Journal of Animal and Veterinary Advances

Year: 2011
Volume: 10
Issue: 6
Page No. 715 - 722

Study of the Amplification Capacity of A Two-Temperature PCR and its Application in Bovine Sex Identification

Authors : Dong Wang, Bo Lin, Huabin Zhu, Haisheng Hao, Chengjiang Wu, Weihua Du and Xueming Zhao

References

Akane, A., K. Matsubara, H. Nakamura, S. Takahashi and K. Kimura, 1994. Identification of the heme compound copurified with deoxyribonucleic acid (DNA) from blood stains, a major inhibitor of polymerase chain reaction (PCR) amplification. J. Forensic Sci., 39: 362-372.
PubMed  |  

Angers, M., J.F. Cloutier, A. Castonguay and R. Drouin, 2001. Optimal conditions to use Pfu exo(-) DNA polymerase for highly efficient ligation-mediated polymerase chain reaction protocols. Nucleic Acids Res., 29: E83-E83.
CrossRef  |  PubMed  |  

Benter, T., S. Papadopoulos, M. Pape, M. Manns and H. Poliwoda, 1995. Optimization and reproducibility of random amplified polymorphic DNA in human. Anal. Biochem., 230: 92-100.
PubMed  |  

Cha, R.S., H. Zarbl, P. Keohavong and W.G. Thilly, 1992. Mismatch Amplification Mutation Assay (MAMA): Application to the c-H-ras gene. Genome Res., 2: 14-20.
CrossRef  |  PubMed  |  

Chen, P.C., D.E. Nikitopoulos, S.A. Soper and M.C. Murphy, 2008. Temperature distribution effects on micro-CFPCR performance. Biomed. Microdevices, 2: 141-152.
CrossRef  |  

Easley, C.J., J.M. Karlinsey, J.M. Bienvenue, L.A. Legendre and M.G. Roper et al., 2006. A fully integrated microfluidic genetic analysis system with sample-in-answer-out capability. Proc. Natl. Acad. Sci., USA., 103: 19272-19277.
PubMed  |  

Ekici, H., N. Turan, B.H. Sontas, C.R. Helps, A. Senunver and H. Yilmaz, 2006. Sex determination of bovine embryos using poly-merase chain reaction (PCR). Revue. Med. Vet., 157: 441-444.

Fu, Q., M. Zhang, W.S. Qin, Y.Q. Lu and H.Y. Zheng et al., 2007. Cloning the swamp buffalo SRY gene for embryo sexing with multiplex-nested PCR. Theriogenology, 68: 1211-1218.
CrossRef  |  

Hashimoto, M., P.C. Chen, M.W. Mitchell, D.E. Nikitopoulos, S.A. Soper and M.C. Murphy, 2004. Rapid PCR in a continuous flow device. Lab. Chip, 4: 638-645.
PubMed  |  

Innis, M.A., K.B. Myambo, D.H. Gelfand and M.A. Brow, 1988. DNA sequencing with Thermus aquaticus DNA polymerase and direct sequencing of polymerase chain reaction-amplified DNA. Proc. Natl. Acad. Sci.USA., 85: 9436-9440.
Direct Link  |  

Lam, W.Y., A.C. Yeung, J.W. Tang, M. Ip, E.W.C. Chan, M. Hui and P.K.S. Chan, 2007. Rapid multiplex nested PCR for detection of respiratory viruses. J. Clin. Microbiol., 45: 3631-3640.
CrossRef  |  

Lu, W., N. Rawlings, J. Zhao and H. Wang, 2007. Amplification and application of the HMG box of bovine SRY gene for sex determination. Anim. Reprod. Sci., 100: 186-191.
CrossRef  |  

Manna, L., G. Neglia, M. Marino, B. Gasparrini, R.D. Palo and L. Zicarelli, 2003. Sex determination of buffalo embryos (Bubalus bubalis) by polymerase chain reaction. Zygote, 11: 17-22.
PubMed  |  

Mapletoft, R.J. and J.F. Hasler, 2005. Assisted reproductive technologies in cattle: A review. Rev. Sci. Tech. Off. Int. Epiz., 24: 393-403.
PubMed  |  

Mullis, K.B. and F.A. Faloona, 1987. Specific synthesis of DNA in vitro via a polymerase-catalysed chain reaction. Methods Enzymol., 155: 335-350.
PubMed  |  

Pomp, D., B.A. Good, R.D. Geisert, C.J. Corbin and A.J. Conley, 1995. Sex identification in mammals with polymerase chain reaction and its use to examine sex effects on diameter of day-10 or -11 pig embryos. J. Anim. Sci., 73: 1408-1415.
PubMed  |  

Sambrook, J. and D.W. Russell, 2001. Molecular Cloning: A Laboratory Manual. 3rd Edn., Cold Spring Harbor Laboratory Press, New York, pp: 2100.

Tominaga, K. and Y. Hamada, 2004. Efficient production of sex-identified and cryosurvived bovine in-vitro produced blastocysts. Theriogenology, 61: 1181-1191.
PubMed  |  

Tominaga, K., 2004. Cryopreservation and sexing of in vivo- and in vitro-produced bovine embryos for their practical use. J. Reprod. Dev., 50: 29-38.
CrossRef  |  

Wang, Y., D.E. Prosen, L. Mei, J.C. Sullivan, M. Finney and P.B.V. Horn, 2004. A novel strategy to engineer DNA polymerases for enhanced processivity and improved performance in vitro. Nucl. Acids Res., 32: 1197-1207.
CrossRef  |  

Whitney, S.E., A. Sudhir, R.M. Nelson and H.J. Viljoen, 2004. Principles of rapid polymerase chain reactions: Mathematical modeling and experimental verification. Comput. Biol. Chem., 3: 195-209.
CrossRef  |  

Wittwer, C.T. and D.J. Garling, 1991. Rapid cycle DNA amplification: Time and temperature optimization. Biotechniques, 10: 76-83.
PubMed  |  

Wittwer, C.T., G.C. Fillmore and D.J. Garling, 1990. Minimizing the time required for DNA amplification by efficient heat transfer to small samples. Anal. Biochem., 186: 328-331.
CrossRef  |  

Zhang, Z.P., Y. Zhang, J.P. Liu, J.T. Zhang and Z.X. An et al., 2009. Codeposition of dNTPs detection for rapid LAMP-based sexing of bovine embryos. Reprod. Domestic Anim., 44: 116-121.
CrossRef  |  

Zhu, H.B., D. Wang, J.H. Cheng, H.S. Hao, Z.L. Wang, B. Yang and Z.L. Wang, 2005. Study on fast sex determination of bovine pre-implantation embryos. Acta Veterinaria Zootechnica Sinica, 36: 1270-1274.

Zippelius, A., R. Lutterbuse, G. Riethmuller and K. Pantel, 2000. Analytical variables of reverse transcription-polymerase chain reaction-based detection of disseminated prostate cancer cells. Clin. Cancer Res., 6: 2741-2750.
PubMed  |  Direct Link  |  

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