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1.
Analysis of microbial gene transcripts in environmental samples // Appl. and Environ. Microbiol., 2005. Vol. 71, N 7.-С.4121-4126

2.
Freshwater bacterial lifestyles inferred from comparative genomics // Environ. Microbiol., 2014. Vol. 16, N 3.-С.746-758

3.
Freshwater bacterial lifestyles inferred from comparative genomics // Environ. Microbiol., 2014. Vol. 16, N 3.-С.746-758

4.
Grazing resistant freshwater bacteria profit from chitin and cell-wall-derived organic carbon // Environ. Microbiol., 2013. Vol. 15, N 7.-С.2019-2030

5.
Grazing resistant freshwater bacteria profit from chitin and cell-wall-derived organic carbon // Environ. Microbiol., 2013. Vol. 15, N 7.-С.2019-2030

6.
Grazing resistant freshwater bacteria profit from chitin and cell-wall-derived organic carbon // Environ. Microbiol., 2013. Vol. 15, N 7.-С.2019-2030

7.
Hortnagl Contrasting effects of ultraviolet radiation on the growth efficiency on freshwater bacteria // Aquat. Ecol., 2011. Vol. 45, N 1.-С.125-136

8.
Hortnagl Contrasting effects of ultraviolet radiation on the growth efficiency on freshwater bacteria // Aquat. Ecol., 2011. Vol. 45, N 1.-С.125-136

9.
Hortnagl Contrasting effects of ultraviolet radiation on the growth efficiency on freshwater bacteria // Aquat. Ecol., 2011. Vol. 45, N 1.-С.125-136

10.
Imazaki Improving the culturability of freshwater bacteria using FW70, a low-nutrient solid medium amended with sodium pyruvate // Can. J. Microbiol., 2010. Vol. 56, N 4.-С.333-341

11.
Imazaki Improving the culturability of freshwater bacteria using FW70, a low-nutrient solid medium amended with sodium pyruvate // Can. J. Microbiol., 2010. Vol. 56, N 4.-С.333-341

12.
Jorgensen Niels O.G. Incorporation of [{3}H]leucine and [{3}H]valine into protein of freshwater bacteria: field applications // Appl. and Environ. Microbiol., 1992. Vol. 58, N 11.-С.3647-3653

13.
Jorgensen Niels O.G. Incorporation of [{3}H]leucine and [{3}H]valine into protein of freshwater bacteria: Uptake kinetics and intracellular isotope dilution // Appl. and Environ. Microbiol., 1992. Vol. 58, N 11.-С.3638-3646

14.
Marshall C. Influence of oxygen on sulfate reduction and growth of sulfate-reducing bacteria // Arch. Microbiol., 1993. Vol. 159, N 2.-С.168-173

15.
Merker Robert I. Characterization of the adhesive hodfast of marine and freshwater caulobacters // Appl. and Environ. Microbiol., 1988. Vol. 54, N 8.-С.2078-2085

16.
Mudryk Ocena przydatnosi roznych pozywek do oznaczania liczebnosci bakterii w estuariowym jeziorze Lebsko // Stud. i mater. oceanol. Chem. Morza, 1992, N 62.-С.101-110

17.
Nitrate is a preferred electron acceptor for growth of freshwater selenate-respiring bacteria // Appl. and Environ. Microbiol., 1992. Vol. 58, N 1.-С.426-428

18.
Quantification of the filterability of freshwater bacteria through 0.45, 0.22, and 0.1 'мю'm pore size filters and shape-dependent enrichment of filterable bacterial communities // Environ. Sci. and Technol., 2007. Vol. 41, N 20.-С.7080-7086

19.
Quantification of the filterability of freshwater bacteria through 0.45, 0.22, and 0.1 'мю'm pore size filters and shape-dependent enrichment of filterable bacterial communities // Environ. Sci. and Technol., 2007. Vol. 41, N 20.-С.7080-7086

20.
Smits Jan D. Calculation of cell production from [{3}H] thymidine incorporation with freshwater bacteria // Appl. and Environ. Microbiol., 1988. Vol. 54, N 9.-С.2213-2219

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