Potentials for monitoring gene level biodiversity: using Sweden as an example



Similar documents
Swedish salmon management - today and in the future

Flagship project to ensure sustainable fishing of Salmon in. Laura Píriz 3rd meeting of Priority Area 9 Fisheries 18 November 2010

Chapter 8: Recombinant DNA 2002 by W. H. Freeman and Company Chapter 8: Recombinant DNA 2002 by W. H. Freeman and Company

What goes up must come down: New techniques to improve downstream fish passage Olle Calles

The incidence of escaped farmed Atlantic salmon, Salmo salar L., in the Faroese fishery and estimates of catches of wild salmon

Seventy-five EST-linked Atlantic salmon (Salmo salar L.) microsatellite markers and their cross-amplification in five salmonid species

2016 Outlook and Management -Pre-season outlook / expectations and early indications - General overview of in-season management approach

Mitochondrial DNA Sequence Variation and Phylogenetic Relationships among Michigan Brown Trout (Salmo trutta) Strains

Gene Mapping Techniques

IIID 14. Biotechnology in Fish Disease Diagnostics: Application of the Polymerase Chain Reaction (PCR)

Forensic DNA Testing Terminology

7. Litteraturreferenser

Evolutionary implications of variation in the calling song of the cricket Gryllus bimaculatus De Geer (Orthoptera: Gryllidae)

ELENCO PERIODICI ON - LINE IN ACQUISTO ANNO 2012 (vedi sito biblioteca in SERVIZI: FORMATO NOTE EDITORE ISSN

ATLANTIC SALMON (Salmo salar) STOCK STATUS UPDATE IN NEWFOUNDLAND AND LABRADOR FOR 2014

Council CNL(12)27. Annual Report on Actions Taken Under Implementation Plans. EU Germany

Conservation genetics in Amentotaxus formosana

Web-based Trans-European genotype database for Atlantic salmon GSI

Introduction to protection goals, ecosystem services and roles of risk management and risk assessment. Lorraine Maltby

FACULTY OF ENGINEERING AND SUSTAINABLE DEVELOPMENT Department of Building, Energy and Environmental Engineering. Swedish hydropower

North Pacific Anadromous Fish Commission

An Irish Strategy for River Restoration: How it works on the ground. Karen Delanty

The Human Genome Project

Gambling with ecological and social resilience?

Washing our Dishes and Clothes without Polluting our Rivers and Seas

Restoration of River Siika- Juujoki. Lapin ELY-Keskus Y-vastuualue Marko Kangas

The importance of biodiversity monitoring

Growth of hatchery-reared sea trout (Salmo trutta trutta) on the Finnish coast of the Baltic Sea

9.3.7 Advice December 2014

Biology Behind the Crime Scene Week 4: Lab #4 Genetics Exercise (Meiosis) and RFLP Analysis of DNA

Incidence and impacts of escaped farmed Atlantic salmon Salmo salar in nature

CHALLENGES WHEN DESIGNING MODELS FOR INFECTIOUS DISEASES

Advice May Salmon in Subdivisions (Main Basin and Gulf of Bothnia)

Hydroacoustic surveys of Otsego Lake, 2007

Responsible stock enhancement, restocking and sea ranching: rational and terminology

DNA and Forensic Science

Monitoring of sea trout post-smolts, 2013

Investigating Husbandry Techniques for the Culture of the White Clawed Crayfish, Austropotamobius pallipes

Environmental Science Overview

DEPARTMENT OF ENVIRONMENT, FOOD AND AGRICULTURE. Rheynn Chymmyltaght, Bee as Eirinys

Rules Variation Summary for 2014 Advanced Diploma in the Sciences

Howsham fish passage Consultation document

CURRICULUM VITAE Pia Nilsson

WHAT TO DO IN THE EVENT OF AN ESCAPE OF FISH FROM A FISH FARM

Advice note. Linking River and Floodplain Management

Protocols. Internal transcribed spacer region (ITS) region. Niklaus J. Grünwald, Frank N. Martin, and Meg M. Larsen (2013)

Robert G. Young & Sarah Adamowicz University of Guelph Cathryn Abbott & Tom Therriault Department of Fisheries and Oceans

ABSTRACT. Promega Corporation, Updated September Campbell-Staton, S.

