• Title/Summary/Keyword: Sexing

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Genotype Frequencies of the Sex-Linked Feathering and Their Phenotypes in Domestic Chicken Breeds for the Establishment of Auto-Sexing Strains (자가성감별 계통 조성을 위한 국내 토종 닭의 깃털 조만성 양상과 유전자형 빈도)

  • Sohn, Sea-Hwan;Park, Dhan-Bee;Song, Hae-Ran;Cho, Eun-Jung;Kang, Bo-Seok;Suh, Ok-Suk
    • Journal of Animal Science and Technology
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    • v.54 no.4
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    • pp.267-274
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    • 2012
  • The method of sexing based on differences in the rate of feather growth provides a convenient and inexpensive approach. The locus of feather development gene (K) is located on the Z chromosome and can be utilized to produce phenotypes that distinguish between the sexes of chicks at hatching. To establish the auto-sexing native chicken strains, this study analyzed the genotype frequency of the feathering in domestic chicken breeds. The method of classification of slow- and rapid-feathering chickens was also investigated. In the slow-feathering chicks, the coverts were either the same length or longer than the primary wing feathers at hatching. However, the rapid-feathering chicks had the primary wing feathers that were longer than the coverts. The growth pattern of tail feather also distinctively differed between the rapid- and slow-feathering chicks after 5-days. The accuracy of wing feather sexing was about 98% compared with tail sexing. In domestic chicken breeds, Korean Black Cornish, Korean Rhode Island Red, and Korean Native Chicken-Red had both dominant (K) and recessive ($k^+$) feathering genes. The other breeds of chickens, Korean Brown Cornish, Ogol, White Leghorn, Korean Native Chicken-Yellow, -Gray, -White and -Black had only the recessive feathering gene ($k^+$). Consequently, feather sexing is available using the domestic chicken breeds. Establishing the maternal stock with dominant gene (K-) and paternal stock with recessive gene ($k^+k^+$), the slow-feathering characteristic is passed from mothers to their sons, and the rapid-feathering characteristic is inherited by daughters from their fathers.

Sexing Bovine Sperm

  • Seidel, George E.
    • Proceedings of the Korean Society of Developmental Biology Conference
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    • 2001.10a
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    • pp.6-10
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    • 2001
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Sex Determination of In Vitro Fertilized Bovine Embryos by Fluorescence in situ Hybridization Technique

  • Han, M. S.;E. J. Cho;H. B. Ha;Park, H. S.;S. H. Sohn
    • Proceedings of the KSAR Conference
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    • 2004.06a
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    • pp.287-287
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    • 2004
  • Sexing from bovine embryos which were fertilized in vitro implicate a possibility of production of the sex controlled cattle. This study was carried out to investigate the possibility of determining of embryo sex by fluorescence in situ hybridization (FISH) technique. FISH was achieved in in vitro fertilized bovine embryos using a bovine Y-specific DNA probe which constructed from the btDYZ-1 sequences. (omitted)

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Sexing by the Chromosome Analysis of In Vitro Fertilized Embryos in Cattle (염색체 분석 기법에 의한 소 체외수정란의 성 조절)

  • 손시환;박충생;송상현
    • Korean Journal of Animal Reproduction
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    • v.20 no.2
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    • pp.179-190
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    • 1996
  • Sexing and developing from splitted embryos which were fertilized in vitro implicate a possibility of production of the superior and sex controlled individuals. This study was carried out to investigate the production of transferable late blastocysts from in vitro fertilized embryos and to analyze sex by chromosome analysis from same embryos. In results, the ratio of cleavage and fertility of bovine follicular oocytes matured in vitro was 90% in co-cultured with granulosa cells. The competence of embryonic development from in vitro matured and fertilized bovine oocytes was 38% in co-cultured with bovine oviductal epithelial cells. To produce a lot of transferable embryos, therefore, the best conditon of culture system was co-cultured with granulosa cells for immature bovine oocytes and then co-cultured with bovine oviductal eptithelial cells for matured and fertilized oocytes. In chromosome analysis, 93% of in vitro fertilized embryos were very important aspect in chromosome preparation from bovine embryos such as duration of colcemid treatment, weakening of zona pellucida, methods of hypotonic treatment and fixation treatment.

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Sexing of Mouse Embryos by Chromosomal Analysis (염색체 분석에 의한 생쥐 수정란의 성감별)

  • 한용만;김종배;박홍양;정길생;이경광
    • Korean Journal of Animal Reproduction
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    • v.10 no.1
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    • pp.36-41
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    • 1986
  • These experiments were carried out to obtain basic information necessary for sexing embryos by chromosomal analysis. To observe metaphase chromosomes, all embryos developed to blastocysts were cultured in Ho, pp. & Pitts' medium containing 0.001% Colcemid under the gas phase of 5% CO2 in air at 37$^{\circ}C$ for 2 hours. The sex chromosome of mouse embryos shown normal development after culture in medium containing H-Y antiserum (10%, v/v) and complement (20%, v/v) also was confimed by chromosomal analysis. The results obtained in these experiments were summarized as follows: 1. Among 89 mouse blastocysts, the number of embryos identified to have XX and XY chromosome was 22(25%) and 25(28%), respectively and 42(47%) embryos were not identified. 2. Of total 40 mouse balstocysts cultured in medium containing H-Y antiserum and complement, 23(58%) embryos which were able to be discriminated their sex chromosomes were identified to be XX bearing embryos. 3. Sex chromosomes of a number of embryos subjected to chromosomal analysis were not identified. This result may be due to absence or poor quality of metaphase spreads.

