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RESEARCH ARTICLE

Feeding level and dietary energy source have no effect on embryo survival in gilts, despite changes in systemic progesterone levels

R. Z. Athorn A E , P. Stott A , E. G. Bouwman B , A. C. Edwards C , M. A. Blackberry D , G. B. Martin D and P. Langendijk B
+ Author Affiliations
- Author Affiliations

A School of Animal and Veterinary Sciences, The University of Adelaide, Roseworthy Campus, Roseworthy, SA 5371, Australia.

B South Australian Research and Development Institute, Roseworthy Campus, Roseworthy, SA 5371, Australia.

C ACE Livestock Consulting Pty Ltd, PO Box 108, Cockatoo Valley, SA 5351, Australia.

D UWA Institute of Agriculture, University of Western Australia, Crawley, WA 6009, Australia.

E Corresponding author. Email: rathorn@rivalea.com.au

Animal Production Science 53(1) 30-37 https://doi.org/10.1071/AN12004
Submitted: 5 January 2012  Accepted: 14 June 2012   Published: 23 October 2012

Abstract

This study was designed to assess the effect of feeding level and dietary energy source on luteal function, systemic progesterone concentration and embryo survival in gilts during early gestation. At Day 0 of pregnancy, 104 gilts were allocated to one of four experimental diets (LStarch: 1.2 × maintenance requirement (M) Starch diet (43.3% starch), n = 31; HStarch: 2.4 × M Starch diet (43.3% starch), n = 21; HFat: 2.4 × M Fat diet (13.5% fat), n = 23; and HFibre: 2.4 × M Fibre diet (7.2% fibre), n = 23). On Day 5 of gestation, no significant difference in circulating concentration of systemic progesterone was seen among the treatments. However, on Day 15 of pregnancy, gilts on the HStarch diet had a significantly lower concentration of systemic progesterone than did gilts on both the LStarch and HFat diets (P < 0.05; 24.8 ± 2.4 v. 32.7 ± 2.4 and 36.1 ± 2.1 ng/mL, respectively). At Day 35 of gestation, there was also a tendency for gilts on the HStarch and HFat diets to have a higher total luteal weight than for gilts on the LStarch diets (7.2 ± 0.2 and 7.1 ± 0.2 v. 6.7 ± 0.2 g (P < 0.05)). No difference in embryo survival was seen among the treatments. From the present study, we can conclude that altering feeding level and dietary energy source did not affect embryo survival, despite the fact that systemic progesterone concentrations were affected on Day 15 of gestation. Also, luteal weight was greater for those gilts on the high feeding level than for those on the low feeding level when fed the same energy source.


References

Athorn RZ, Stott P, Bouwman EG, Ashman R, O’Leary S, Nottle M, Langendijk P (2011) Direct ovarian–uterine transfer of progesterone increases embryo survival in gilts. Reproduction, Fertility and Development 23, 921–928.
Direct ovarian–uterine transfer of progesterone increases embryo survival in gilts.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC3MXhtVOrtb7P&md5=1cef2befe908a2a6150f5b5c3871aa49CAS |

Athorn RZ, Stott P, Bouwman EG, Chen TY, Kennaway DJ, Langendijk P (2013) Effect of feeding level on luteal function and progesterone concentration in the vena cava during early pregnancy in gilts. Reproduction, Fertility and Development 25,
Effect of feeding level on luteal function and progesterone concentration in the vena cava during early pregnancy in gilts.Crossref | GoogleScholarGoogle Scholar |

Breier BH, Gallaher BW, Gluckman PD (1991) Radioimmunoassay for insulin-like growth factor-1: solutions to some potential problems and pitfalls. The Journal of Endocrinology 128, 347–357.
Radioimmunoassay for insulin-like growth factor-1: solutions to some potential problems and pitfalls.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK3MXhtFGiur8%3D&md5=32292f5e39036df5d1285b57beb27d2eCAS |

Dyck GW, Strain JH (1983) Postmating feeding level effects on conception rate and embryonic survival in gilts. Canadian Journal of Animal Science 63, 579–585.
Postmating feeding level effects on conception rate and embryonic survival in gilts.Crossref | GoogleScholarGoogle Scholar |

Ferguson EM, Ashworth CJ, Edwards SA, Hawkins N, Hepburn N, Hunter MG (2003) Effect of different nutritional regimens before ovulation on plasma concentrations of metabolic and reproductive hormones and oocyte maturation in gilts. Reproduction 126, 61–71.
Effect of different nutritional regimens before ovulation on plasma concentrations of metabolic and reproductive hormones and oocyte maturation in gilts.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD3sXlvFCnurw%3D&md5=68c3413ad4596585a6aade0692a36187CAS |

Foxcroft GR (1997) Mechanisms mediating nutritional effects on embryonic survival in pigs. Journal of Reproduction and Fertility. Supplement 52, 47–61.

Gadsby J, Rose L, Sriperumbudur R, Ge Z (2006) The role of intraluteal factors in the control of porcine corpus luteum. Reproduction. Supplement 62, 69–84.

Jindal R, Cosgrove JR, Aherne FX, Foxcroft GR (1996) Effect of nutrition on embryonal mortality in gilts: association with progesterone. Journal of Animal Science 74, 620–624.

Kemp B, Soede NM, Helmond FA, Bosch MW (1995) Effects of energy source in the diet on reproductive hormones and insulin during lactation and subsequent estrus in multiparous sows. Journal of Animal Science 73, 3022–3029.

Kemp B, Foxcroft GR, Soede NM (2006) Physiological determinants of litter size in contemporary dam line sows. In ‘AD Leman swine conference’. pp. 25–32. (University of Minnesota Department of Veterinary Extension: St Paul, MN)

Krzymowski T, Kotwica J, Stefańczyk-Krzymowska S (1990) Uterine and ovarian countercurrent pathways in the control of ovarian function in the pig. Journal of Reproduction and Fertility. Supplement 40, 179–191.

