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Molecular and biological aspects of early germ cell development in interspecies hybrids between chickens and pheasants

Authors
Kang, S.J.Sohn, S.H.Kang, K.S.Lee, H.C.Lee, S.K.Choi, J.W.Han, J.Y.
Issue Date
2011
Keywords
Chicken; Germline Chimera; Interspecies hybrid; Pheasant; Primordial germ cell (PGC)
Citation
Theriogenology, v.75, no.4, pp.696 - 706
Indexed
SCIE
SCOPUS
Journal Title
Theriogenology
Volume
75
Number
4
Start Page
696
End Page
706
URI
https://scholarworks.bwise.kr/gnu/handle/sw.gnu/24670
DOI
10.1016/j.theriogenology.2010.10.010
ISSN
0093-691X
Abstract
Interspecific hybrids provide insights into fundamental genetic principles, and may prove useful for biotechnological applications and as tools for the conservation of endangered species. In the present study, interspecies hybrids were generated between the Korean ring-necked pheasant (Phasianus colchicus) and the White Leghorn chicken (Gallus gallus domesticus). We determined whether these hybrids were good recipients for the production of germline chimeric birds. PCR-based species-specific amplification and karyotype analyses showed that the hybrids inherited genetic material from both parents. Evaluation of biological function indicated that the growth rates of hybrids during the exponential phase (body weight/week) were similar to those of the pheasant but not the chicken, and that the incubation period for hatching was significantly different from that of both parents. Primordial germ cells (PGCs) of hybrids reacted with a pheasant PGC-specific antibody and circulated normally in blood vessels. The peak time of hybrid PGC migration was equivalent to that of the pheasant. In late embryonic stages, germ cells were detected by the QCR1 antibody on 15 d male gonads and were normally localized in the seminiferous cords. We examined the migration ability and developmental localization of exogenous PGCs transferred into the blood vessels of 63 h hybrid embryos. Donor-derived PGCs reacted with a donor-specific antibody were detected on 7 d gonads and the seminiferous tubules of hatchlings. Therefore, germ cell transfer into developing embryos of an interspecies hybrid can be efficiently used for the conservation of threatened animals and endangered species, and many biotechnological applications. ? 2011 Elsevier Inc.
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농업생명과학대학 (동물생명융합학부)
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