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Expression of Gonadotropin-Releasing Hormone Gene in Mouse Fetal Ovary during Gonad Differentiation (생쥐의 생식소 분화과정중 난소내 Gonadotropin-Releasing Hormone 유전자의 발현)

  • 윤성희
    • Development and Reproduction
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    • v.1 no.2
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    • pp.189-202
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    • 1997
  • The hypothalamic peptide GnRH plays a central role in the regulation of the mammalian reproductive axis. Recent studies suggested that GnRH stimulates or inhibits the ovarian steroidogenesis and gametogenesis directly. Our previous report indicated that GnRH gene is expressed in adult rat ovary as well as in hypothalamus and that the expressed GnRH may induce the follicular atresia and apoptosis of ovarian granulosa cells in rat. Therfore, we studied whether GnRH gene is expressed in the mouse fetal ovary, when the germ cells are degenerating by apoptosis during gonad diffeerentiation. Mouse fetal gonads were obtained on the 12, 15,18 and 20th day of gestation from the mother mice superovulated (10 IU PMSG and 10 IU hCG) and mated. The morphological changes of fetal ovaries were examined histochemically by hematoxylin-eosin staining. The fetal sex was confirmed by PCR methods for sexing. RT-PCR methods were used to examine the expression of GnRH gene and the sex steroid hormones were determined by conventional radioimmunoassays. The levels of estradiol (E) and progesterone (P) were increaseduntil 18th day of gestation and then E was decreased just before parturition. The morphological changes of fetal gonadal tissue sections showed the ovarian development and coincided with the result of PCR analysis for sexing using ovary- or testis- specific oligonucleotide primers. Immunoreactive GnRH in placenta was decreased gradually until the end of gestation but fetal brain and ovarian GnRH were increased. The level of GnRH gene expression was increased during fetal ovarian development from 12 till 18th day and decreased suddenly on 20th day just before birth. From these results, it is suggested that ovarian GnRh may play a regulatory role on the germ cell differentiation of fetal ovary.

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Studies on the Aggregation of H-Y Antibody-Sexed and Bisected Rabbit Embryo (H-Y항체에 의한 토끼배의 성 감별과 이등분 절단 토끼배의 융합에 관한 연구)

  • 최화식;임경순;진동일
    • Korean Journal of Animal Reproduction
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    • v.21 no.2
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    • pp.85-93
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    • 1997
  • These experiments were carried out to examine the development capacity of sexed and then bisected embryo from 8-cell to morula stage. Antisera to histocompatibility-Y(H-Y) antigen were prepared in inbred SD female rat by repeated immunization of spleen cell or testis supernatant from males of same strain. Male and female embryos were separated by delaying development of embryos against H-Y antibody. After sexing, rabbit embryos were bisected and aggregated. The results obtained from the these experiments were summuerized as follows: 1. When mouse and rabbit 8-, 16-cell and morular embryos were culature in H-Y antiserum, the ratio of embryo which has developed to hatching blastocyst was 53.4, 46.3 and 57.4% in mouse embryos, and 49.0, 52.0 and 61.0% in rabbit embryo, respectively. The ratio of mouse and rabbit embryos developed to hatching blastocyst showed nearly natural sex rate(50%), except rabbit mourla showed a little higher ratio(61.0%) as compared to natural sex ratio. 2. When rabbit demi-embryos from 8-, 16-cell embryo and morula were cultured, the percentage of demi-embryos was 70, 68 and 58% without zona pellucida removed, and 62, 69 and 51% with zona pellucida. The rate of aggregation was higher in 8- and 16-cell demi-embryos than in morula demi-embryo. 4. When sexed-demi-embryo was aggregated with another demi-embryo with demi-embryo with same sex, the rate of embryo developed to blastocyst was 60, 50 and 25%, respectively. Eight-cell demi-embryo showed highest rate. In conclusion, it showed that H-Y antiserum which was made by rat spleen cell enabled sexing rabbit embryos. And when rabbit sexed 8-, 16-cell and morula demi-embryo were aggregated, they were developed to eu-blastocyst which suggested the potential of sexed embryo manipulation.

