PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2016 | 20 |

Tytuł artykułu

Antibiotic resistance of fecal coliform bacteria inhabiting sea water and sand of marine recreation beach in the southern Baltic Sea

Treść / Zawartość

Warianty tytułu

PL
Antybiotykooporność bakterii kałowych z grupy coli zasiedlających wodę morską i piasek rekreacyjnej plaży na obszarze Bałtyku Południowego

Języki publikacji

EN

Abstrakty

EN
The results of the present study showed variability in resistance of FC bacteria isolated from beach sand and sea water against tested antibiotics. Enteric bacteria were the most resistant to clindamycin and penicillin while the most sensitive to ciprofloxacin, gentamycin, neomycin, rifampicin and streptomycin. Fecal coliform bacteria inhabiting sand were more resistant to nearly all tested antibiotics compared to bacteria isolated from sea water. The majority of bacteria inhabiting sea water and sand of the studied beach were resistant to only 1-4 antibiotics out of the 12 antibiotics tested. Fecal coliform bacteria isolated from Ustka beach were the most resistant to β-lactam and lincosamide antibiotics, while the most susceptible to aminoglycosides.
PL
Badano oporność na antybiotyki bakterii fekalnych wyizolowanych z wody morskiej i piasku rekreacyjnej plaży znajdującej się na południowym wybrzeżu Morza Bałtyckiego. Uzyskane wyniki badań wykazały zmienność w oporności bakterii z grupy coli wyizolowanych z piasku i wody morskiej wobec badanych antybiotyków. Mikroorganizmy te były najbardziej odporne na penicylinę i klindamycynę, a najbardziej wrażliwe na ciprofloksacynę, gentamycynę, neomycynę, ryfampicyny i streptomycyny. Bakterie kałowe z grupy coli zasiedlające piasek były bardziej odporne na prawie wszystkie badane antybiotyki niż te izolowane z wody morskiej. Większość bakterii zasiedlających wodę morską i piasek badanej plaży była odporna na zaledwie 1-4 antybiotyków z 12 badanych. Bakterie kałowe z grupy coli izolowane na plaży w Ustce były najbardziej oporne na antybiotyki beta-laktamowe oraz linkozamidy, a najbardziej podatne na aminoglikozydy.

Wydawca

-

Rocznik

Tom

20

Opis fizyczny

p.25-36,fig.,ref.

Twórcy

autor
  • Department of Experimental Biology, Institude of Biology and Environmental Protection, Pomeranian University in Slupsk, Arciszewskiego 22b, 76-200 Slupsk, Poland
autor
  • Department of Experimental Biology, Institude of Biology and Environmental Protection, Pomeranian University in Slupsk, Arciszewskiego 22b, 76-200 Slupsk, Poland
autor
  • Department of Experimental Biology, Institude of Biology and Environmental Protection, Pomeranian University in Slupsk, Arciszewskiego 22b, 76-200 Slupsk, Poland

