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大学・研究所にある論文を検索できる 「Nutritional parameters in the blood of dams during late gestation and immediately after calving, in the umbilical vein at calving, and in the blood of calves immediately following birth in Holstein heifers pregnant with either Holstein or beef breed fetuses」の論文概要。リケラボ論文検索は、全国の大学リポジトリにある学位論文・教授論文を一括検索できる論文検索サービスです。

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Nutritional parameters in the blood of dams during late gestation and immediately after calving, in the umbilical vein at calving, and in the blood of calves immediately following birth in Holstein heifers pregnant with either Holstein or beef breed fetuses

Kawashima Chiho Kume Sakura Yamagishi Norio 帯広畜産大学

2022.09.13

概要

Dairy cattle management lacks consideration of fetal breed, the effect of which on fetal growth and nutrition are unclear. We investigated blood parameters in 12 late- pregnant Holstein heifers with similar (Holstein, n= 5) or different (Japanese Black [n= 4] or F1 cross [n= 3]; Holstein × Japanese Black) fetus breeds and in their um-bilical cords and calves. Samples were obtained from dams 1 week before calving (−1 week) and immediately after calving, from the umbilical vein at calving, and from calves immediately after birth. Dams with beef fetuses had higher serum glucose lev-els (−1 week; p< .05) than those with Holstein fetuses. Plasma total amino acid, total essential amino acid, total nonessential amino acid, and other amino acid concentra-tions were lower in the umbilical veins of dams with calves of the beef breeds than in those of the Holstein breeds (p< .05). Furthermore, serum glucose and plasma amino acid levels were lower in the beef calves than in the Holstein calves (p< .05). Overall, nutrient supply from dams to beef fetuses was lower than that to Holstein fetuses. Our findings may facilitate feeding management of dairy cattle pregnant with beef breeds for ppropriate fetal growth and nutrition.

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参考文献

Bell, A. W., & Ehrhardt, R. A. (2002). Regulation of placental nutrient transport and implications for fetal growth. Nutrition Research Reviews, 15, 211–230. https://doi: 10.1079/NRR200239.

Ferguson, J. D., Galligan, D. T., & Thomsen, N. (1994). Principal descriptors of body condition score in Holstein cows. Journal of Dairy Science, 77, 2695–2703. https://doi: 10.3168/jds.S0022-0302(94)77212-X.

Hayirli, A. (2006). The role of exogenous insulin in the complex of hepatic lipidosis and ketosis associated with insulin resistance phenomenon in postpartum dairy cattle. Veterinary Research Communications, 30, 749–774. https://doi: 10.1007/s11259-006-3320-6.

Isobe, N., Nakao. T., Uehara, O., Yamashiro, H., & Kubota, H. (2003). Plasma concentration of estrone sulfate during pregnancy in different breeds of Japanese beef cattle. Journal of Reproduction and Development, 49, 369-374. https://doi: 10.1262/jrd.49.369.

Kim, J., Song, G., Wu, G., & Bazer, F. W. (2012). Functional roles of fructose. Proceedings of the National Academy of Sciences of the United States of America, 109, E1619-1628. https://doi: 10.1073/pnas.1204298109.

Kwon, H., Ford, S. P., Bazer, F. W., Spencer, T. E., Nathanielsz, P. W., Nijland, M. J., … Wu, G. (2004). Maternal nutrient restriction reduces concentrations of amino acids and polyamines in ovine maternal and fetal plasma and fetal fluids. Biology of Reproduction, 71, 901-908. https://doi.org/10.1095/biolreprod.104.029645.

Lemons, J. A., & Schreiner, R. L. (1983). Amino acid metabolism in the ovine fetus. American Journal of Physiology, 244, E459–E466. https://doi.org/10.1152/ajpendo.1983.244.5.E459.

Lucy, M. C., Green, J. C., Meyer, J. P., Williams, A. M., Newsom, E. M., & Keisler, D. H. (2012). Short communication: Glucose and fructose concentrations and expression of glucose transporters in 4- to 6-week pregnancies collected from Holstein cows that were either lactating or not lactating. Journal of Dairy Science, 95, 5095-5101. http://dx.doi.org/ 10.3168/jds.2012-5456.

National Agriculture and Food Research Organization (NARO) (2017). Japanese feeding standard for dairy cattle. Tokyo, Japan: Japan Livestock Industry Association. (In Japanese).

Nishida, T. (2009). Nutrients and growth of fetus. In Y. Ogata, Z. Okamoto, N. Kimura, M. Koiwai, & S. Tsumagari (Eds.), The calf: Management from the birth to first childbirth (pp. 31-33). Tokyo: Midori Shobo Co., Ltd. (In Japanese).

Paolini, C. L., Meschia, G., Fennessey, P. V., Pike, A. W., Teng, C., Battaglia, F. C., & Wilkening, R. B. (2001). An in vivo study of ovine placental transport of essential amino acids. American Journal of Physiology - Endocrinology and Metabolism, 280, E31-39. https://doi: 10.1152/ajpendo.2001.280.1.E31.

Shen, L., Zhu, Y., Xiao, J., Deng, J., Peng, G., Zuo, Z., … Cao, S. (2019). Relationship of adiponectin, leptin, visfatin, and IGF-1 in cow's venous blood and venous cord blood with calf birth weight. Polish Journal of Veterinary Sciences, 22, 541-548. https://doi: 10.24425/pjvs.2019.129962.

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