploit the potential use of microalgae species as an option for the bioremediation of pharmaceuticals in water.


Subject(s)
Microalgae , Humans , Microalgae/metabolism , Biodegradation, Environmental , Wastewater , Biomass , Pharmaceutical Preparations/metabolism
3.
Pol J Microbiol ; 71(4): 539-551, 2022 Dec 01.
Article in English | MEDLINE | ID: mdl-36511581

ABSTRACT

The presence of colonial and solitary ciliated peritrichous protozoa was determined in a Sequencing Batch Reactor system filled with tezontle, a volcanic rock, economic, and abundant material that can be found in some parts of the world, like Mexico. The presence of these protozoa was related to the removal efficiencies of organic matter. Also, two novel staining techniques are proposed for staining both colonial and solitary peritrichous protozoa. The results show that tezontle promotes the growth of solitary and colonial ciliated peritrichous protozoa, which, once identified, could be used as indicators of the efficiency of the wastewater treatment process. Additionally, the staining techniques established in the current study allowed the precise observation of protozoan nuclei. They can represent a useful complementary methodology for identifying protozoan species present in water treatment processes, along with the already existing identification techniques. The number and variety of protozoa found in the system may be considered potential bioindicators of water quality during biological treatments.


Subject(s)
Water Purification , Water Quality , Water Purification/methods , Mexico , Bioreactors , Waste Disposal, Fluid/methods
4.
J Microbiol Methods ; 198: 106494, 2022 07.
Article in English | MEDLINE | ID: mdl-35643293

ABSTRACT

The potential of Acidithiobacillus (Thiobacillus) genus members, namely Acidithiobacillus ferrooxidans and Acidithiobacillus thiooxidans, for bioleaching purposes is known. Specifically, previous studies have shown the potential of A. thiooxidans strain DSM 26636 used in bioleaching processes to remove metals in high-metal-content matrices. All Acidithiobacillus growth-monitoring techniques available to date, including sulfate production, commonly used, present disadvantages. Thus, the current work shows a technique based on DNA quantification to evaluate the growth of A. thiooxidans DSM 26636, which is useful even in the presence of a high-metal-content residue. This proposed methodology may represent a functional complementary tool to evaluate Acidithiobacillus growth to develop biometallurgical applications.


Subject(s)
Acidithiobacillus thiooxidans , Acidithiobacillus , Acidithiobacillus/genetics , Acidithiobacillus thiooxidans/genetics , DNA , Metals
5.
Article in English | MEDLINE | ID: mdl-30755080

ABSTRACT

Spent catalysts represent an environmental concern, mainly due to their elevated metal content. Although conventional treatment methods for spent catalysts are available, they generate large volumes of potentially harmful wastes and gaseous emissions. To overcome the environmental impact, biotechnological approaches are currently being explored and developed. Thus, the current study assayed the capability of Bacillus megaterium strain MNSH1-9K-1 to remove Al, Ni, V and Ti contained in the spent catalyst coded as ECAT-TL-II. To this end, B. megaterium MNSH1-9K-1 growth and metal uptake abilities in the presence of ECAT-TL-II spent catalyst at 15% (wt/vol) pulp density were evaluated in modified Starkey medium at 37 °C and 200 rpm. The results presented here show B. megaterium resistance capability to the high-metal content residue, and its Al, V and Ni removal ability, in 1,059.15 ± 197.28 mg kg-1 of Al, 43.39 ± 24.13 mg kg-1 of V and 0.58 ± 0.00 mg kg-1 of Ni, corresponding to the 0.79%, 1.63% and 0.46% of each metal content, respectively, while no Ti removal was detected. Besides, it was observed that the sporulation process took place in B. megaterium cells in the presence of the spent catalyst. The results shown in this study suggest the potential of the strain MNSH1-9K-1 for the removal of metals contained in high-metal content residues, contributing also to the knowledge of the metal resistance and removal abilities of B. megaterium in the presence of a spent catalyst, and how morphological cell changes may be occurring while metal removal is taking place.


Subject(s)
Bacillus megaterium/drug effects , Environmental Pollutants/analysis , Industrial Waste/analysis , Metals/analysis , Oil and Gas Industry , Spores, Bacterial/drug effects , Bacillus megaterium/growth & development , Bacillus megaterium/physiology , Biodegradation, Environmental , Catalysis , Microbial Viability/drug effects , Models, Theoretical , Spores, Bacterial/growth & development , Spores, Bacterial/physiology
6.
Curr Microbiol ; 60(4): 263-7, 2010 Apr.
Article in English | MEDLINE | ID: mdl-19924481

ABSTRACT

The role played by the Y-family DNA polymerases YqjH and YqjW in protecting sporulating cells of Bacillus subtilis from DNA damage was determined. The absence of either yqjH and/or yqjW not only reduced sporulation efficiency but also sensitized the sporulating cells to hydrogen peroxide, tert-butylhydroperoxide (t-BHP), mitomycin-C (M-C), and UV-C radiation. Moreover, these DNA-damaging agents increased the mutation frequency of wild-type sporulating cells to 4-azaleucine, but the production of mutants was YqjH- and YqjW-dependent. In conclusion, the results presented here indicate that YqjH/YqjW-dependent-translesion synthesis (TLS) operates in sporulating B. subtilis cells and contributes in processing spontaneous and artificially induced genetic damage, which is apparently required for an efficient sporulation process.


Subject(s)
Bacillus subtilis/physiology , Bacterial Proteins/metabolism , DNA Damage/drug effects , DNA Damage/radiation effects , DNA Repair , DNA-Directed DNA Polymerase/metabolism , Spores, Bacterial/physiology , Bacillus subtilis/enzymology , Bacterial Proteins/genetics , DNA, Bacterial/drug effects , DNA, Bacterial/metabolism , DNA, Bacterial/radiation effects , DNA-Directed DNA Polymerase/genetics , Gene Deletion , Hydrogen Peroxide/toxicity , Microbial Viability , Mitomycin/toxicity , Spores, Bacterial/enzymology , Ultraviolet Rays , tert-Butylhydroperoxide/toxicity
SELECTION OF CITATIONS
SEARCH DETAIL
...