Journal of Animal and Veterinary Advances

Year: 2010
Volume: 9
Issue: 3
Page No. 529 - 534

Hypoxic Adaptation and Myoglobin Expression in Heart Tissue of Tibet Chicken Embryo

Authors : Zhang Li-Fan, Liu Chong, Bao Hai-Gang, Zhao Chun-Jiang, Lian Lin-Sheng, Xu Ning-Ying and Wu Chang-Xin

References

Bailey, J.R. and W.R. Driedzic, 1992. Lack of correlation between cardiac myoglobin concentration and in vitro metmyoglobin reductase activity. J. Exp. Biol., 173: 301-306.
PubMed  |  

Bao, H.G., 2007. Study on mitochondria DNA mutations and respiratory functions of Tibet chicken embryo and their relationship with adaptability to hypoxia. Doctor Degree Thesis, China Agricultural University, Beijing.

Bao, H.G., C.J. Zhao, J.Y. Li, H. Zhang and C. Wu, 2007. A comparison of mitochondrial respiratory function of Tibet chicken and Silky chicken embryonic brain. Poult. Sci., 86: 2210-2215.
PubMed  |  

Durand, J., 1982. Physiologic Adaptation to Altitude and Hyperexis. In: High Altitude Physiology and Medicine, Brendel, W. and R.A. Zink (Eds.). Springer Verlag, New York, pp: 209-211.

Egginton, S., 1986. Metamorphosis of the american eel, anguilla rostrata leseur: I. Changes in metabolism of skeletal muscle. J. Exp. Zool., 237: 173-184.
PubMed  |  

Fraser, J., L.V. de Mello, D. Ward, H.H. Rees and D.R. Williams et al., 2006. Hypoxia-inducible myoglobin expression in nonmuscle tissues. Proc. Natl. Acad. Sci. USA., 103: 2977-2981.
CrossRef  |  PubMed  |  Direct Link  |  

Garry, D.J., G.A. Ordway, J.N. Lorenz, N.B. Radford and E.R. Chin et al., 1998. Mice without myoglobin. Nature, 395: 905-908.
PubMed  |  

Gelfi, C., S. De-Palma, M. Ripamonti, I. Eberini and R. Wait et al., 2004. New aspects of altitude adaptation in tibetans: A proteomic approach. FASEB J., 18: 612-614.
PubMed  |  

Gou, X., N. Li, L. Lian, D. Yan, H. Zhang and C. Wu, 2005. Hypoxia adaptation and hemoglobin mutation in Tibetan chick embryo. Sci. China. C. Life. Sci., 48: 616-623.
PubMed  |  

Gou, X., N. Li, L. Lian, D. Yan, H. Zhang, Z.H. Wei and C.X. Wu, 2007. Hypoxic adaptations of hemoglobin in Tibetan chick embryo: High oxygen-affinity mutation and selective expression. Comp. Biochem. Physiol. B. Biochem. Mol. Biol., 147: 147-155.
PubMed  |  

Hardman, K.D., E.H. Eylar, D.K. Ray, L.J. Banaszak and F.R. Gurd, 1966. Isolation of sperm whale myoglobin by low temperature fractionation with ethanol and metallic ions. J. Biol. Chem., 241: 432-442.
PubMed  |  

Hoppeler, H. and M. Vogt, 2001. Muscle tissue adaptations to hypoxia. J. Exp. Biol., 204: 3133-3139.
PubMed  |  

Kanatous, S.B., P.P. Mammen, P.B. Rosenberg, C.M. Martin and M.D. White et al., 2009. Hypoxia reprograms calcium signaling and regulates myoglobin expression. Am. J. Physiol. Cell. Physiol., 296: C393-C402.
PubMed  |  

Levine, B.D. and J. Stray-Gundersen, 2001. The effects of altitude training are mediated primarily by acclimatization, rather than by hypoxic exercise. Adv. Exp. Med. Biol., 502: 75-88.
PubMed  |  

Li, M. and C. Zhao, 2009. Study on Tibetan chicken embryonic adaptability to chronic hypoxia by revealing differential gene expression in heart tissue. Sci. China. C. Life. Sci., 52: 284-295.
PubMed  |  

Lurman, G.J., N. Koschnick, H.O. Portner and M. Lucassen, 2007. Molecular characterisation and expression of Atlantic cod (Gadus morhua) myoglobin from two populations held at two different acclimation temperatures. Comp. Biochem. Physiol. A. Mol. Inter. Physiol., 148: 681-689.
PubMed  |  

Meeson, A.P., N. Radford, J.M. Shelton, P.P. Mammen and J.M. Di-Maio et al., 2001. Adaptive mechanisms that preserve cardiac function in mice without myoglobin. Circ. Res., 88: 713-720.
PubMed  |  

Ordway, G.A. and D.J. Garry, 2004. Myoglobin: An essential hemoprotein in striated muscle. J. Exp. Biol., 207: 3441-3446.
PubMed  |  

