Author:
SELVARAJU S,BHAT KARTHIK S,ARCHANA S S,GOWDA N K S,KRISHNAN BINSILA B,REDDY I J,PAL D T,ROY K S,RAVINDRA J P
Abstract
The reasons for declining fertility in dairy cattle and buffaloes are being investigated intensely to improve the productivity. The present study was conducted to assess the extent of reproductive disorders and possible causes in cattle and buffaloes. Data on various managemental aspects and reproductive status were recorded. The blood samples were collected from the animals without reproductive problems and reproductively problematic animals. The plasma was separated and analyzed for minerals, hormones and biochemical status. The study revealed that21% of the animals had reproductive disorders, of which, repeat breeders were predominantly high (51.5%), followed by post-partum anestrus (22.8%), delayed puberty (15.74%) and silent heat (2.4%). Based on history, rectal examination and the plasma progesterone levels, silent estrus was observed in 18% (3/16) of the postpartum anestrus animals and luteal insufficiency was observed in 54% (6/11) of the repeat breeders. The blood urea nitrogen (BUN) level was higher in repeat breeders and normal animals as compared to silent heat. Overall, 50% (77/155) of the animals showed a negative energy balance irrespective of the reproductive status. The 55.5% of the postpartum anestrus (10/18) and silent heat (5/9) animals were in negative energy status. The HDL cholesterol was lower in animals with delayed puberty than in normal animals. The plasma levels of calcium (Ca), magnesium (Mg) and zinc (Zn) were lower in the silent heat as compared to normal animals. The present study revealed the importance of HDL cholesterol in attaining puberty and essential role of Mg in maintaining optimum reproductive efficiency in dairy animals.
Publisher
Indian Council of Agricultural Research, Directorate of Knowledge Management in Agriculture
Subject
General Veterinary,Animal Science and Zoology
Reference32 articles.
1. Alavi-Shoushtari S M, Rezaie S A, Pak M, Alizadeh S, Abedizadeh R and Khaki A. 2012. Copper and zinc concentrations in the uterine fluid and blood serum during the bovine estrous cycle. Veterinary Research Forum 3: 199–203.
2. Azhar S, Tsai L, Medicherla S, Chandrasekher Y, Giudice L and Reaven E. 1998. Human granulosa cells use high-density lipoprotein cholesterol for steroidogenesis. The Journal of Clinical Endocrinology and Metabolism 83: 983–91.
3. Blaine J, Chonchol M and Levi M. 2014. Renal control of calcium, phosphate, and magnesium homeostasis. Clinical Journal of the American Society of Nephrology 10: 1252–72.
4. Diskin M, Waters S, Parr M and Kenny D. 2016. Pregnancy losses in cattle: potential for improvement. Reproduction Fertility Development 28: 83–93.
5. Falholt K, Lund B and Falholt W. 1973. An easy colorimetric micromethod for routine determination of free fatty acids in plasma.Clinica Chimica Acta 46: 105–11.