Theriogenology
Volume 73, Issue 2 , Pages 242-249, 15 January 2010

Effects of a shortened preovulatory follicular phase on genital blood flow and endometrial hormone receptor concentrations in Holstein-Friesian cows

  • H. Bollwein

      Affiliations

    • Clinic for Cattle, School of Veterinary Medicine Hannover, Hannover, Germany
  • ,
  • D. Prost

      Affiliations

    • Clinic for Cattle, School of Veterinary Medicine Hannover, Hannover, Germany
    • Institute of Farm Animal Genetics, Friedrich-Loeffler-Institute (FLI), Mariensee, Neustadt, Germany
  • ,
  • S.E. Ulbrich

      Affiliations

    • Physiology Weihenstephan, and Z I E L Research Center for Nutrition and Food Sciences, Technical University of Munich, Freising, Germany
  • ,
  • H. Niemann

      Affiliations

    • Institute of Farm Animal Genetics, Friedrich-Loeffler-Institute (FLI), Mariensee, Neustadt, Germany
  • ,
  • A. Honnens

      Affiliations

    • Clinic for Cattle, School of Veterinary Medicine Hannover, Hannover, Germany
    • Corresponding Author InformationCorresponding author. Tel.: +49 511 856 7610; fax: +49 511 856 7693.

Received 15 April 2009; received in revised form 3 August 2009; accepted 30 August 2009. published online 09 November 2009.

Abstract 

The goal of this study was to determine the effects of the length of the preovulatory phase on genital blood flow and mRNA expression of endometrial hormone receptors in cattle (Bos Taurus). Ovulation was synchronized in 50 Holstein-Friesian cows using a modified Ovsynch (ovulation synchronization) protocol, in which the second gonadotropin-releasing hormone (GnRH) administration was given 40h (G40, n=17) or 60h (G60, n=16) after the prostaglandin F (PGF) administration. The third group (S, n=17) did not receive a second GnRH administration. Transrectal color Doppler examinations were carried out 24h before (Day –1) and on Day 7 after ovulation (Day 0). Follicular size (FS) and luteal size (CLS) were quantified by measuring the areas of these structures on cross-sectional B-mode ultrasound images. Follicular blood flow (FB) and luteal blood flow (CLB) were quantified by determining the colored areas of these structures. Uterine blood flow was measured using the time-averaged maximum velocities (TAMVs) and the pulsatility indices (PIs) of both uterine arteries. Endometrial mRNA transcript abundance of estrogen receptors α and β as well as oxytocin and progesterone receptor were determined on Days –1 and 7 in G40 and G60 cows. In all cows, plasma progesterone (P4) values were measured on Day 7. On Day –1, FS and FB values were lower (P ≤ 0.05) in G40 cows compared with those in S cows but did not differ (P>0.05) between G60 cows on the one hand and G40 cows and S cows, respectively, on the other hand. On Day 7, CLS and P4 did not differ (P>0.05) between cows of Groups G40, G60, and S; CLB was lower (P0.05) in G40 cows than in G60 and S cows, but no difference (P>0.05) occurred between G60 and S cows. The uterine TAMV and PI values did not differ among the three groups (P>0.05). Gene expression of hormone receptors did not differ (P>0.05) between Groups G40 and G60 on Days –1 and 7. Results of this study indicate that a shortened preovulatory follicle phase primarily affects ovarian but not the measured uterine events in cows undergoing synchronization of ovulation.

Keywords: Corpus luteum, Endometrial receptors, Follicle, Genital blood flow, Ovsynch

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PII: S0093-691X(09)00406-3

doi:10.1016/j.theriogenology.2009.08.014

Theriogenology
Volume 73, Issue 2 , Pages 242-249, 15 January 2010