Review: Effect of Protein Nutrition on Ovarian and Uterine Physiology in Dairy Cattle
Обзор: влияние белкового питания на физиологию яичников и матки у молочного скота
1998-09-01
SCID: 54.1/9e45nxst
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dairy cattle fertilitydietary protein nutritionplasma urea nitrogenprostaglandin F2 alphauterine pH
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Abstract (AI)
Milk production and dry matter intake of dairy cows are stimulated in response to increased intake of dietary protein, but, unfortunately, decreased fertility is often associated with this nutritional strategy. Ruminally degradable protein or ruminally undegradable protein in excess of requirement can contribute to reduced fertility in lactating cows. Dietary protein nutrition or utilization and the associated effects on ovarian or uterine physiology have been monitored with urea nitrogen in plasma or milk; concentrations above 19 mg/dl have been associated with altered uterine pH and reduced fertility in dairy cows. The uterine pH changed dynamically and inversely with plasma urea nitrogen, signaling possible changes in the uterine milieu. Mechanisms for reduced fertility include exacerbation of negative energy balance and reduced plasma progesterone concentrations when cows were fed rations that were high in ruminally degradable intake protein. Alternatively, changes in uterine secretions that are associated with high protein intake and elevated plasma urea nitrogen might be detrimental to embryos. Bovine endometrial cells in culture respond directly to increasing urea concentrations with alteration in pH gradient but respond most notably with increased secretion of prostaglandin F2 alpha (PGF2 alpha). Increased uterine luminal PGF2 alpha interferes with embryo development and survival in cows, thus providing a plausible link between elevated plasma urea nitrogen concentrations and decreased fertility. Poor fertility in high producing dairy cows reflects the combined effects of a uterine environment that is dependent on progesterone and rendered suboptimum by the antecedent effects of negative energy balance or postpartum health problems and that is further compromised by the effects of urea resulting from intake of high dietary protein.
Key Findings
1
Elevated urea concentrations directly alter bovine endometrial cell function, especially by increasing prostaglandin F2 alpha secretion, which can impair embryo development and survival.
2
Excess ruminally degradable or undegradable protein can elevate plasma or milk urea nitrogen; concentrations above 19 mg/dl are associated with altered uterine pH and reduced fertility.
3
High ruminally degradable protein may reduce fertility by worsening negative energy balance and lowering plasma progesterone concentrations.
4
Increased dietary protein stimulates milk production and dry matter intake but is often associated with reduced fertility in lactating dairy cows.
5
Uterine pH changes dynamically and inversely with plasma urea nitrogen, indicating that excessive protein intake alters the uterine environment.
Research Object
Ovarian and uterine physiology in dairy cows under varying dietary protein intake
Research Subject
Effects of excess ruminally degradable or undegradable dietary protein and elevated plasma urea nitrogen on uterine milieu, ovarian function, embryo survival, and fertility
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1998-09-01
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