Relationships between sediments and tissue contamination and allozymic patterns in Hediste diversico
暂无分享,去创建一个
[1] M. Ponti,et al. Pialassa Baiona Lagoon, Ravenna , 2005 .
[2] A. Larrain,et al. Effects of copper on the fitness of the Chilean scallop Argopecten purpuratus (Mollusca: Bivalvia) , 2000, Hydrobiologia.
[3] R. Schneppenheim,et al. Genetic variation and population structure of krill (Euphausia superba) in the Atlantic sector of Antarctic waters and off the Antarctic peninsula , 1984, Polar Biology.
[4] S. Anderson,et al. Effects of contaminants on genetic patterns in aquatic organisms: a review. , 2001, Mutation research.
[5] D. Fabbri,et al. Distribution of Mercury and Other Heavy Metals in Core Sediments of the Northern Adriatic Sea , 2001 .
[6] P. Leberg,et al. Relationship between allozyme genotype and sensitivity to stressors in the western mosquitofish Gambusia affinis detected for elevated temperature but not mercury. , 2001, Aquatic toxicology.
[7] D. Fabbri,et al. Analysis of poly(vinyl chloride) and other polymers in sediments and suspended matter of a coastal lagoon by pyrolysis-gas chromatography-mass spectrometry , 2000 .
[8] D. Fabbri,et al. Biomonitoring of mercury pollution in a wetland near Ravenna, Italy by translocated bivalves (Mytilus galloprovincialis) , 1999 .
[9] E. Argese,et al. H. diversicolor, N. succinea and P. cultrifera (Polychaeta: Nereididae) as bioaccumulators of cadmium and zinc from sediments: Preliminary results in the Venetian lagoon (Italy) , 1999 .
[10] D. Wallschläger,et al. Mercury Speciation in Floodplain Soils and Sediments along a Contaminated River Transect , 1998 .
[11] D. Fabbri,et al. The Lagoon of Ravenna (Italy): Characterisation of mercury-contaminated sediments , 1998 .
[12] P. Bjerregaard,et al. Influence of bioturbating animals on flux of cadmium into estuarine sediment , 1998 .
[13] J. Saiz-Salinas,et al. Nereis diversicolor: an Unreliable Biomonitor of Metal Contamination in the ‘Ría de Bilbao’ (Spain) , 1997 .
[14] M. Benton,et al. Electrophoretic evidence of esterase inhibition in larval caddisflies exposed to inorganic mercury , 1997 .
[15] W. Baeyens,et al. Total mercury and methylmercury in sediments and in the polychaeteNereis diversicolor at Groot Buitenschoor (Scheldt estuary, Belgium) , 1997 .
[16] W. Baeyens,et al. TOTAL MERCURY AND METHYLMERCURY IN SEDIMENTS AND IN THE POLYCHAETE NEREIS DIVERSICOLOR AT GROOT BUITENSCHOOR (SCHELDT ESTUARY, BELGIUM) , 1997 .
[17] M. Abbiati,et al. Allozyme Evidence of Genetic Differentiation Between Populations of Hediste Diversicolor (Polychaeta: Nereididae) from the Western Mediterranean , 1996, Journal of the Marine Biological Association of the United Kingdom.
[18] M. C. Newman,et al. Mercury contamination and population‐level responses in chironomids: Can allozyme polymorphism indicate exposure? , 1996 .
[19] K. Brown,et al. Effects of metal contamination from mine tailings on allozyme distributions of populations of Great Plains fishes , 1996 .
[20] M. C. Newman,et al. Genetic and demographic responses of mosquitofish (Gambusia holbrooki girard 1859) populations stressed by mercury , 1995 .
[21] Fred D. Calder,et al. Incidence of adverse biological effects within ranges of chemical concentrations in marine and estuarine sediments , 1995 .
[22] T. Patarnello,et al. Genetic effects of pollutants on marine and estuarine invertebrates , 1994 .
[23] M. C. Newman,et al. Allozyme genotype in mosquitofish, Gambusia holbrooki, during mercury exposure : temporal stability, concentration effects and field verification , 1993 .
[24] M. Benton,et al. Allozyme Genotype and Differential Resistance to Mercury Pollution in the Caddisfly, Nectopsyche albida. I. Single-Locus Genotypes , 1992 .
[25] G. Bryan,et al. Bioavailability, accumulation and effects of heavy metals in sediments with special reference to United Kingdom estuaries: a review. , 1992, Environmental pollution.
[26] T. Patarnello,et al. Effects of pollution on heterozygosity in the barnacle Balanus amphitrite Darwin (Cirripedia: Thoracica) , 1991 .
[27] M. C. Newman,et al. Allozyme genotype and time to death of mosquitofish, Gambusia affinis (baird and girard), during acute exposure to inorganic mercury , 1989 .
[28] A. Grant,et al. Mapping the ecological impact of heavy metals on the estuarine polychaete Nereis diversicolor using inherited metal tolerance , 1989 .
[29] J. Levinton,et al. Rapid Evolution of Metal Resistance in a Benthic Oligochaete Inhabiting a Metal-polluted Site , 1989 .
[30] S. Guttman,et al. Effects of contaminants on the frequencies of allozymes in populations of the central stoneroller , 1989 .
[31] F. Bonhomme,et al. Practical isozyme genetics. , 1988 .
[32] E. Nevo,et al. Mercury selection of allozymes in marine gastropods: Prediction and verification in nature revisited , 1987, Environmental monitoring and assessment.
[33] J. Weis,et al. Genetic adaptation to heavy metals in aquatic organisms: a review. , 1987, Environmental pollution.
[34] E. Nevo,et al. Genetic diversity and resistance to marine pollution , 1986 .
[35] R. Ben-Shlomo,et al. Mercury selection of allozymes in marine organisms: Prediction and verification in nature. , 1984, Proceedings of the National Academy of Sciences of the United States of America.
[36] R. B. Selander,et al. BIOSYS-1: a FORTRAN program for the comprehensive analysis of electrophoretic data in population genetics and systematics , 1981 .
[37] M. Nei,et al. Estimation of average heterozygosity and genetic distance from a small number of individuals. , 1978, Genetics.
[38] G. Bryan,et al. Adaptation of the Polychaete Nereis Diversicolor to Estuarine Sediments Containing High Concentrations of Zinc and Cadmium , 1973, Journal of the Marine Biological Association of the United Kingdom.
[39] G. Bryan,et al. Adaptation of the polychaete Nereis diversicolor to estuarine sediments containing high concentrations of heavy metals. I. General observations and adaptation to copper , 1971, Journal of the Marine Biological Association of the United Kingdom.