

СОСТОЯНИЕ СЕЛЬСКОХОЗЯЙСТВЕННОГО БИОРАЗНООБРАЗИЯ В СЕКТОРЕ ЖИВОТНОВОДСТВА
111
and goat breeds in sub-humid coastal Kenya.
Animal
Genetic Resources Information
, 24: 13–30.
Bishop, S.C., Jackson, F., Coop, R.L. & Stear, M.J.
2004. Genetic parameters for resistance to nematode
infections in Texel lambs.
Animal Science
, 78(2): 185–194.
Bishop, S.C. &Woolliams, J.A.
2004. Genetic approaches
and technologies for improving the sustainability
of livestock production.
Journal of the Science of
Food and Agriculture
, 84(9): 911–919.
BOA.
1999.
The use of drugs in food animals: benefits
and risks.
Washington DC. Board on Agriculture,
National Academies Press.
Bock, R.E., Kingston, T.G. & de Vos, A.J.
1999.
Effect of breed of cattle on transmission rate and
innate resistance to infection with
Babesia bovis
and
B. bigemina
transmitted by
Boophilus microplus.
Australian Veterinary Journal
, 77(7): 461–464.
Cheng, H.H.
2005 Integrated genomic approaches to
understanding resistance to Marek’s Disease. In
S.J. Lamont, M.F. Rothschild & D.L. Harris, eds.
Proceedings of the third International Symposium
on Genetics of Animal Health, Iowa State
University,
Ames, Iowa, USA. July 13–15, 2005.
Claxton, J. & Leperre, P.
1991. Parasite burdens and host
susceptibility of Zebu andN’Dama cattle in village herds in
the Gambia.
Veterinary Parasitology
, 40(3–4): 293–304.
Edfors, L.I. & Wallgren, P.
2000.
Escherichia coli and
Salmonella diarrhoea
in pigs. In R.F.E. Axford, S.C.
Bishop, J.B. Owen & F.W. Nicholas, eds.
Breeding
for resistance in Farm Animals,
pp. 253–267.
Wallingford, UK. CABI Publishing.
Emery, D.L., Stewart, D.J. & Clark, B.L.
1984. The
susceptibility of five breeds of sheep to foot rot.
Australian Veterinary Journal,
61(3): 85–88.
FAO.
1999.
Opportunities for incorporating genetic elements
into the management of farm animal diseases:
policy issues,
by S. Bishop, M. de Jong & D. Gray.
Background Study Paper Number 18. Commission on
Genetic Resources for Food and Agriculture. Rome.
FAO.
2005.
Trypanotolerant livestock in the context of
trypanosomiasis intervention strategies.
by K. Agyemang.
PAAT Technical and Scientific Series No. 7. Rome.
FAOSTAT.
(available at
http://faostat.fao.org/).
Glass, E.J., Preston, P.M., Springbett, A., Craigmile, S.,
Kirvar, E.,Wilkie, G. &Brown, C.G.D.
2005.
Bos taurus
and
Bos indicus
(Sahiwal) calves respond differently to
infectionwith
Theileria annulata
and producemarkedly
different levels of acute phase proteins.
International
Journal for Parasitology,
35(3): 337–347.
Goosens, B., Osaer, S., Ndao, M., Van Winghem, J. &
Geerts, S.
1999. The susceptibility of Djallonké and
Djallonké-Sahelian crossbred sheep to
Trypanosoma
congolense
and helminth infection under different
diet levels.
Veterinary Parasitology,
85(1): 25–41.
Hansen, D.S., Clery, D.G., Estuningsih, S.E., Widjajanti,
S., Partoutomo, S. &Spithill, T.W.
1999. Immune
responses in Indonesian thin tailed sheep during primary
infection with
Fasciola gigantica:
lack of a species IgG2
antibody response is associated with increased resistance
to infection in Indonesian sheep.
International Journal for
Parasitology,
29(7): 1027–1035.
Hassan, M.K., Afify, M.A. & Aly, M.M.
2004. Genetic
resistance of Egyptian chickens to infectious bursal
disease and Newcastle disease.
Tropical Animal
Health and Production,
36(1): 1–9.
Hunter, N., Foster, J.D., Goldmann, W., Stear, M.J.,
Hope, J. & Bostock, C.
1996. Natural scrapie in
closed flock of Cheviot sheep occurs only in specific
PrP genotypes.
Archives of Virology,
141(5): 809–824.
Kaplan, R.M.
2004. Drug resistance in nematodes of
veterinary importance: a status report.
Trends in
Parasitology,
20(10): 477–481.
Lakshmanan, N., Kaiser, M.G. & Lamont, S.J.
1996.
Marek's disease resistance in MHC-congenic lines from