Boh-Suk Yang
University of Missouri
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Featured researches published by Boh-Suk Yang.
Asian-australasian Journal of Animal Sciences | 2016
Changhee Do; Byungho Park; Sidong Kim; T. J. Choi; Boh-Suk Yang; SuBong Park; HyungJun Song
Carcass and price traits of 72,969 Hanwoo cows, bulls and steers aged 16 to 80 months at slaughter collected from 2002 to 2013 at 75 beef packing plants in Korea were analyzed to determine heritability, correlation and breeding value using the Multi-Trait restricted maximum likelihood (REML) animal model procedure. The traits included carcass measurements, scores and grades at 24 h postmortem and bid prices at auction. Relatively high heritability was found for maturity (0.41±0.031), while moderate heritability estimates were obtained for backfat thickness (0.20±0.018), longissimus muscle (LM) area (0.23±0.020), carcass weight (0.28±0.019), yield index (0.20±0.018), yield grade (0.16±0.017), marbling (0.28±0.021), texture (0.14±0.016), quality grade (0.26±0.016) and price/kg (0.24±0.025). Relatively low heritability estimates were observed for meat color (0.06±0.013) and fat color (0.06±0.012). Heritability estimates for most traits were lower than those in the literature. Genetic correlations of carcass measurements with characteristic scores or quality grade of carcass ranged from −0.27 to +0.21. Genetic correlations of yield grade with backfat thickness, LM area and carcass weight were 0.91, −0.43, and −0.09, respectively. Genetic correlations of quality grade with scores of marbling, meat color, fat color and texture were −0.99, 0.48, 0.47, and 0.98, respectively. Genetic correlations of price/kg with LM area, carcass weight, marbling, meat color, texture and maturity were 0.57, 0.64, 0.76, −0.41, −0.79, and −0.42, respectively. Genetic correlations of carcass price with LM area, carcass weight, marbling and texture were 0.61, 0.57, 0.64, and −0.73, respectively, with standard errors ranging from ±0.047 to ±0.058. The mean carcass weight breeding values increased by more than 8 kg, whereas the mean marbling scores decreased by approximately 0.2 from 2000 through 2009. Overall, the results suggest that genetic improvement of productivity and carcass quality could be obtained under the national scale breeding scheme of Korea for Hanwoo and that continuous efforts to improve the breeding scheme should be made to increase genetic progress.
Asian-australasian Journal of Animal Sciences | 2012
Hyun Jin Kim; Dong Hun Kim; Soo Bong Park; Yeoung-Gyu Ko; Sung Woo Kim; Yoon Jun Do; JaeHong Park; Boh-Suk Yang
Ski protein is implicated in proliferation/differentiation in a variety of cells. We had previously reported that Ski protein is present in granulosa cells of atretic follicles, but not in preovulatory follicles, suggesting that Ski has a role in apoptosis of granulosa cells. The alternative fate of granulosa cells other than apoptosis is to differentiate to luteal cells; however, it is unknown whether Ski is expressed and has a role in granulosa cells undergoing luteinization. Thus, the aim of the present study was to locate Ski protein in the rat ovary during luteinizationto predict the possible role of Ski. In order to examine the expression pattern of Ski protein along with the progress of luteinization, follicular growth was induced by administration of equine chorionic gonadtropin to immature female rats, and luteinization was induced by human chorionic gonadtropin treatment to mimic luteinizing hormone (LH) surge. While no Ski-positive granulosa cells were present in preovulatory follicle, Ski protein expression was induced in response to LH surge, and was maintained after the formation of the corpus luteum (CL). Though Ski protein is absent in granulosa cells of preovulatory follicle, its mRNA (c-Ski) was expressed and the level was unchanged even after LH surge. Taken together, these results demonstrated that Ski protein expression is induced in granulosa cells upon luteinization, and suggests that its expression is regulated post-transcriptionally.
Journal of Reproduction and Development | 2007
Dong-Hoon Kim; Hyo-Suk Park; Se-Woong Kim; In-Sun Hwang; Byoung-Chul Yang; Gi-Sun Im; Hwan-Woo Seong; Seung-Joo Moon; Boh-Suk Yang
Molecular Reproduction and Development | 2006
Gi-Sun Im; Jin-Sung Seo; In-Sun Hwang; Dong-Hoon Kim; Se-Woong Kim; Byoung-Chul Yang; Boh-Suk Yang; Liangxue Lai; Randall S. Prather
Animal Reproduction Science | 2008
Byoung-Chul Yang; Gi-Sun Im; Dong-Hun Kim; Boh-Suk Yang; Hyun Ju Oh; Hyo-Suk Park; Hwan-Hoo Seong; Sung Woo Kim; Hakhyun Ka; Chang-Kyu Lee
Molecular Reproduction and Development | 2005
Gi-Sun Im; Boh-Suk Yang; Liangxue Lai; Zhonghua Liu; Yanhong Hao; Randall S. Prather
Molecular Reproduction and Development | 2008
In-Sun Hwang; Mi-Rung Park; Hyo-Jin Moon; Joo-Hyun Shim; Dong-Hoon Kim; Byoung-Chul Yang; Yeoung-Gyu Ko; Boh-Suk Yang; Hee-Tae Cheong; Gi-Sun Im
Archive | 1999
Boh-Suk Yang; Sung-Jae Park; Gi-Sun Im; Sung-Jong Oh; Hyun-Suck Yang; Sung-Joon Lee
Journal of Embryo Transfer | 2018
Ui-Hyung Kim; Sung-Sik Kang; Ki-Yong Chung; Boh-Suk Yang; Sang-Rae Cho
Journal of Embryo Transfer | 2017
Byoung-Chul Yang; Sung-Sik Kang; Ui-Hyung Kim; Jang Sun-Sik; Boh-Suk Yang; Seok-Dong Lee; Sang-Rae Cho