NEW YORK S GREAT LAKES CHARTER BOAT FISHING INDUSTRY:

Innovations in Molecular Epidemiology

Genomics GENterprise

Coastal Monitoring Program for Salmon and Steelhead

Recombinant DNA Technology

Work carried out in partnership with: LGL Environmental Research Associates, BC Ministry of Environment. Coquitlam nerkid genetics 1

Development of innovative tools for understanding marine biodiversity and assessing good environmental status: the progress of the EU project DEVOTES

Broodstock screening / importation fish health

Kolarctic ENPI CBC Kolarctic salmon project (KO197) - Report VI

Steelhead Recovery in San Juan and Trabuco Creeks Watershed

Human Genome and Human Genome Project. Louxin Zhang

Lesson Overview. Biodiversity. Lesson Overview. 6.3 Biodiversity

A sustainable aquaculture industry that provides significant economic and social benefits for the people of the Northern Territory, and Australia.

North Sea Baltic Sea Black Sea

KNOWLEDGE-BASED DECISIONS IN COASTAL ZONE MANAGEMENT

R&D in a Global Salmon Farming Company

How to Increase Recovery of Salmon and Trout in Sweden

Environmental cues and downstream migration of anadromous brown trout (Salmo trutta) and Atlantic salmon (Salmo salar) smolts

TOOLS FOR T-RFLP DATA ANALYSIS USING EXCEL

Code of Conduct and Best Practice for Access and Benefit Sharing

CNL(12)11 External Performance Review. Mr. Kjartan Hoydal, former Secretary of NEAFC Mr. Michael Shewchuk, DOALOS Ms.

Biology Majors Information Session. Biology Advising Center NHB 2.606

NATURAL RESOURCES DEGREES AND CERTIFICATES. Environmental Conservation A.S. Degree (formerly Natural Resources)

Transatlantic Masters Degree Program in Forest Resources (ATLANTIS)

Application of molecular markers to aquaculture and broodstock management with special emphasis on microsatellite DNA

Annual report on health monitoring of wild anadromous salmonids in Norway

Landscape. Nordic Oat Days Viola Adamsson

How can Fisheries Management Solve the Problem of Biological Sustainability?

Biological Sciences B.S. Degree Program Requirements (Effective Fall, 2015)

NOT TO BE CITED WITHOUT PRIOR REFERENCE TO THE AUTHORS

M.F.Sc & PhD Programs in Fish Genetics & Breeding - Syllabus

Appendix 2 Molecular Biology Core Curriculum. Websites and Other Resources

Lecture 13: DNA Technology. DNA Sequencing. DNA Sequencing Genetic Markers - RFLPs polymerase chain reaction (PCR) products of biotechnology

A Primer of Genome Science THIRD

Swedish University of Agricultural Sciences Sweden P.O. Box 7044

DNA marker technologies and their applications in aquaculture genetics

Influence of sex, body size, and reproduction on overwinter lipid depletion in brook trout

College of Marine and Environmental Sciences. Information session for postgraduate coursework students

University of Nigeria, Nigeria

2. True or False? The sequence of nucleotides in the human genome is 90.9% identical from one person to the next. False (it s 99.

WHAT IS WORLD FISH MIGRATION DAY (WFMD)?

Facts on biodiversity

CURRICULUM VITAE Matthew E. Neilson

Chapter 3 Contd. Western blotting & SDS PAGE

Too many reintroductions? A proposal for a decision-making system

Northern Territory Fisheries Resource Sharing Framework

Biology Department Admission Requirements

Biotechnology: DNA Technology & Genomics

Rubisco; easy Purification and Immunochemical Determination

FHF prosjekt :

Advice May 2014

BIOSYSTEMS ENGINEERING What can I do with this major?

Transcription:

Biodivers Conserv (2008) 17:893-910 DOI 10.1007/s10531-008-9335-2 SUPPLEMENTARY TABLES AND REFERENCES Potentials for monitoring gene level biodiversity: using Sweden as an example Linda Laikre Lena C. Larsson Anna Palmé Johan Charlier Melanie Josefsson Nils Ryman Reference list S2 Genetic studies of Atlantic salmon stocks in Sweden www.zoologi.su.se/research/popgen/monitoring Linda Laikre ( ) Lena C. Larsson Anna Palmé Johan Charlier Nils Ryman Division of Population Genetics, Department of Zoology, Stockholm University, 106 91 Stockholm, Sweden e-mail: Linda.Laikre@popgen.su.se Melanie Josefsson Department of Environmental Monitoring and Assessment, Swedish Environmental Protection Agency, P.O. Box 7050, 750 07 Uppsala, Sweden