Langendijk P, van den Brand H, Gerritsen R, Quesnel H, Soede NM, Kemp B (2008) Porcine luteal function in relation to IGF-1 levels following ovulation during lactation or after weaning. Reproduction in Domestic Animals 43, 131–136.
Porcine luteal function in relation to IGF-1 levels following ovulation during lactation or after weaning.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1cXkvFWktLY%3D&md5=49214fe72d5825b9de2980fabd41e5ecCAS |

Miller EA, Ge Z, Hedgpeth V, Gadsby JE (2003) Steroidogenic responses of pig corpora lutea to insulin-like growth factor I (IGF-I) throughout the oestrous cycle. Reproduction 125, 241–249.
Steroidogenic responses of pig corpora lutea to insulin-like growth factor I (IGF-I) throughout the oestrous cycle.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD3sXisVKlt7s%3D&md5=70f7f019687c21f97cba33ca8a505f90CAS |

Pharazyn A, Den Hartog LA, Foxcroft GR, Aherne FX (1991a) Dietary energy and protien intake, plasma progesterone and embryo survival in early pregnancy in the gilt. Canadian Journal of Animal Science 71, 949–952.
Dietary energy and protien intake, plasma progesterone and embryo survival in early pregnancy in the gilt.Crossref | GoogleScholarGoogle Scholar |

Pharazyn A, Foxcroft GR, Aherne FX (1991b) Temporal relationship between plasma progesterone concentrations in the utero-ovarian and jugular veins during early pregnancy in the pig. Animal Reproduction Science 26, 323–332.
Temporal relationship between plasma progesterone concentrations in the utero-ovarian and jugular veins during early pregnancy in the pig.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK38Xhs1Kmsrs%3D&md5=9c9f381a8b7af900abf3a3811aaeb690CAS |

Pope WF (1994) Embryonic mortality in swine. In ‘Embryonic mortality in domestic species’. (Eds RD Geisert, MT Zavy) pp. 53–78. (CRC Press: Boca Raton, FL)

Prime GR, Symonds HW (1993) Influence of plane of nutrition on portal blood flow and the metabolic clearance rate of progesterone in ovariectomised gilts. The Journal of Agricultural Science 121, 389–397.
Influence of plane of nutrition on portal blood flow and the metabolic clearance rate of progesterone in ovariectomised gilts.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK2cXht1Ghurw%3D&md5=e15cedf536b2c70f21b7feabb6cd4c16CAS |

Ptak A, Gregoraszczuk EL, Rzasa J (2003) Growth hormone and insulin-like growth factor-1 action on progesterone secretion by porcine corpora lutea isolated at various periods of the luteal phase. Acta Veterinaria Hungarica 51, 197–208.
Growth hormone and insulin-like growth factor-1 action on progesterone secretion by porcine corpora lutea isolated at various periods of the luteal phase.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD3sXjvVSht7g%3D&md5=f964642fa054c9f3b506aca55c565680CAS |

Quesnel H, Boulet S, Serriere S, Venturi E, Martinat-Botte F (2010) Post-insemination level of feeding does not influence embryonic survival and growth in highly prolific pigs. Animal Reproduction Science 120, 120–124.
Post-insemination level of feeding does not influence embryonic survival and growth in highly prolific pigs.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BC3czktVOkug%3D%3D&md5=14a6cb27751729ee59c0c3fe51542c4dCAS |

SAS/STAT (1990) ‘User’s guide.’ (SAS Institute: Cary, NC)

Schams D, Berisha B (2002) Steroids as local regulators of ovarian activity in domestic animals. Domestic Animal Endocrinology 23, 53–65.
Steroids as local regulators of ovarian activity in domestic animals.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD38Xls1Wkt7Y%3D&md5=51011c9c14584c871bdd133dd4bb1f8bCAS |

Spencer TE, Burghardt RC, Johnson GA, Bazer FW (2004) Conceptus signals for establishment and maintenance of pregnancy. Animal Reproduction Science 82–83, 537–550.
Conceptus signals for establishment and maintenance of pregnancy.Crossref | GoogleScholarGoogle Scholar |

Stefańczyk-Krzymowska S, Grzegorzewski W, Wasowska B, Skipor J, Krzymowski T (1998) Local increase of ovarian steroid hormone concentration in blood supplying the oviduct and uterus during early pregnancy of sows. Theriogenology 50, 1071–1080.
Local increase of ovarian steroid hormone concentration in blood supplying the oviduct and uterus during early pregnancy of sows.Crossref | GoogleScholarGoogle Scholar |

Stewart CL, Boyle LA, McCann MEE, O’Connell NE (2010) The effect of feeding a high fibre diet on the welfare of sows housed in large dynamic groups. Animal Welfare 19, 349–357.

van den Brand H, Soede NM, Kemp B (2000) Dietary energy source at two feeding levels during lactation of primiparous sows: II. Effects on periestrus hormone profiles and embryonal survival. Journal of Animal Science 78, 405–411.

van den Brand H, Langendijk P, Soede NM, Kemp B (2001) Effects of postweaning dietary energy source on reproductive traits in primiparous sows. Journal of Animal Science 79, 420–426.

Virolainen JV, Tast A, Sorsa A, Love RJ, Peltoniemi OAT (2004) Changes in feeding level during early pregnancy affect fertility in gilts. Animal Reproduction Science 80, 341–352.
Changes in feeding level during early pregnancy affect fertility in gilts.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BD2c7kt1yitw%3D%3D&md5=2230828570db4269e328e9f7b4d1ee7dCAS |