Bibliografia

  • Ahmed W., Hargeaves M., Goonetilleke A., Kotouli M., 2008. Population similarity analysis of indicator bacteria for source prediction of faecal pollution in coastal lake. Mar. Pollut. Bull., 56, 1469-1475.
  • Akinbowale O.L., Peng H., Barton M.D., 2006. Antimicrobial resistance in bacteria isolated from aquaculture sources in Australia. J. Appl. Microbiol., 100, 1103-1113.
  • Al-Mossawi M.A., Kadri M., Salen A., Salama M., 1982. Incidence of antibiotic resistant fecal coliforms in the coastal waters of Kuwait. Water Air Soil Poll., 17, 141-149.
  • Alpay-Karaoglu S., Ozgumus O.B., Sevim E., Kolayli F., Sevim A., Yesilgil P., 2007. Investigation of antibiotic resistance profile and TEM-type β-lactamase gene carriage of ampicillin-resistant Escherichia coli strains isolates from drinking water. Ann. Microbiol., 57, 281-288.
  • Andreozzi R., Lo Carerino M., Giudice R., Marotta R., Pinto G., Pollio A., 2006. Lincomycin solar photodegradation, algal toxicity and removal from wastewaters by means of ozonation. Water Res., 40, 630-638.
  • Arvanitidou M., Tsakris A., Constantindis T.C., Katsouyannopulus V.C., 1997. Transferable antibiotic resistance among Salmonella strains isolated from surface water. Water Res., 31, 1112-1116.
  • Bonilla T.D., Nowosielski K., Cuveiler M., Hartz A., Green M., Esiobu N., McCorquodale D.S., Fleisher J.M., Rogerson A., 2007. Prevalence and distribution of fecal indicator organisms in South Florida beach sand and preliminary assessment of health effects associated with beach sand exposure. Mar. Pollut. Bull., 54, 1472-1482.
  • Brown D.K., Kulis J., Thomson B., Chapman T.H., Mawhinney D.B., 2006. Occurrence of antibiotics in hospital, residential and dairy effluent municipal wastewater and the Rio Grande in New Mexico. Sci. Total Environ., 366, 772-783.
  • Calamari D., Zuccato E., Castiglioni S., Bagnati R., Fanelli R., 2003. Strategic survey of therapeutic drugs in the Rives Po and Lambro in Northern Italy. Environ. Sci. Technol., 37, 1241-1248.
  • Ding Ch., He J., 2010. Effect of antibiotics in environment on microbial populations. Appl. Microbiol. Biotechnol., 87, 925–941.
  • Edge T.A., Hill S., 2007. Multiple lines of evidence to identify the source of fecal pollution at a freshwater beach in Hamilton Harbour, Lake Ontario. Water Res., 41, 3585-3594.
  • Elmir S.M., Wright M.E., Abdelzaher A., Solo-Gabriele H.N., Fleming L.E., Miller G., Rybolowik M., Shih M.T., Pillai P., Copoer J.E., Quaye E.A., 2007. Quantitative evaluation of bacteria released by bathers in marine water. Water Res., 41, 3-10.
  • Fernandez-Delgado M., Suarez P., 2009. Multiple antibiotic resistance of enteric bacteria isolated from recreational coastal waters and oysters of the Caribbean Sea. Ann. Microbiol., 59, 409-414.
  • Goni-Urriza U., Capdepuy M., Arpin C., Raymond N., Caumette P., Quentin C., 2000. Impact of an urban effluent on antibiotic resistance of riverine Enterobacteriaceae and Aeromonas spp. Appl. Environ. Microb., 66, 125-132.
  • Gould D.J., Fletcher M.R., 1978. Gull droppings and their effects on water quality. Water Res., 12, 665-672.
  • Grabow W.O., Prozesky O.W., 1973. Drug resistance of coliform bacteria in hospital and city sewage. Antimicrob Agents Ch., 3, 175-180.
  • Hartz A., Cuvelier M., Nowosielski K., Bonilla T.D., Green M., Esiobu N., McCorqoudle D.S., Rogerson A., 2008. Survival potential of Escherichia coli and enterococci in subtropical beach sand: implications for water quality mangers. J. Environ. Qual., 37, 898-905.
  • Harwood V.J., Whitlock J., Withington V., 2000. Classification of antibiotic resistance patterns of indicator bacteria by discriminant analysis use in predicating the source of fecal contamination in subtropical waters. Appl. Environ. Microbiol., 66, 3698-3704.
  • Kramarska R., Uscinowicz S., Zachowicz J., Przezdziecki P., Warzocha J., Netzel J., Janusz J., 2003. Określenie uwarunkowań eksploatacji złóż osadów do sztucznego zasilania brzegów w okresie 2004-2023. Etap I. (Identification of submarine deposit drifts to artifi cial swelling to the shores in the period 2004-2023. Stage I). Państwowy Istytut Geologiczny, Oddział Geologii, 55, (in Polish).
  • Kümmerer K., 2009. Antibiotics in the aquatic environment – review – part I. Chemosphere, 75, 417-434.
  • Lin J., Biyela P.T., Puckree T., 2004. Antibiotic resistance profiles of environmental isolates from Mhlathuze River. KwaZulu-Natal (RSA), Water S.A., 30, 23-28.
  • Literak I., Dolejska M., Janoszowska D., Hrusakova J., Meissner W., Rzyska H., Bzoma S., Cizek S., 2010. Antibiotic-resistant Escherichia coli bacteria, including strains with genes encoding the extended-spectrum beta-lactamase and QnS, in water birds on the Baltic Sea coast of Poland. Appl. Environ. Microb., 76, 8126-8134.
