References
- D. Berry, X. Chuangwu, R. Lutgarde, Microbial ecology of
drinking water distribution systems, Curr. Opin. Biotechnol.,
17 (2006) 297–302.
- P. Roslev, A. Bukh, State of the art. Molecular markers for fecal
pollution source cracing in water, Appl. Microbiol. Biotechnol.,
89 (2011) 1341–1355.
- M. Allen, S. Edberg, D. Reasoner, Heterotrophic plate count
bacteria– what is their significance in drinking water?, Int. J.
Food Microbiol., 92 (2004) 266–274.
- D. Pavlov, C. Wet, W. Grabow, M. Ethlers, Potentially pathogenic
features of heterotrphic plate Mount bacteria isolatet
from treated and untreated drinkind water, Int. J. Food Microbiol.,
92 (2004) 276–287.
- T. Paris, S. Skali–Lami, J. Block, Probing young drinking water
biofilms with hard and soft particles, Water Res., 43 (2009) 117–
126.
- Y. Abe, S. Skali–Lami, J. Block, G. Francius, Cohesiveness and
hydrodynamic properties of young drinking water biofilms,
Water Res., 46 (2012) 1155–1166.
- M. Lethola, I. Miettinen, T. Lampola, A. Hirvonen, M. Vartiainen,
P. Artikainen, Pipeline materials modify the effectiveness
of disinfectants in drinking water distribution systems,
Water Res., 39 (2005) 1962–1971.
- A. Martiny, H. Albrechtsten, E. Arvin, S. Molin, Identification
of bacteria in biofilm and bulk water samples from nonchlorinated
model drinking water distribution system: detection
of a large nitrite–oxidizing population associated witch Nitrospira spp, Appl. Environ. Microbiol., 71 (2005) 8611–8617.
- L. Simoes, M. Simoes, M. Vieira, Adhesion and biofilm formation
on polystyrene by drinking water– isolated bacteria,
Antonie van Leeuwenhoek, 98 (2010) 317–329.
- M. Schwering, J. Song, M. Louie, R. Turner, H. Ceri, Multi-species biofilms defined from drinking water microorganisms
provide increased protestion against chlorine disinfection,
Biofouling, 29 (2013) 917–928.
- S. Parizzi, N. Andrade, C. Silva, N. Soares, E. Silva, Bacterial
adherence to different inert surfaces evaluated by epifluorescence
microscopy and plate count method, Braz. Arch. Biol.
Technol., 47 (2004) 77–83.
- Y. Lee, An evaluation of microbial and chemical contamination
sources related to the deterioration of tap water quality in
the house hold water supply system, Int. J. Environ. Res. Public
Health, 10 (2013) 4143–4160.
- U. Dorigo, L. Volatier, J. Humbert, Molecular approaches to the
assessment of biodiversity in aquatic microbial communities,
Water Res., 39 (2005) 207–2218.
- I. Biedroń, M. Traczewska, G. Płaza, Charakterystyka mikroorganizmów
pochodzących z punktów czerpalnych wody do
picia, Annual Set Environ. Protect., 18 (2016) (in Polish).
- L. Sanz, T. Kochling, Molecuar biology techniques used in
wastewater treatment: An overview, Process Biochem., 42
(2007) 119–133.
- P. Nielsen, D. Holger, H. Lemmer, I. Arslan–Alaton, T.
Olmez–Hanci, Fish handbook for biological wastewater
treatment. Identification and quantification of microorganisms
in activated sludge and biofilms by FISH. IWA Publishing,
2009.
- G. Gafan, V. Lucas, G. Roberts, A. Petrie, Statistical analyses
of complex denaturing gradient gel electrophoresis profiles, J.
Clin. Microbiol., 8 (2005) 3971–3978.
- N. Tatsadjieua, J. Maïworéa, M. Hadjiaa M., G. Loiseaub, C.
Montetb, Study of the microbial diversity of Oreochromis
niloticus of three lakes of Cameroon by PCR-DGGE: Application
to the determination of the geographical origin, Food
Control, 21 (2010) 673–678.
- L. Jizhou, W. Shaoqiang, Z. Yongning, Ch. Yan, F. Chunyan,
Y. Xiangfen, J. Guangle, D. Junhua, W. Caixia, W. Qin, M. Lin
M, Assessment of four DNA fragments (COI, 16S rDNA, ITS2,
12S rDNA) for species identification of the Ixodida (Acari: Ixodida),
Parasites Vectors, 7 (2014).
