• Title/Summary/Keyword: 체세포복제란

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Effects of Recipient Oocytes and Electric Stimulation Condition on In Vitro Development of Cloned Embryos after Interspecies Nuclear Transfer with Caprine Somatic Cell (수핵난자와 전기적 융합조건이 산양의 이종간 복제수정란의 체외발달에 미치는 영향)

  • 이명열;박희성
    • Reproductive and Developmental Biology
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    • v.28 no.1
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    • pp.21-27
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    • 2004
  • This study was conducted to investigate the developmental ability of caprine embryos after somatic cell interspecies nuclear transfer. Recipient bovine and porcine oocytes were obtained from slaughterhouse and were matured in vitro according to established protocols. Donor cells were obtained from an ear-skin biopsy of a caprine, digested with 0.25% trypsin-EDTA in PBS and primary fibroblast cultures were established in TCM-199 with 10% FBS. The matured oocytes were dipped in D-PBS plus 10% FBS + 7.5 $\mu$ g/ml cytochalasin B and 0.05M sucrose. Enucleation were accomplished by aspirating the first polar body and partial cytoplasm which containing metaphase II chromosomes using a micropipette with an out diameter of 20∼30 $\mu$m. A Single donor cell was individually transferred into the perivitelline space of each enucleated oocyte. The reconstructed oocytes were electric fusion with 0.3M mannitol fusion medium. After the electrofusion, embryos were activated by electric stimulation. Interspecies nuclear transfer embryos with bovine cytoplasts were cultured in TCM-199 medium supplemented with 10% FBS including bovine oviduct epithelial cells for 7∼9 day. And porcine cytoplasts were cultured in NCSU-23 medium supplemented with 10% FBS for 6 ∼8 day at $39^{\circ}C, 5% CO_2 $in air. Interspecies nuclear transfer by recipient bovine oocytes were fused with electric length 1.95 kv/cm and 2.10 kv/cm. There was no significant difference between two electric length in fusion rate(47.7 and 44.6%) and in cleavage rate(41.9 and 54.5%). Using electric length 1.95 kv/cm and 2.10 kv/cm in caprine-porcine NT oocytes, there was also no significant difference between two treatments in fusion rate(51.3 and 46.1%) and in cleavage rate(75.0 and 84.9%). The caprine-bovine NT oocytes fusion rate was lower(P<0.05) in 1 pulse for 60 $\mu$sec(19.3%), than those from 1 pulse for 30 $\mu$sec(50.8%) and 2 pulse for 30 $\mu$sec(31.0%). The cleavage rate was higher(P<0.05) in 1 pulse for 30 $\mu$sec(53.3%) and 2 pulse for 30 $\mu$sec(50.0%), than in 1 pulse for 60 $\mu$sec(18.2%). The caprine-porcine NT oocytes fusion rate was 48.1% in 1 pulse for 30 $\mu$sec, 45.2% in 2 pulse for 30 $\mu$sec and 48.6% in 1 pulse for 60 $\mu$sec. The cleavage rate was higher(P<0.05) in 1 pulse for 30 $\mu$sec(78.4%) and 1 pulse for 60 $\mu$sec(79.4%), than in 2 pulse for 30 $\mu$sec(53.6%). In caprine-bovine NT embryos, the developmental rate of morula and blastocyst stage embryos were 22.6% in interspecies nuclear transfer and 30.6% in parthenotes, which was no significant differed. The developmental rate of morula and blastocyst stage embryos with caprine-porcine NT embryos were lower(P<0.05) in interspecies nuclear transfer(5.1%) than parthenotes(37.4%).

Study of Efficient Production of Cloned Embryos in Porcine II. Establishment of Conditional Enucleation (효율적인 돼지 복제수정란 생산에 관한 연구 II. 탈핵 여건의 확립)

  • 위갑인;강만종;문승주
    • Korean Journal of Animal Reproduction
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    • v.27 no.3
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    • pp.187-195
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    • 2003
  • This study was carried out to improve of enucleation efficiency on porcine recipient oocytes preactivated. In ethanol or $Ca^{2+}$ ionophore, effect of repeating and combinational activation with 6-DMAP or cycloheximide compared with alone activated treatment. Recipient oocytes's activation by $Ca^{2+}$ ionophore combined with 6-DMAP or cycloheximide were significantly higher than alone treatment(P<0.05). Between repeating and alone treatments were not significantly different. In ethanol, repeating treatment was significantly lower than alone(P<0.05), and combination treatments were not significantly different. On the basis of these results, efficiency of enucleation, electrical fusion and in vitro development compared preactivated with non-preactivated recipient oocytes. Enucleation and fusion rates of preactivated oocytes were improved significantly compared with non-preactivated oocytes(90.7%, 71.8 vs 77.8%, 61.1%; P<0.05). Behind the back, cleavage and in vitro development rates were significantly lower than non-preactivated oocytes(38.7%, 19.3% vs 68.8%, 30.6%; P<0.05).

