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Wyświetlanie 1-2 z 2
Tytuł:
Wpływ wybranych metali ciężkich na wzrost i namnażanie promieniowców z rodzaju Streptomyces izolowanych z gleb
The effect of the selected heavy metals on the growth and proliferation of Streptomyces spp. isolated from soils
Autorzy:
Lenart-Boroń, A
Boroń, P
Banach, T
Powiązania:
https://bibliotekanauki.pl/articles/296838.pdf
Data publikacji:
2013
Wydawca:
Politechnika Częstochowska. Wydawnictwo Politechniki Częstochowskiej
Tematy:
Streptomyces spp
promieniowce
gleby
metale ciężkie
tereny przemysłowe
zanieczyszczenie środowiska
actinobacteria
soils
heavy metals
industrial areas
environmental pollution
Opis:
Mając na uwadze wzrost zanieczyszczenia środowiska naturalnego metalami ciężkimi i ich oddziaływanie na mikroorganizmy w glebie, podjęto próbę określenia wpływu wybranych metali ciężkich: miedzi, kadmu, cynku i ołowiu na wzrost promieniowców wyizolowanych z gleb pobranych z terenu huty ArcelorMittal w Krakowie. Do badań wykorzystano 5 gleb, z których do dalszych badań wyselekcjonowano 10 izolatów promieniowców należących do rodzaju Streptomyces. Przeprowadzone analizy wykazały, że obecność huty przyczynia się do zanieczyszczenia środowiska glebowego poprzez emisje metali ciężkich. Ma to wpływ także na populację promieniowców w glebie nie tylko poprzez ograniczenie ich liczebności, lecz również poprzez selekcję szczepów opornych na zanieczyszczenia gleb, a przez to na ograniczenie ich bioróżnorodności. Pośrednim skutkiem ograniczenia różnorodności promieniowców może być wyginięcie szczepów ważnych pod względem funkcjonalnym dla środowiska, zubożenie mikroflory gleby, a także zmiany właściwości fizykochemicznych gleby. Niniejsza praca pokazuje, że skażenie środowiska metalami ciężkimi jest poważnym problemem środowiskowym. Zjawisko to należy monitorować i kontrolować, aby zapobiec nieodwracalnym zmianom w ekosystemie.
People have changed their environment since the beginning of the civilization - it is an inevitable process. However, this phenomenon is accompanied by emission of many harmful chemicals to the environment, and recently there has been an increase in the amount of pollution. Having regard to the increase in environmental contamination with heavy metals due to the expanding industry and its impact on soil microorganisms, this study attempted to determine the effect of the selected heavy metals: cadmium, copper, lead and zinc, on the growth of actinobacteria (belonging to the genus Streptomyces) isolated from soils of ArcelorMittal steelworks in Cracow. Five soil samples were selected for the analysis, from which 2 isolates of Streptomyces spp. were selected for further analyses. The number of Streptomyces spp. in the soil samples was determined using the serial dilutions method. The systematic affiliation of microorganisms was confirmed by macroscopic as well as microscopic observations of Gram-stained smears, catalase reaction test and the sequencing of 16S rDNA region. Additionally, soil physical and chemical properties were examined - pH, moisture and heavy metal content - using atomic spectrometry. The heavy metal resistance of the examined Streptomyces spp. strains was analyzed using a well method with increasing concentrations of cadmium, copper, lead and zinc. After the incubation results were recorded as the growth inhibition zones (diameters) and the minimum inhibitory concentration (MIC) of the heavy metals were determined. The conducted analyses revealed that heavy metal concentrations in two out of five examined soils exceeded the admissible values given by the Regulation of the Minister of Environment on soil quality standards. The number of actinobacteria in soils was varied (from 6700 to almost 250 thousand CFU per gram of soil dry weight). There was a negative correlation between the heavy metal concentrations in soils and the number of the studied microorganisms. The analyzed soils were alkaline - the lowest pH value was 7.7. Regarding the heavy metal resistance of the analyzed Streptomyces spp. strains, diverse in vitro susceptibility was recorded. The bacterial reactions differed even between strains isolated from the same soil samples. Minimum inhibitory concentrations of the examined heavy metals were as follows: Cd and Cu - 100 μg • cm−3, Zn - 3000 μg • cm−3 and Pb - 8000 μg • cm−3. There was a negative correlation between the concentration of heavy metals in soils and the growth inhibition zones (in the case of cadmium this correlation was high), indicating that the soil contamination with cadmium may have modified the soil population of Streptomyces spp., causing extinction of the susceptible strains while the ones with reduced sensitivity survived. The results of the presented research indicated that the ArcelorMittal steelworks contaminates the soil environment, which may affect the microbial community of soils, not only by reducing the population, but also by decreasing biodiversity of soil microorganisms, which was particularly visible in the case of cadmium - a strongly toxic heavy metal. This study demonstrates that the heavy metal contamination is a serious environmental problem. This phenomenon needs to be monitored and controlled to prevent irreversible changes to the ecosystem.
Źródło:
Inżynieria i Ochrona Środowiska; 2013, 16, 1; 81-91
1505-3695
2391-7253
Pojawia się w:
Inżynieria i Ochrona Środowiska
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Różnorodność biologiczna i rola bakterii glebowych w środowisku leśnym
Biodiversity and the role of soil bacteria in a forest environment
Autorzy:
Siebyła, H.
Hilszczańska, D.
Powiązania:
https://bibliotekanauki.pl/articles/988995.pdf
Data publikacji:
2017
Wydawca:
Polskie Towarzystwo Leśne
Tematy:
lesnictwo
gleby lesne
ryzosfera
bakterie glebowe
roznorodnosc biologiczna
Bacillus
Proteobacteria
Actinobacteria
funkcje biologiczne
mechanizm dzialania
bacteria
forest soil
rhizosphere
Opis:
Microorganisms commonly inhabit all environments in which they can survive. The number of bacteria in soil depends on its structure, moisture and nutrient content, and ranges from a few hundred to several thousand per gram of soil. Qualitative and quantitative composition of bacteria mainly depends on physico−chemical agents, soil and vegetation cover, the content of biogenic elements, but also on the salinity and pollution. In the case of forest soils number of bacteria amounts to about 4.8×10 9 per 1 cm 3 of soil. In the rhizosphere, the soil directly surrounding plant roots, there are organisms that affect the biochemical activity of plants. The main representatives of bacteria, which are present in the rhizosphere layer, are species of the genera: Pseudomonas and Bacillus, Acidobacteria that protect plants against attack of pathogens. Soil microorganisms form a symbiosis with vascular plants. Because of their properties, they are effective antagonists against fungi that cause plant diseases (leaf spots, roots and shoot apices disease, as well as rot). This group includes such species as: Sclerotinia sclerotiorum, Botrytis cinerea and Colletotrichum gloeosporioides or the species belonging to Oomycetes, for example Phytophthora and Pythium. Bacteria also protect plants against harmful insects and inhibit the growth of fungal diseases. The beneficial role of bacteria is observed in the development of truffles as well. They are responsible for providing nitrogen to the mycelium forming fruiting bodies. Bacteria improve plant growth and protect their host against drought. Understanding the diversity of bacteria that have important role in the functioning of ecosystems, including forest ecosystems, remains a challenge for microbiologists.
Źródło:
Sylwan; 2017, 161, 02; 155-162
0039-7660
Pojawia się w:
Sylwan
Dostawca treści:
Biblioteka Nauki
Artykuł
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