Effects of maternal nutrition on pregnancy on progeny quality - a review

Authors

DOI:

https://doi.org/10.33448/rsd-v10i2.12654

Keywords:

Beef cattle; Fetal programming; Myogenesis; Skeletal muscle; Steers.

Abstract

The aim of the study was, through a literature review, to evaluate the effects of nutrition of beef cows during pregnancy on the quality and performance of the progeny after birth. In recent years, numerous studies have been carried out to assess the effects of maternal nutrition during pregnancy (fetal programming) on ​​progeny productivity. In view of the results presented, it is clearly elucidated that the nutritional conditions of the pregnant uterus alter health, physiology, metabolism and, consequently, the postpartum performance of the progeny in several ways. These changes may vary according to the degree and intensity of the nutritional challenge, the moment of this challenge during pregnancy and the adaptive capacity of pregnant cows to partition nutrients to the fetus. The literature suggests that the effects of fetal programming are more easily seen in the initial months of the offspring's life, disappearing with advancing age, however, the nutritional restriction of the cow during pregnancy can also lead to the formation of an individual with greater capacity to adaptation and better prepared to survive in more challenging environments in postnatal life. In addition, the formation of an “economic” phenotype may result in a compensatory performance during the adult life of cow calves that have undergone nutritional challenges during pregnancy.

References

Abuelo, A. (2020). Symposium review: Late-gestation maternal factors affecting the health and development of dairy calves. Journal of Dairy Science, 103(4), 3882-3893.

Bauman, D. E., & Currie, B. (1980). Partitioning of nutrients during pregnancy and lactation: a review of mechanisms involving homeostasis e homeorhesis. Journal of Dairy Science, 63(9), 1514-1529.

Bohnert, D. W., Stalker, L. A., Mills, R. R., Nyman, A., Falck, S. J., & Cooke, R. F. (2013). Late gestation suplementation of beff cows differing in body condition score: Effects on cow and calf performance. Journal of Animal Science, 91(11), 5485-5491.

Brameld, J. M., Greenwood, P. L., & Bell, A. W. (2010). Biological Mechanisms of Fetal Development Relating to Postnatal Growth, Efficiency and Carcass Characteristics in Ruminants. Greenwood et al. (ed). Managing the prenatal environment to enhance livestock productivity. Dordrecht: Springer Science and Business Media, cap. 4, p. 93-120.

Camacho, L. E., Lemley, C. O., Dorsam, S. T., Swanson, K. C., & Vonnahme, K. A., (2018). Effects of maternal nutrient restriction followed by realimentation during early and mid-gestation in beef cows. II. Placental development, umbilical blood flow, and uterine blood flow responses to diet alterations. Theriogenology, 116, 1-11.

Chen, D., Li, W., Du, M., & Cao, B. (2019). Adipogenesis, fibrogenesis and myogenesis related gene expression in longissimus muscle of high and low marbling beef cattle. Livestock Science, 229, 188-193.

Du, M., Tong, J., Zhao, J., Underwood, K. R., Zhu, M., Ford, S. P., & Nathanielsz, P. W. (2010). Fetal programming of skeletal muscle development in ruminant animals. Journal Animal Science, 88, 51-60.

Du, M., Huang, Y., Das, A. K., Yang, Q., Duarte, M. S., Modson, M. V., & Zhu, M. J. (2013). Manipulating mesenchymal progenitor cell differentiation to optimize performance and carcass value of beef cattle. Journal Animal Science, 91(3), 1419-1427.

Du, M., Wang, B., Fu, X., Yang, Q., & Zhu, M. (2015). Fetal programming in meat production. Meat Science, 109, 40-47.

Duarte, M. S., Gionbelli, M. P., Paulino, P. V. R., Serão, N. V. L., Martins, T. S., Tótaro, P. I. S., Neves, C. A., Valadares Filho, S. C., Dodson, M. V., Zhu, M., & Du, M. (2013). Effects of maternal nutrition on development of gastrointestinal tract of bovine fetus at different stages of gestation. Livestock Science, 153, 60-65.

