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A survey of reproductive performance in dairy herds. Characteristics of the patterns of progesterone concentrations in milk

Published online by Cambridge University Press:  02 September 2010

Glenys A. Bloomfield
Affiliation:
National Institute for Research in Dairying, Shinfield, Reading RG2 9AT
S. V. Morant
Affiliation:
National Institute for Research in Dairying, Shinfield, Reading RG2 9AT
M. J. Ducker
Affiliation:
National Institute for Research in Dairying, Shinfield, Reading RG2 9AT
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Abstract

Progesterone concentrations were measured by radioimmunoassay in fat-free milk samples obtained three times weekly from calving until day 60 of pregnancy from over 700 cows in commercial dairy herds. Profiles of progesterone concentration during the ovulatory cycle and early pregnancy were also examined. In 94% of the animals cycling had commenced by 60 days post partum and a further 3% had shown some ovarian activity. In 34% of cows, the resumption of regular ovulatory activity was preceded by short periods of progesterone secretion which did not meet the criteria for a 'normal cycle’. Peaks of progesterone cross-reactivity (>0·75 ng/1) were detected at the time of ovulation in proportionately 0·06 of all cycles. There was no relationship between the detection of oestrus and the length of the following progesterone cycle or the concentrations during that cycle. However, there was a tendency for the first progesterone cycle post partum to be more variable in length than later cycles (0·56 within the range 18 to 24 days compared with 0·70 of later cycles; P < 0·001). Extension of the length of the luteal phase occurred in 58 second and later cycles (proportionately 0·141) following inseminations which did not result in calving. However, since the comparable figure for 1053 cycles where no insemination was given was 0·048, the overall figure for embryo mortality later than 24 days after insemination was estimated as 9·3%. Concentrations of progesterone in pregnant animals, compared to non-pregnant animals, and the distributions of luteal lengths between 8 and 21 days long following inseminations not resulting in calving could both be explained by early maternal recognition of pregnancy.

Type
Research Article
Copyright
Copyright © British Society of Animal Science 1986

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References

REFERENCES

Ball, P. J. H. 1978. The relationship of age and stage of gestation to the incidence of embryo death in dairy cattle. Res. vet. Sci. 25: 120122.CrossRefGoogle Scholar
Bulman, D. Claire, Hewitt, D. S. and Lamming, G. E. 1978. The measurement of milk progesterone in suckled cows. Vet. Rec. 103: 161162.CrossRefGoogle ScholarPubMed
Bulman, D. Claire and Lamming, G. E. 1978. Milk progesterone levels in relation to conception, repeat breeding and factors influencing acyclicity in dairy cows. J. Reprod. Fert. 54: 447458.CrossRefGoogle ScholarPubMed
Bulman, D. Claire and Wood, P. D. P. 1980. Abnormal patterns of ovarian activity in dairy cows and their relationships with reproductive performance. Anim. Prod. 30: 177188.Google Scholar
Casida, L. E. 1961. Present status of the repeat-breeder cow problem. J. Dairy Sci. 44: 23232329.CrossRefGoogle Scholar
Caudle, A. B., Thompson, F. N., Purswell, B., Sharlin, J. S., Brooks, P. M. and Smith, C. K. 1982. Effect of monitoring corpus luteum function on days open. J. Dairy Sci. 65: 638643.CrossRefGoogle ScholarPubMed
Conover, W. J. 1971. Practical Nonparametric Statistics. Chapter 6. Wiley, London.Google Scholar
Diskin, M. G. and Sreeenan, J. M. 1980. Fertilization and embryonic mortality rates in beef heifers after artificial insemination. J. Reprod. Fert. 59: 463468.CrossRefGoogle ScholarPubMed
Dobson, Hilary, Midmer, S. E. and Fitzpatrick, R. J. 1975. Relationship between progesterone concentrations in milk and plasma during the bovine oestrous cycle. Vet. Rec. 96: 222223.CrossRefGoogle ScholarPubMed
Glencross, R. G., Munro, I. B., Senior, B. E. and Pope, G. S. 1973. Concentrations of oestradiol-17p\ oestrone and progesterone in jugular venous plasma of cows during the oestrous cycle and in early pregnancy. Acta endocr. Copnh. 73: 374384.Google Scholar
Hansel, W. 1981. Plasma hormone concentrations associated with early embryo mortality in heifers. J. Reprod. Feft., Suppl. 30, pp. 231239.Google ScholarPubMed
Ireland, J. J. and Roche, J. F. 1982. Development and atresia of non-ovulatory follicles in heifers. Proc. Soc. Study Fertility, Nottingham, Abstr. No. 3.Google Scholar
Lamming, G. E., Wathes, D. C. and Peters, A. R. 1981. Endocrine patterns of the post-partum cow. J. Reprod. Fert., Suppl. 30, pp. 155170.Google ScholarPubMed
Lukaszewska, Janina and Hansel, W. 1980. Corpus luteum maintenance during early pregnancy in the cow. J. Reprod. Fert. 59: 485493.CrossRefGoogle ScholarPubMed
MacMillan, K. L. and Watson, J. D. 1971. Short estrous cycles in New Zealand dairy cattle. J. Dairy Sci. 54: 15261529.CrossRefGoogle ScholarPubMed
Martal, J., Lacroix, M. C., Loudes, C., Saunier, M. and Wintenberger-torres, S. 1979. Trophoblastin, an antiluteolytic protein present in early pregnancy in the sheep. J. Reprod. Fert. 56: 6373.CrossRefGoogle ScholarPubMed
Peters, A. R. and Riley, G. M. 1982. Milk progesterone profiles and factors affecting post partum ovarian activity in beef cows. Anim. Prod. 34: 145153.Google Scholar
Pope, G. S. 1982. Oestrogens and progesterone in plasma and milk of post-partum dairy cattle. In Factors Influencing Fertility in the Postpartum Cow (ed. Karg, H. and Schallenberger, E.), pp. 248276. Martinus Nijhoff, The Hague.Google Scholar
Pope, G. S., Majzlik, I., Ball, P. J. H. and Leaver, D. J. 1976. Use of progesterone concentrations in plasma and milk in the diagnosis of pregnancy in domestic cattle. Br. vet. J. 132: 497506.CrossRefGoogle ScholarPubMed
Robinson, T. J. 1954. The necessity for progesterone with estrogen for the induction of recurrent estrus in the ovariectomized ewe. Endocrinology 55: 403408.CrossRefGoogle ScholarPubMed
Roche, J. F., Boland, M. P. and McGeady, T. A. 1981. Reproductive wastage following artificial insemination of heifers. Vet. Rec. 109: 401404.CrossRefGoogle ScholarPubMed
Rosenberg, Miriam, Herz, Z., Davidson, M. and Folman, Y. 1977. Seasonal variations in post-partum plasma progesterone levels and conception in primiparous and multiparous dairy cows. J. Reprod. Fert. 51: 363367.CrossRefGoogle ScholarPubMed
Tribble, R. L., Sorensen, A. M. Jr, Woodward, T. L., Connor, J. S., Beverly, J. R. and Fleeger, J. L. 1973. Serum progestins and luteinising hormone levels in non-suckled primiparous heifers. Nature, Lond. 246: 494495.CrossRefGoogle ScholarPubMed