Reference list S2 Genetic studies of Atlantic salmon stocks in Sweden Bermingham, E., Forbes, S.H., Friedland, K. & Pla C. 1991. Discrimination between Atlantic Salmon (Salmo salar) of North American and European origin using restriction analyses of mitochondrial DNA. Can. J. Fish. Aquat. Sci. 48: 884-893. Bourke, E.A., Coughlan, J., Jansson, H., Galvin, P. & Cross, T.F. 1997. Allozyme variation in populations of Atlantic salmon located throughout Europe: diversity that could be comprised by introductions of reared fish. ICES Journal of Marine Science, 54: 974-985. Dannewitz, J. & Bystedt, I. 2006. Genetisk variation hos lax och öring från Gullspångsälven. FiskGen. Institute of Freshwater Research, Drottningholm, (In Swedish). Gyllensten, U. & Wilson, A. 1987. Mitochondrial DNA of salmonids: inter- and intraspecific variability detected with restriction enzymes. In: Population Genetics and Fishery Management, Ryman, U. & Utter, F. (eds). Washington Sea Grant Publications/University of Washington Press. Seattle and London. Jansson, H. 1993. Populationsgenetisk undersökning av lax från Kalix älv och Torne älv. 1993. Rapport till Fiskeriverket, Salmon Research Institute, Älvkarleby, (In Swedish). Jansson, H. 1994. Genetisk variation i lax från Lagan. Meddelande 1/1994. Salmon Research Institute, Älvkarleby, (In Swedish). Jansson, H. 1995. Genetisk uppföljning av kompensationsodlade lax- och öringstammar. Lägesrapport. Salmon Research Institute, Älvkarleby, (In Swedish). Jansson, H. 1997a. Genetiska skillnader mellan lax från halländska vattendrag. Rapport. Salmon Research Institute, Älvkarleby, (In Swedish). Jansson, H. 1997b. Genetisk uppföljning av kompensationsodlade lax- och öringstammar. Lägesrapport. Salmon Research Institute, Älvkarleby, (In Swedish). Jansson, H. & Öst, T. 1997. Hybridization between Atlantic salmon (Salmo salar) and brown trout (S. trutta) in a restored section of the River Dalälven, Sweden. Can. J. Fish. Aquat. Sci., 54: 2033-2039. Jansson, H. & Öst, T. 1998. Genetisk särprägel hos lax från Mörrumsån. Meddelande 4/1998. Salmon Research Institute, Älvkarleby, (In Swedish). Jansson, H., Höggren, M., Johlander, A. & Johansson, R. 1989. Genetisk undersökning av lax från Viskans och Ätrans vattensystem. Meddelande 1989:3. Salmon Research Institute, Älvkarleby, (In Swedish). Koljonen, M-L. 1989. Electrophoretically detectable genetic variation in natural and hatchery stocks of Atlantic salmon. Hereditas, 110: 23-35. Laikre et al. 2008 1

POTENTIALS FOR MONITORING GENE LEVEL BIODIVERSITY: USING SWEDEN AS AN EXAMPLE Koljonen, M-L. & McKinnell, S. 1996. Assessing seasonal changes in stock composition of Atlantic salmon catches in the Baltic Sea with genetic stock identification. Journal of Fish Biology, 49: 998-1018. Koljonen, M-L. & Pella, J.J. 1997. The advantage of using smolt age with allozymes for assessing wild stock contributions to Atlantic salmon catches in the Baltic Sea. ICES Journal of Marine Science, 54: 1015-1030. Koljonen, M-L., Jansson, H., Paaver, Tiit, Vasin, O. & Koskiniemi, J. 1999. Phylogeographic lineages and differentiation pattern of Atlantic salmon (Salmo salar) in the Baltic Sea with management implications. Can. J. Fish. Aquat. Sci., 56: 1766-1780. Koljonen, M-L., Tähtinen, J., Säisä, M. & Koskiniemi, J. 2002. Maintenance of genetic diversity of Atlantic salmon (Salmo salar) by captive breeding programmes and the geographic distribution of microsatellite variation. Aquaculture, 212: 69-92. Langefors, Å. 2005. Adaptive and neutral genetic variation and colonization history of Atlantic salmon, Salmo salar. Environmental Biology of Fishes, 74: 297-308. Langefors, Å, von Schantz, T. & Widegren, B. 1998. Allelic variation of Mhc class II in Atlantic salmon; a population genetic analysis. Heredity, 80: 568-575. Langefors, Å., Lohm, J., von Schantz, T. & Grahn, M. 2000. Screening of Mhc variation in Atlantic salmon (Salmo salar): a comparison of restriction fragment length polymorphism (RFLP), denaturing gradient gel electrophoresis (DGGE) and sequencing. Molecular Ecology, 9: 215-219. Langefors, Å., Lohm, J. & von Schantz, T. 2001. Allelic polymorphism in MHC class II B in four populations of Atlantic salmon (Salmo salar). Immunogenetics, 53: 329-336. Nielsen, E.E., Hansen, M.M. & Loeschke, V. 1996. Genetic structure of European populations of Salmo salar L. (Atlantic salmon) inferred from mitochondrial DNA. Heredity, 77: 351-358. Nielsen, E.E., Hansen, M.M. & Mensberg, K-L.D. 1998. Improvedd primer sequences for the mitochondrial ND1, ND3/4, and ND5/6 segments in salmonid fishes: application to RFLP analysis of Atlantic salmon. Journal of Fish Biology, 53: 216-220. Nilsen, E.E., Hansen, M.M. & Loeschcke, V. 1999. Genetic variation in time and space: microsatellite analysis of extinct and extant populations of Atlantic salmon. Evolution, 53: 261-268. Nilsson, J. 1997. MtDNA and microsatellite variation in Baltic Atlantic salmon. ICES Journal of Marine Science, 54: 1173-1176. Nilsson, J., Gross, R., Asplund, T., Dove, O., Jansson, H., Kelloniemi, J., Kohlmann, K., Löytynoja, A., Nielsen, E.E., Paaver, T., Primmer, C.R., Titov, S., Vasemägi, A., 2 Laikre et al. 2008