Gaccioli, F., Lager, S., Powell, T. L., & Jansson, T. (2013). Placental transport in response to altered maternal nutrition. Journal of Developmental Origins of Health and Disease, 4, 101-115.

González-Recio, O., Ugarte, E.; & Bach, A. (2012). Trans-Generational Effect of Maternal Lactation during Pregnancy: A Holstein Cow Model. Plos One, 7(12), 1-7.

Greenwood, P. L., Thompsom, A. N., Ford, S. P. (2010). Posnatal consequences of the maternal environment and growth during prenatal life for productivity of ruminants. Greenwood et al. (ed). Managing the prenatal environment to enhance livestock productivity. Dordrecht: Springer Science and Business Media, cap. 1, p. 3-36.

Greenwood, D. P., & Bell, A. W. (2019). Developmental programming and growth of livestock tissues for meat production. Veterinary Clinics Food Animal, 35, 303-319.

Hyttel, P., Sinowatz, F., & Vejlsted, M. (2012). Embriologia veterinária. Rio de Janeiro: Elsevier.

Keomanivong, F. E., Camacho, L. E., Lemley, C. O., Kuemper, E. A., Yunusova, R. D., Borowicz, P. P., Vonnahme, K. A., Caton, J. S., & Swanson, K. C. (2016). Effects of realimentation after nutrient restriction during mid- to late gestation on pancreatic digestive enzymes, serum insulin and glucose levels, and insulin-containing cell cluster morphology. Animal Phisiology and Animal Nutrition, 101(3), 589-604.

LeMaster, C. T., Taylor, R. K., Ricks, R. E., & Long, N. M. (2017). The effects of late gestation maternal nutrient restriction whit or without protein supplementation on endocrine regulation of newborn and postnatal beef calves. Theriogenology, 87, 64-71.

Long, N. M., Vonnahme, K. A., Hess, B. W., Nathanielsz, P. W., & Ford, S. P. (2009). Effects of early gestational undernutrition on fetal growth, organ development, and placentomal composition in the bovine. Journal of Animal Science, 87, 1950-1959.

Maresca, S., Lopes Valiente, S., Rodrigues, A. M., Long, N. M., Pavan, E., & Quintans, G. (2018). Effect of protein restriction of bovine dams during late gestation on offspring postnatal growth, glucose-insulin metabolism and IGF-1 concentration. Livestock Science, 212, 120-126.

Maresca, S., López Valiente, S., Rodriguez, A. M., Testa, L. M., Long, N. M., Quintans, G. I., Pavan, E. (2019). The influence of protein restriction during mid- to late gestation on beef offspring growth, carcass characteristic and meat quality. Meat Science, 153, 103-108.

Marques, R. S., Cooke, R. F., Rodrigues, M. C., Moriel, P., & Bohnert, D. W. (2016). Impacts of cow body condition score during gestation on weaning performance of the offspring. Livestock Science, 191, 174-178.

McCarty, K. J., Washburn, J. L., Taylor, R. K., & Long, N. M. (2020). The effects of early or mid-gestation nutrient restriction on bovine fetal pancreatic development. Domestic Animal Endocrinology, 70, 1-6.

Mendes, L. C. M. (2016). Trabalho de Conclusão de Curso em Zootecnia – Universidade Federal do Rio Grande do Sul, Porto Alegre, RS.

Mohrhauser, D. A., Taylor, A. R., Underwood, K. R., Pritchard, R. H., Wertz-Lutz, A. E., & Blair, D. A. (2015a). The influence of maternal energy status during mid-gestation on beef offspring tenderness, muscle characteristics, and gene expression. Meat Science, 110, 201-211.