The Effects of Herbal Plant Mixture Supplementation on the Performance of Laying Hens under Heat Stress (고온 스트레스 환경내 산란계에 있어 생약제의 급여가 생산성에 미치는 영향)

  • 민병준;이원백;권오석;손경승;홍종욱;조진호;김인호
    • Korean Journal of Poultry Science
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    • v.31 no.1
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    • pp.9-15
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    • 2004
  • This study was conducted to evaluate the effects of dietary herbal plant mixture on the performance in laying hens under heat stress. One hundred ninety two 54-weeks-old ISA Brown commercial layers, were used in 56 d experimental assay. Dietary treatments included CON (control; basal diet), HPM0.05 (basal diet + 0.05% herbal plant mixture), HPM0.1 (basal diet + 0.1% herbal plant mixture), and HPM0.2 (basal diet + 0.2% herbal plant mixture). For overall period, the hens fed with HPM0.1 and HPM0.2 diets showed lower in the hen day egg production than the hens fed with CON diet(P<0.05). At the end of the experimental period, egg weight was heavier in HPM 0.1 treatment than in CON (P<0.05). There were no significant differences among the treatments in egg shell breaking strength, egg shell thickness, Haugh unit, and yolk color unit. Total cholesterol concentration of yolk tended to decrease as the level of herbal plant mixture in the diet increased. Total protein of blood was higher in the hens fed with herbal plant mixture than in the hens fed with CON diet (P<0.05). Albumin concentration of blood was increased in HPM0.05 and HPM0.1 treatments compared with CON(P<0.05). Red blood cell (RBC) and white blood cell (WBC) concentrations in serum were increased in HPM0.1 and HPM0.2 treatments compared with CON treatment (P<0.05). In conclusion, dietary herbal plant mixture in laying hens under heat stress adversely affected egg production but increased total protein, albumin, RBC and WBC in blood.

Production of Cloned Jeju Black Cattle (Korean Cattle) from SCNT Embryo using Vitrification, One-Step Dilution and Direct Transfer Technique (초자화 동결과 1-단계 융해된 체세포 핵이식란의 직접 이식 기술로 제주흑우 복제소 생산)

  • Kim, Eun-Young;Park, Min-Jee;Kim, Jae-Youn;Park, Hyo-Young;Noh, Eun-Ji;Noh, Eun-Hyung;Song, Dong-Hwan;Oh, Chang-Eon;Kim, Young-Hoon;Mun, Seong-Ho;Lee, Dong-Sun;Ko, Moon-Suck;Riu, Key-Zung;Park, Se-Pill
    • Reproductive and Developmental Biology
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    • v.35 no.1
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    • pp.77-83
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    • 2011
  • One-step dilution and direct transfer would be a practical technique for the field application of frozen embryo. This study was to examine whether Jeju Black Cattle (JBC, Korean Cattle) can be successfully cloned from vitrified and one-tep diluted somatic cell nuclear transfer (SCNT) blastocyst after direct transfer. For vitrification, JBC-SCNT blastocysts were serially exposed in glycerol (G) and ethylene glycol (EG) mixtures [10%, (v/v) G for 5 min., 10% G plus 20% EG (v/v) for 5 min., and 25% G plus 25% EG (v/v) for 30 sec.] which is diluted in 10% FBS added D-PBS. And then SCNT blastocysts were loaded in 0.25 ml mini straw, placed in cold nitrogen vapor for 3 min. and then plunged into $LN_2$. One-step dilution in straw was done in $25^{\circ}C$ water for 1 min, by placing vertically in the state of plugged-end up and down for 0.5 min, respectively. When in vitro developmental capacity of vitrified SCNT blastocyst was examined at 48 h after one-step dilution, hatched rate (56.4%) was slightly lower than that of control group (62.5%). In field trial, when the vitrified-thawed SCNT blastocysts were transferred into uterus of synchronized 5 recipients, a cloned female JBC was delivered by natural birth on day 299 and healthy at present. In addition, when the short tandem repeat marker analysis of the cloned JBC was evaluated, microsatellite loci of 11 numbers was perfectly matched genotype with donor cell (BK94-14). This study suggested that our developed vitrification and one-step dilution technique can be applied effectively on field trial for cloned animal production, which is even no longer in existence.