POTENTIALS FOR MONITORING GENE LEVEL BIODIVERSITY: USING SWEDEN AS AN EXAMPLE Veselov, A., Öst, T. & Lumme, J. 2001. Matrilinear phylogeography of Atlantic salmon (Salmo salar L.) in Europe and postglacial colonization of the Baltic Sea area. Molecular Ecology, 10: 89-192. Ryman, N. 1994. Populationsgenetiska synpunkter på utsättning av odlad lax i Gullspångsälven. Rapport till Fiskeriverket 1994-10-24. Division of Population Genetics, Stockholm University, (In Swedish). Ryman, N. & Ståhl, G. 1981. Genetic perspectives of the identification and conservation of Scandinavian stocks of fish. Can. J. Fish. Aquat. Sci. 38: 1562-1575. Ståhl, G. 1981. Genetic differentiation among natural populations of Atlantic salmon (Salmo salar) in northern Sweden. In: Fish Gene Pools, Ryman, N. (ed.). Ecological Bulletins, 34: 95-105. Ståhl, G. 1983. Differences in the amount and distribution of genetic variation between natural populations and hatchery stocks of Atlantic salmon. Aquaculture, 33: 23-32. Ståhl. G. & Ryman, N. 1987. Lax och öring i Vänernområdet. En populationsgenetisk analys. Swedish Environmental Protection Agency, Report 3357, (In Swedish). Säisä, M., Koljonen, M-L., Gross, R., Nilsson, J., Tähtinen, J., Koskeniemi, J. & Vasemägi, A. 2005. Population genetic structure and postglacial colonization of Atlantic salmon (Salmo salar) in the Baltic Sea area based on microsatellite DNA variation. Can. J. Fish. Aquat. Sci., 62: 1887-1904. Vasemägi, A. 2004. Compensatory releases reduce genetic differentiation among Atlantic salmon populations in the Baltic Sea: evidence from the River Ume- Vindelälven. Journal of Fish Biology, 65 (Suppl. A): 324-325. Vasemägi, A., Gross, R., Paaver, T., Koljonen, M-L., Säisä, M. & Nilsson, J. 2005. Analysis of gene associated tandem repeat markers in Atlantic salmon (Salmo salar L.) populations: implications for restoration and conservation in the Baltic Sea. Conservation Genetics, 6: 385-397. Öst, T. 1998. Jämförelse av genetiska data och egenskapsdata mellan Klarälvslax och Gullspångslax av olika ursprung. Rapport till Fiskeriverket. Salmon Research Institute, Älvkarleby, (In Swedish). Öst, T. & Jansson, H. 1999a. Genetisk undersökning av Gullspångslax från Långhults fiskodling. Rapport till Vattenfall AB, Salmon Research Institute, Älvkarleby, (In Swedish). Öst, T. & Jansson, H. 1999b. Utredning avseende Ljunganlax. Rapport. Salmon Research Institute, Älvkarleby, (In Swedish). Öst, T. & Jansson, H. 2001. Genetisk uppföljning av kompensationsodlade lax- och öringstammar. Rapport till Laxforskningsinstitutets intressenter, Salmon Research Institute, Älvkarleby, (In Swedish). Laikre et al. 2008 3

POTENTIALS FOR MONITORING GENE LEVEL BIODIVERSITY: USING SWEDEN AS AN EXAMPLE Östergren, J. 2006. Migration and genetic structure of Salmo salar and Salmo trutta in northern Swedish rivers. Doctoral thesis. Department of Aquaculture, Swedish University of Agricultural Sciences, Umeå. 4 Laikre et al. 2008