Mohrhauser, D. A., Taylor, A. R., Underwood, K. R., Pritchard, R. H., Wertz-Lutz, A. E., & Blair, D. A. (2015b). The influence of maternal energy status during midgestation on beef offspring carcass characteristics and meat quality. Journal of Animal Science, 93, 786-793.

Muhlhauser, B. S., Duffield, J. A., & McMillen I. C. (2007). Increased Maternal Nutrition Increases Leptin Expression in Perirenal and Subcutaneous Adipose Tissue in the Postnatal Lamb. Endocrinology, 148, (12), 6157-6163.

Mulliniks, J. T., Mathis, C. P., Cox, S. H., & Petersen, M. K. (2013). Supplementation strategy during late gestation alters steer progeny health in the feedlot without affectingcow performance. Animal Feed Science and Technology, 185, 126-132.

Perry, V. E. A., Copping, K. J., Miguel-Pacheco, G., & Hernandez-Mendrano, J. (2019). The effects of developmental programming upon neonatal mortality. Veterinary Clinics Food Animal, 35, 289-302.

Ramírez, M., Testa, L. M., López Valiente, S., Latorre, M. E., Long, N. M., Rodriguez, A. M., Pavan, E., & Maresca, S. (2020). Maternal energy status during late gestation: Effects on growth performance, carcass characteristics and meat quality of steers progeny. Meat Science, 164, 1-7.

Reynolds, L. P., Borowicz, P. P., Caton, J. S., Crouse, M. S., Dahlen C. R., & Ward, A. K. (2019). Developmental Programming of Fetal Growth and Development. Veterinary Clinics Food Animal, 35(2), 229-247.

Symonds, M. E., Sebert, S. P., & Budge, H. (2010). Nutritional regulation of fetal growth and implications for productive life in ruminants. Animal, 4(7), 1075-1083.

Taylor, A. R., Mohrhauser, D. A., Pritchard, R. H., Underwood, K. R., Wertz-Lutz, A. E., & Blair, D. A. (2016). The influence of maternal energy status during mid-gestation on growth, cattle performance, and the immune response in the resultant beef progeny. The Professional Animal Scientist, 32, 389-399.

Tsuneda, P. P., Hatamoto- Zervoudakis, L. K., Duarte Júnior, M. F., Silva, L. E. S., Delbem, R. A., & Motheo, T. F. (2017). Efeitos da nutrição materna sobre o desenvolvimento e performance reprodutiva da prole de ruminantes. Investigação, 16(1), 56-61.

Vaag, A. A., Grunnet, L. G., Arora, G. P., & Brons, C. (2012). The thrifty phenotype hypothesis revisited. Diabetologia, 55, 2085-2088.

Zhu, M. J., Ford, S. P., Means, W. J., Hess, B. W., Nathaniels, P. W., & Du, M. (2006). Maternal nutrient restriction affects properties of skeletal muscle in offspring. The Journal of Physiology, 575(1), 241-250.

Webb, M. J., Block, J. J., Funstons, R. N., Underwood, K. R., Legako, J. F., Harty, A. A., Slaverson, R. R., Olson, K. C., & Blair, A. D. (2019). Influence of maternal protein restriction in primiparous heifers during mid and/or late-gestation on meat quality and fatty acid profile of progeny. Meat Science, 152, 31-37.

Wilson, T. B., Faulkner, D. B., & Shike, D. W. (2016). Influence of prepartum dietary on beef cow performance and calf growth and carcass characteristics. Livestock Science, 184, 21-27.

Published

23/02/2021

How to Cite

KLEIN, J. L.; MACHADO, D. S.; ADAMS, S. M.; ALVES FILHO, D. C.; BRONDANI, I. L. Effects of maternal nutrition on pregnancy on progeny quality - a review. Research, Society and Development, [S. l.], v. 10, n. 2, p. e45710212654, 2021. DOI: 10.33448/rsd-v10i2.12654. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/12654. Acesso em: 26 apr. 2024.

Issue

Section

Review Article