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Fetal programming of skeletal muscle development in ruminant animals1

Journal of Animal Science · 2009 · Vol. 88(suppl_13) · pp. E51–E60
‬Min DuJinyi TongJunxing ZhaoK. R. UnderwoodMaobi ZhuStephen P. FordPeter W. Nathanielsz

Abstract

Enhancing skeletal muscle growth is crucial for animal agriculture because skeletal muscle provides meat for human consumption. An increasing body of evidence shows that the level of maternal nutrition alters fetal skeletal muscle development, with long-term effects on offspring growth and performance. Fetal skeletal muscle development mainly involves myogenesis (i.e., muscle cell development), but also involves adipogenesis (i.e., adipocyte development) and fibrogenesis (i.e., fibroblast development). These tissues in fetal muscle are mainly derived from mesenchymal stem cells (MSC). Shifting the commitment of MSC from myogenesis to adipogenesis increases intramuscular fat (i.e., marbling), improving the quality grade of meats. Strong experimental evidence indicates that Wingless and Int (Wnt)/beta-catenin signaling regulates MSC differentiation. Upregulation of Wnt/beta-catenin promotes myogenesis, and downregulation enhances adipogenesis. A lack of nutrients in early to midgestation reduces the formation of secondary muscle fibers in ruminant animals. Nutrient deficiency during mid- to late gestation decreases the number of intramuscular adipocytes and muscle fiber sizes. Knowledge of this regulatory mechanism will allow the development of strategies to enhance muscle growth and marbling in offspring, especially in the setting of nutrient deficiency.

Adipose Tissue and MetabolismBirth, Development, and HealthMuscle Physiology and DisordersMyogenesisAdipogenesisSkeletal muscleEndocrinologyBiologyIntramuscular fatInternal medicineOffspringMesenchymal stem cellDownregulation and upregulation

MeSH terms

AnimalsCattleMeatRuminantsMuscle, SkeletalMuscle DevelopmentFetal DevelopmentAdipogenesisWnt Proteins
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References
The p38 MAPK signaling pathway: A major regulator of skeletal muscle development
Molecular and Cellular Endocrinology · 2006 · 366 citations
Adipocyte differentiation from the inside out
Nature Reviews Molecular Cell Biology · 2006 · 2,574 citations
Fetal origins of adult disease: strength of effects and biological basis
International Journal of Epidemiology · 2002 · 2,009 citations
C/EBPα induces adipogenesis through PPARγ: a unified pathway
Genes & Development · 2002 · 1,487 citations
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Fetal programming of skeletal muscle development in ruminant animals1 · Scinovex