- L. Jennifer, P. Monis, F. Rolando, Ho Lionel, K. Braun, M.
Drikas, A. Cooper, Assessing the impact of water treatment
on bacterial biofilms in drinking water distribution systems
using high-throughput DNA sequencing, Chemosphere, 117
(2014) 185–192.
- S. Huws, J. Edwards, E. Kim, N. Scollan, Specificity and sensitivity
of eubacterial primers utilized for molecular profiling
of bacteria within complex microbial ecosystems, J. Microbiol.
Meth., 3 (2007) 565–569.
- S. Green, M. Leigh, J. Neufeld, Denaturing gradient gel electrophoresis
(DGGE) for microbial community, Handbook of
Hydrocarbon and Lipid Microbiology, 2010.
- A. Novinscak, J. DeCoste, C. Surette, M. Filion, Characterization
of bacterial and fungal communities in composted
biosolids over a 2 year period using denaturing gradient gel
electrophoresis, Can. J. Microbiol., 55 (2009) 375–385.
- A. Samarajeewaa, L. Hammada, I. Massonb, I. Khanc, R. Scrogginsa,
L. Beaudette, Comparative assessment of next-generation
sequencing, denaturing gradient gel electrophoresis,
clonal restriction fragment length polymorphism and cloning-
sequencing as methods for characterizing commercial
microbial consortia, J. Microbiol. Meth., 108 (2015) 103–111.
- L. Kraková, K. Šoltys, J. Budiš, T. Grivalský, F. Ďuriš F, D. Pangallo,
Investigation of bacterial and archaeal communities:
novel protocols using modern sequencing by Illumina MiSeq
and traditional DGGE-cloning, Extremophiles, 5 (2016) 795–808.
- S. Ryssel, E. Arvin, H. Lutzhoft, M. Olsson, Z. Prochazkova,
H. Albrechtsen, Degradation of specific aromatic compounds
migrating from PEX pipes into drinking water, Water Res., 81
(2015) 269–278.
- Ch. Jungfer, F. Friedrich, J. Varella, H. Brandle, H. Gros, U.
Obst, Drinking water biofilms on copper and stainless steel
exhibit specific molecular responses towards different disinfection
regimes at waterworks, Biofouling, 29 (2013).
- I. Sarro, M. Garcia, D. Morrena, Biofilm formation in spent
nuclear fuel pools and bioremediation of radioactive water,
Int. Microbiology, 8 (2005) 222–230.
- H. Takahashi, T. Suda, Y. Tanaka, B. Kimura, Cellular hydrophobicity
of Listeria monocytogenes involves initial attachment
and biofilm formation on the surface of polyvinyl chloride,
Lett. Appl. Microbiol., 50 (2010) 618–625.
- I. Doturelo, R. Sharpe, J. Boxall, Influence of hydraulic regimes
on bacterial community structure and composition in an
experimental drinking water distribution system, Water Res.,
47 (2013) 503–516.
- L. Mathieu, C. Bouteleux, S. Fass, E. Angel, J. Block, Reversible
shift in the alfa, beta, gamma–proteobacteria populations of
drinking water biofilms during discountinous chlorination,
Water Res., 43 (2009) 3375–3386.
- J. Bellon, N. Honduvilla, F. Jurado, A. Carranza, J. Bujan, In
vitro interaction of bacteria with polypropylene/ePTFE prostheses,
Biomaterials, 22 (2001) 2021–2024.
- K. Henne, L. Kahlisch, I. Brettar, M. Hofle, Analysis of structure
and composition of bacterial core communities in mature
drinking water biofilms and bulk water of a citywide network
in Germany, Appl. Environ. Microbiol., 78 (2012).
- J. Yu, D. Kim, T. Lee, Microbial diversity in biofilms on water
distribution pipes of different materials, Wat. Sci. Tech., 61 (2016)
163–171.
- A. Rożej, A. Cydzik–Kwiatkowska, B. Kowalska, D. Kowalski,
Structure and microbial diversity of biofilms on different
pipe materials of a model drinking water distribution system,
World J. Microbiol. Biotechnol., 31 (2015) 37–47.
- P. Waines, R. Moate, J. Moody, M. Allen, G. Bradley, The effect
of material choice on biofilm formation in a model warm water
distribution system, Biofouling, 27 (2011).