  • Lüthje P., Schwarz S., 2007. Molecular basis of resistance to macrolides and lincosamides among staphylococcus and streptococci from various animal sources collected in the resistance monitoring program BfT-German. Int. J. Antimicrob. Ag., 29, 528-535.
  • Manivasagan P., Rajaram G., Ramesh S., Ashokkumar S., Damotharan P., 2011. Occurrence and seasonal distribution of antibiotic resistance heterotrophic bacteria and physicochemical characteristics of Mutupettai mangrove environment, southeast coast of India. Environ Sci. Technol., 4, 139-149.
  • Matyar F., Kaya A., Dincer S., 2007. Distribution and antibacterial drug resistance of Aeromonas spp. from fresh and brackish waters in Southern Turkey. Ann. Microbiol., 57, 443-447.
  • Meirelles-Pereira F., Santos-Pereira A.M., Gomes de Silva M.C., Gonealves V.D., Brum P.B., De Castro A., Pereira A.A., Esteves–Pereira J.A.A., 2002. Ecological aspects of the antimicrobial resistance in bacteria of importance to human infection. Braz. J. Microbiol., 33, 287-293.
  • Mudryk Z., 2005. Occurrence and distribution antibiotic resistance of heterotrophic bacteria isolated from a marine beach. Mar. Pollut. Bull., 50, 80-86.
  • Mudryk Z., Perliński P., Skórczewski P., 2010. Detection of antibiotic resistance bacteria inhabiting sand of non-recreational marine beach. Mar. Pollut. Bull., 60, 207-214.
  • Mudryk Z., Skórczewski P., 2009. Frequency of antibiotic resistance in bacteria inhabiting water of downtown pond. Balt. Coast. Zone, 13, 135-146.
  • Ngozi A.F., Romanus I.I., Azubuike A.C., Eze T., Egwu O.A., Collins O.N., 2010. Presence of coliform producing extended spectrum beta lactamase in sachet-water manufactured and sold in Abakaliki, Ebonyi state, Nigeria. Int. Res. J. Microbiol., 1, 32-36.
  • Oliveira A.J.C., de Franco P.T.R., Pinto A.B., 2010. Antimicrobial resistance of heterotrophic marine bacteria isolated from sea water and sands of recreational beaches with different organic pollution levels in southern Brazil: evidences of resistance dissemination. Environ. Monit. Assess., 169, 375-384.
  • Parveen S.R., Murphy L., Edmiston C.W., Kaspar K.M., Portier K.M., Tamplin M.I., 1997. Association of multiple antibiotic resistance profiles with point and non point sources of Escherichia coliform Aplachicola Bay. Appl. Environ. Microb., 63, 2607-2612.
  • Perliński P., Mudryk Z., 2009. Inhibitory effect of antibiotics on the growth of heterotrophic bacteria inhabiting marine beach. Balt. Coast. Zone, 13b, 15-24.
  • Reinthaler F.F., Posch J., Feierl G., Wüst G., Haas D., Ruckenbauer G., Maschar F., Marth E., 2003. Antibiotic resistance of E. coli in sewage and sludge. Water Res., 37, 1685-1690.
  • Skórczewski P., Mudryk Z., Jankowska M., Perliński P., Zdanowicz M., 2013. Antibiotic resistance of neustonic nad planktonic fecal coliform bacteria isolated from two water basins differing in the level of pollution. Hidrobiológica, 23, 275-283.
  • Toroglu S., Dincer S., Korkmaz H., 2005. Antibiotic resistance in Gram negative bacteria isolated from Aksu River in (Kahramanamars) Turkey. Annals of Microbiol., 55, 229-233.
  • Umamaheswari S., Anbusaravanan N., 2010. Spatial and temporal dynamics of plasmid mediated antibiotic resistance in riverine bacterial assemblages. Internat. J. Lakes and Rivers, 3, 37-66.
  • Wang Ch., Dang H., Ding Y., 2008. Incidence of diverse integrons and β-lactamase genus in environmental Enterobacteriaceae isolated from Jiaozhou Bay, China. World J. Microb. Biot., 24, 2889-2896.
  • Webster F.L., Thompson B.C., Fulton M.H., Chlestnut D.E., van Dolach F.R., Leight A.K., Scott G.I., 2004. Identification of source of Escherichia coli in South Carolina estuaries using antibiotic resistance analysis. J. Exp. Mar. Biol. Ecol., 298, 179-195.
  • Whitman R.L., Nevers M.B., 2003. Foreshores sand a source of Escherichia coli in nearshore water of Lake Michigan beach. Appl. Environ. Microb., 69, 5555-5562.
  • Wose-King C.N., Ateba C.N., Kawadza D.T., 2010. Antibiotic resistance profiles of Escherichia coli isolated from water sources in the Mmabathho locality, North-West Province, South Africa. S. Afr. J. Sci., 106, 44-49.
  • Zawadzka E., 1996. Litho-morphodynamics in the vicinity of small ports of the Polish Central Coast. In: Partnership of the Coastal Management, (eds) J. Taussik, J. Mitchel, Samara Publ. Limited, Cardigan GB 353-360.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-a7164252-d165-45e0-8eeb-eb455e4bc6da
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.