By Susana Benlloch, Francisco Rodríguez-Valera, Silvia G. Acinas (auth.), Pierre Caumette, Jacques Castel, Rodney Herbert (eds.)
This multidisciplinary quantity comprehensively experiences our present wisdom of the consequences of city, commercial and agricultural toxins at the biology of shallow coastal marine lagoons. all of the authors are across the world well-known professionals and feature had a long time of expertise of their respective fields. the key power of this quantity is that it integrates numerous fields of analysis together with biogeochemistry, marine microbiology, marine algology and marine zoology. by way of adopting this sort of approach the reader is supplied with a transparent perception of the main procedures all in favour of lagoon eutrophication and dystrophy and their impression at the assorted organic groups which reside in such environments. This booklet will hence offer a vital reference paintings for environmental biologists, ecologists, microbiologists and people fascinated with the administration and advertisement exploitation of those economically vital ecosystems.
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Extra info for Coastal Lagoon Eutrophication and ANaerobic Processes (C.L.E.AN.): Nitrogen and Sulfur Cycles and Population Dynamics in Coastal Lagoons A Research Programme of the Environment Programme of the EC (DG XII)
Wright. R. T. & 1. E. Hobbie, 1966. Use of glucose and acetate by bacteria and algae in aquatic ecosystems. Ecology 47: 447-464. Hydrobiologia 329: 19-31, 1996. p. Caumette, 1. Castel & R. ). 19 ©1996. Kluwer Academic Publishers. Description of prokaryotic biodiversity along the salinity gradient of a multipond solar saltern by direct peR amplification of 16S rDNA Susana Benlloch, Silvia G. Acinas, A. J. Martinez-Murcia & Francisco Rodriguez-Valera* Departamento de Genetica y Microbiologfa, Universidad de Alicante, Campus de San Juan, Apartado 374, 03080 Alicante, Spain * Authorfor correspondence.
22: 1859-1862. , F. Rodriguez-Valera & A. 1. Martinez-Murcia, 1995. Bacterial diversity in two coastal lagoons deduced from 16S rDNA PCR amplification and partial sequencing. FEMS MicrobioI. Ecol. 18: 267-280. Bradshaw, L. , 1992. Laboratory Microbiology. Fourth Edition. Saunders College Publishing. Brosius, J. , T. J. Dull, D. D. Sleeter & H. F. Noyer, 1981. Gene organization and primary structure of a ribosomal RNA operon from E. coli. 1. Mol. BioI. 127. , P. Caumette & R. Herbert, 1996. Eutrophication gradients in coastal lagoons.
1991). No archaeal clones were recovered in this sample. In the Pacific Ocean again, Fuhrman et aI. (1993) took samples at 100 and 500 m to observe the difference due to the varying depth of water. In both sample depths they found clones with 100% similarity, not with cultured microorganisms, but with clones belonging to the phylogenetic line SARlI described by Giovannoni et aI. (1990). , 1990). These authors also described a novel group, the socalled Marine GroupA, unrelated to any subdivisions described by Woese (1987).