In The Prokaryotes Volume 7 3rd edition New York: Springer; 20

In The Prokaryotes. Volume 7. 3rd edition. New York: Springer; 2006. 5. Delong EF, Franks DG, Alldredge AL: Phylogenetic diversity of aggregate-attached vs. free-living marine bacterial assemblages. Limnol Oceanogr 1993,38(5):924–934.CrossRef 6. Gray JP, Herwig RP: Phylogenetic analysis of the bacterial communities in marine selleck chemicals sediments. Applied and Environmental Microbiology 1996,62(11):4049–4059.PubMed 7. Morris RM, Longnecker K, Giovannoni SJ: Pirellula and OM43 are among the dominant lineages identified in an Oregon coast diatom bloom. Environmental Microbiology 2006,8(8):1361–1370.PubMedCrossRef

8. Longford SR, Tujula NA, Crocetti GR, Holmes AJ, Holmstroem C, Kjelleberg S, Steinberg PD, Taylor MW: Comparisons of diversity of bacterial communities associated with three sessile https://www.selleckchem.com/products/crenolanib-cp-868596.html marine eukaryotes. Aquat Microb Ecol 2007, 48:217–229.CrossRef 9. Hempel M, Blume M, Blindow I, Gross EM: Epiphytic bacterial community composition on two common submerged macrophytes in brackish water and freshwater. Bmc Microbiol 2008, 8:58.PubMedCrossRef 10. Glöckner FO, Kube M, Bauer M, Teeling H, Lombardot T, Ludwig W, Gade D, Beck A, Borzym K, Heitmann K, et al.: Complete genome sequence of the marine planctomycete

Pirellula sp. strain 1. Proc Natl Acad Sci USA 2003,100(14):8298–8303.PubMedCrossRef 11. Woebken D, Teeling H, Wecker P, Dumitriu A, Kostadinov I, DeLong EF, Amann R, Gloeckner FO: Fosmids of novel marine Planctomycetes from the Namibian and Oregon coast upwelling systems and their cross-comparison with planctomycete genomes. ISME J 2007,1(5):419–435.PubMedCrossRef 12. Shanks AL, Trent JD: Marine snow – sinking rates and potential role in vertical flux. Deep-Sea Res 1980,27(2):137–143.CrossRef 13. Longhurst AR: Role of the marine biosphere in the global carbon cycle. Limnol Oceanogr 1991,36(8):1507–1526.CrossRef 14. Mann KH: Seaweeds – their productivity and strategy for growth. Science

1973,182(4116):975–981.PubMedCrossRef 15. Graham MH, Kinlan BP, Druehl LD, Garske LE, Banks S: Deep-water old kelp refugia as potential hotspots of tropical marine diversity and productivity. Proc Natl Acad Sci USA 2007,104(42):16576–16580.PubMedCrossRef 16. Norderhaug KM, Nygaard K, Fredriksen S: Trophic importance of Laminaria hyperborea to kelp forest consumers and the importance of bacterial degradation to food quality. Marine Ecology Progress Series 2003, 255:135–144.CrossRef 17. Newell RC, Field JG: The contribution of bacteria and detritus to carbon and nitrogen flow in a benthic community. Marine Biology Letters 1983,4(1):23–36. 18. Bengtsson MM, Sjøtun K, Øvreås L: Seasonal dynamics of bacterial biofilms on the kelp Laminaria hyperborea . Aquat Microb Ecol 2010, 60:71–83.CrossRef 19. Neef A, Amann R, Schlesner H, Schleifer KH: Monitoring a widespread bacterial group: in situ detection of planctomycetes with 16S rRNA-targeted probes. Microbiol-Uk 1998, 144:3257–3266.CrossRef 20.

Comments are closed.