Reed, J.Z., P.J. Butler and M.A. Fedak, 1994. The metabolic characteristics of the locomotory muscles of grey seals (Halichoerus grypus), harbour seals (Phoca vitulina) and Antarctic fur seals (Arctocephalus gazella). J. Exp. Biol., 194: 33-46.
PubMed  |  

Reynafarje, B. and P. Morrison, 1962. Myoglobin levels in some tissues from wild Peruvian rodents native to high altitude. J. Biol. Chem., 237: 2861-2864.
PubMed  |  

Reynafarje, B., 1962. Myoglobin content and enzymatic activity of muscle and altitude adaptation. J. Appl. Phys., 17: 301-305.
PubMed  |  

Robach, P., G. Cairo, C. Gelfi, F. Bernuzzi and H. Pilegaard et al., 2007. Strong iron demand during hypoxia-induced erythropoiesis is associated with down-regulation of iron-related proteins and myoglobin in human skeletal muscle. Blood, 109: 4724-4731.
PubMed  |  

Robach, P., S. Recalcati, D. Girelli, C. Gelfi and N.J. Aachmann-Andersen et al., 2009. Alterations of systemic and muscle iron metabolism in human subjects treated with low-dose recombinant erythropoietin. Blood, 113: 6707-6715.
PubMed  |  

Roesner, A., T. Hankeln and T. Burmester, 2006. Hypoxia induces a complex response of globin expression in zebrafish (Danio rerio). J. Exp. Biol., 209: 2129-2137.
PubMed  |  

Schlieper, G., J.H. Kim, A. Molojavyi, C. Jacoby and T. Laussmann et al., 2004. Adaptation of the myoglobin knockout mouse to hypoxic stress. Am. J. Physiol. Regul. Integr. Comp. Physiol., 286: R786-R792.
PubMed  |  

Smith, R.W., D.F. Houlihan, G.E. Nilsson and J.G. Brechin, 1996. Tissue-specific changes in protein synthesis rates in vivo during anoxia in crucian carp. Am. J. Physiol., 271: R897-R904.
PubMed  |  

Takahashi, E. and K. Doi, 1998. Impact of diffusional oxygen transport on oxidative metabolism in the heart. Jpn. J. Physiol., 48: 243-252.
PubMed  |  

Terrados, N., 1992. Altitude training and muscular metabolism. Int. J. Sports Med., 13: S206-S209.
PubMed  |  

Ton, C., D. Stamatiou and C.C. Liew, 2003. Gene expression profile of zebrafish exposed to hypoxia during development. Physiol. Genomics., 13: 97-106.
PubMed  |  

Van Der Meer, D.L., G.E. van Den Thillart, F. Witte, M.A. De Bakker and J. Besser et al., 2005. Gene expression profiling of the long-term adaptive response to hypoxia in the gills of adult zebrafish. Am. J. Physiol. Regul. Integr. Comp. Physiol., 289: R1512-R1519.
PubMed  |  

Vogt, M., A. Puntschart, J. Geiser, C. Zuleger, R. Billeter and H. Hoppeler, 2001. Molecular adaptations in human skeletal muscle to endurance training under simulated hypoxic conditions. J. Applied Physiol., 91: 173-182.
PubMed  |  

Wang, C.F., C.Z. Yuan, S.H. Wang, H. Zhang and X.X. Hu et al., 2007. Differential gene expression of adolase C (ALDOC) and hypoxic adaptation in chickens. Anim. Genet., 38: 203-210.
PubMed  |  

Wei, D.B., 2001. The investigation of comparison between contents of myoglobin and activity of lactate dehydrogenase in heart muscle and skeletal muscle of plateau zokor and mouse. J. Qinghai Univ., 19: 20-21.

Wei, Z.H., 2005. Characteristics of the gas exchange and growth of Tibetan chicken embryo incubated at high altitude. Doctor Thesis, China Agricultural University, Beijing.

Wittenberg, B.A. and J.B. Wittenberg, 1989. Transport of oxygen in muscle. Ann. Rev. Physiol., 51: 857-878.
PubMed  |  

Wittenberg, J.B. and B.A. Wittenberg, 2003. Myoglobin function reassessed. J. Exp. Biol., 206: 2011-2020.
PubMed  |  

Wittenberg, J.B., 1970. Myoglobin facilitated oxygen diffusion and the role of myoglobin in oxygen entry into muscle. Physiol. Rev., 50: 559-636.
PubMed  |  

Zhang, H., X.T. Wang, Y. Chamba, Y. Ling and C.X. Wu, 2008. Influences of hypoxia on hatching performance in chickens with different genetic adaptation to high altitude. Poult. Sci., 87: 2112-2116.
PubMed  |  

Zhang, L.F., L.S. Lian, C.J. Zhao, J.Y. Li, H.G. Bao and C. Wu, 2007. Expression pattern of HIF1α mRNA in brain, heart and liver tissues of Tibet chicken embryo upon hypoxia by quantitative real-time PCR. Animal, 10: 1467-1471.
CrossRef  |  

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