Biology Reference
In-Depth Information
[64] Ruiz-García, M., Gaviria, M., Martinez-Agüero, M., Escobar-Armel, P., & Alvarez, D.
(2010b). Genetic structure of Inia geoffrensis and Inia boliviensis by means of
heterologous DNA microsatellites. The Journal of Heredity (submitted).
[65] Sambrook, J., Fritsch, E. F. & Maniatis, T. (1989). Molecular Cloning: A
LaboratoryManual. 2nd Ed . Cold Spring Harbor, NY: Cold Spring Harbor Laboratory
Press.
[66] Sauermann, U., Nürnberg, P. and Bercovitch, F. B. (2001). Increased reproductive
uccess of MHC class II heterozygous males among free-ranging rhesus macaques.
uman Genetics , 108, 249-254.
[67] Slade RW. (1992). Limited MHC polymorphism in the southern elephant seal:
mplications for MHC evolution and marine mammal population biology. Proceedings
of the Royal Society of London B. , 249, 163-171.
[68] Thompson, J.D., Gibson, T. J., Plewniak, F., Jeanmougin F., & Higgins, D. G.,. (1997).
The ClustalX windows interface: flexible strategies for multiple alignment aided by
quality analysis tools. Nucleic Acids Research , 25, 4876-4882.
[69] Thursz, M., Yallop, R., Goldin, R., Trepo, C., & Thomas, H. C., (1999). Influence of
HC class II genotype on outcome of infection with hepatitis C virus. The HENCORE
group. Hepatitis C European Network for Cooperative Research. Lancet , 354, 2119-
2124.
[70] Trowsdale, J., Groves, V., & Arnason, A., (1989). Limited MHC polymorphism in
whales. Immunogenetics , 29, 19-24.
[71] Van Bressem, M. F., Jepson, P. & Barrett, T. (1998). Further insight on the
epidemiology of cetacean morbillivirus in the northeastern Atlantic. Marine Mammal
Science , 14, 605-613.
[72] Van Bressem M. F., Van Waerebeek K, & Raga J. A. (1999). A review of virus
infections of cetaceans and the potential impact of morbilliviruses, poxviruses and
papillomaviruses on host population dynamics. Diseases of Aquatic Organisms , 38, 53-
65.
[73] Van Tienderen, P. H., A. A. de Haan, G. van der Linden & B. Vosman. (2002).
Biodiversity assessment using markers for ecologically important traits. Trends in
Ecology and Evolution , 17, 577-582.
[74] Weckstein, L. N., Patrizio, P., Balmaceda, J. P., Asch, R. H., & Branco, D. W. (1991).
Human leukocyte antigen compatibility and failure to achieve a viable pregnancy with
assisted reproductive technology. Acta Europaea Fertilitatis , 22, 103-107.
[75] Wedekind, C., & Seebeck, T. (1996). MHC and mate selection in humans?., reply.
Trends in Ecology and Evolution , 11, 24-25.
[76] Wedekind, C., Seebeck, T., Bettens, F., & Paepke, A. (1995). MHC dependent mate
preferences in humans. Proceedings of the Royal Society of London. B. , 260: 245-249.
[77] Xu, S., P. Sun, K. Zhou & G. Yang. (2007). Sequence Variability at Three MHC Loci
of Finless Porpoises ( Neophocaena phocaenoides ). Immunogenetics , 59, 581-592.
[78] Xu, S., B. Chen, K. Zhou & G. Yang. (2008). High Similarity at Three MHC Loci
between the Baiji and Finless Porpoise: Trans-Species or Convergent Evolution?
Molecular Phylogenetics and Evolution , 47, 36-44.
[79]
Yang, G., J. Yan, K. Zhou & F. Wei. (2005). Sequence Variation and Gene Duplication
at MHC DQB Loci of Baiji ( Lipotes vexillifer ), a Chinese River Dolphin. The Journal
of Heredity , 96, 310-317.
Search WWH ::




Custom Search