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Sex Determination of Biopsied Hanwoo Embryos by Polymerase Chain Reaction and Embryo Transfer with Sexed Blastocysts (한우 체외수정란 Biopsy 후 PCR 기법을 이용한 성 판정과 성감별 수정란의 이식)

  • 김용준;정구남;이해이;조성우;김용수;유일정
    • Journal of Embryo Transfer
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    • v.15 no.3
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    • pp.219-230
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    • 2000
  • This study was carried out to determine the factors on achieving good viability of embryos biopsied fur sexing, to investigate pregnancy rate following embryo transfer(ET) with sexed embryos, and to confirm the accuracy for the calves bort following ET with sexed embryos by polymerase chain reaction(PCR). To investigate viability of Hanwoo embryos after biopsy for sexing, fresh and frozen/thawed embryos were biopsied according to different developmental day of blastocysts, different stage of blastocysts, and different biopsy grade and the embryos themselves were incubated for 2 hours in TCM199 after microsection to be evaluated morphologically for recovery as blastocyst. The results obtained were as follows : 1. The rate of oocytes cleaved in vitro and the rate of blastocyst of the cleaved oocytes were 52.5% and 21.6%, respectively. The rate of blastocyst on day 8 was 11.2%, denoting the highest rate during whole culture period posterior to in vitro fertilization(IVF) 2. After biopsy for sexing, the viability rate of blastocyst on day 7, 8 and 9 was 75.0%, 88.4%, and 100.0%, respectively and the viability of early, mid, and expanded blastocyst after biopsy was 75.0%, 88.9%, and 91.1%, respectively The viability rate of fresh and frozen/thawed embryos was 89.9%, 71.4%, respectively. And the viability of expanded, hatching, and hatched blastocyst of frozen/thawed embryos was : 75.0%, 75.0%, and 50.0%, respectively. The viability of embryos according to biopsy grade of 10∼20%, 21∼30%, and 31∼40% was 85.7%, 91.5%, and 71.4%, respectively. 3. Pregnancy rate after transfer with biopsied embryo between flesh and frozen/thawed embryos was 22.6% and 20.0%, respectively. 4. In comparison between sex by PCR method and sex of calves born after embryo transfer, the accuracy of sex deterimination was 92.3% (12/13).

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Study on the sexing of preimplantation mouse embryo exposed to H-Y antisera II. Sexing of mouse embryos by immunofluorescence assay (H-Y항체에 의한 생쥐초기배의 성판별에 관한 연구 II. 간접면역형광측정법에 의한 성판별)

  • 양부근;장정순;김정익
    • Korean Journal of Animal Reproduction
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    • v.12 no.1
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    • pp.37-41
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    • 1988
  • These studies were carried out to examine the sex of preimplantation mouse embryo. For the investigation of sex-ration of mouse embryos, morula and blastocysts stage embryos treated with H-Y antiserum (10%, v/v) and FITC anti-mouse-IgG were divided into the positive and negative embryos. Positive and negative identified embryos were observed the viability according to the in vitro cultured and the sex ratio was also investigated by chromosomal analysis. The results obtained in these studies were summarized as follows: 1. Two hundred sixty-seven recovered embryos of morula or blastocyst stage were incubated in medium containing H-Y antiserum and FITC anti-mouse-IgG. Positively or negatively identified embryos were 139 and 128. This trend indicated the approximal sex ratio was 1:1. 2. Sex ratio was measured using the embryos treated with indirect immunofluorescence assay to examine the relationship between embryo developmental stage and sex ratio. Sex ratio of morula stage embryos was 45.2% positive and 54.8% negative, on the other hand, the ratio switched to 56.4% positive and 43.6% negative embryo in blastocyst stage. 3. Fourty-seven positive and 57 negative embryos were obtained out of 104 morula stage embryos treated with indirect immunofluorescence assay. Survived positive or negative embryos during in vitro culture were 42 and 49, respectively out of 47 and 57 embryos. 4. The numbers of negative and positive embryos were 171 and 92 out of 163 blastocyst embryos which were incubated in the medium containing H-Y antiserum and FITC anti-mouse-IgG. The result of karyotype test showed the successful rate of sexing embryo is positive and negative embryos was63.0% (58/92) and 62.0% (44/71). The final female to male ratio within 58 positive embryos was 22.7:77.6, and the ratio of the 44 negative embryos was 77.3:22.7.

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Rapid Sex Identification of Chicken by Fluorescence In Situ Hybridization Using a W Chromosome-specific DNA Probe

  • Sohn, S.H.;Lee, C.Y.;Ryu, E.K.;Han, J.Y.;Multani, A.S.;Pathak, S.
    • Asian-Australasian Journal of Animal Sciences
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    • v.15 no.11
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    • pp.1531-1535
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    • 2002
  • It has been known that the sex of chicken cells can be most accurately identified by fluorescence in situ hybridization (FISH). However, the presently available FISH has not been widely used for sex identification, because the procedures for cell preparation and FISH itself are complicated and time-consuming. The present study was undertaken to test a rapid FISH procedure for sexing chicken. A FISH probe was simultaneously synthesized and labeled with digoxigenin by polymerase chain reaction (PCR) targeting a 416 bp segment of the 717 bp XhoI family fragment which is repeated over 10 thousand times exclusively in the W chromosome. Sexing by FISH was performed on cytological preparations of early embryos, adult lymphocytes and feather pulps of newly hatched chicks. The DNA probe hybridized to all types of uncultured interphase as well as metaphase female but not male cells that had been examined. Moreover, consistent with the known site of the XhoI family, the hybridization signal was localized to the pericentromeric region of the W chromosome. We, therefore, conclude that the present PCR-based FISH can be used as a rapid and reliable sex identification procedure for chicken.