Stocktake Sale on now: wide range of books at up to 70% off!
Register      Login
Animal Production Science Animal Production Science Society
Food, fibre and pharmaceuticals from animals
RESEARCH ARTICLE

Twinning rate is not genetically correlated with production and reproduction traits in Iranian dairy cows

Seyedeh Samaneh Asadollahi A and Navid Ghavi Hossein-Zadeh https://orcid.org/0000-0001-9458-5860 A B
+ Author Affiliations
- Author Affiliations

A Department of Animal Science, Faculty of Agricultural Sciences, University of Guilan, Rasht, Gilan Province, Iran.

B Corresponding author. Email: nhosseinzadeh@guilan.ac.ir; navid.hosseinzadeh@gmail.com

Animal Production Science 60(11) 1402-1408 https://doi.org/10.1071/AN19336
Submitted: 11 June 2019  Accepted: 20 January 2020   Published: 7 April 2020

Abstract

Context: Any interruption to the reproductive system can negatively influence animal performance, and suitable animal-management practices should be adopted that will decrease the occurrence of reproductive problems such as may be the case with twinning.

Aims: The study was designed to estimate genetic parameters for twinning rate (TR) and to estimate genetic correlations between twinning rate and production and reproductive performances in the first lactation of Iranian Holstein cows.

Methods: The dataset used in this study was collected by the Animal Breeding Center of Iran during 1991–2013 and consisted of 273 742 records of calving type (singleton or twin), 435 742 records of 305-day milk yield, 424 175 records of milk fat percentage, 253 901 records of milk protein percentage, 251 558 records of first calving interval, and 153 632 records of number of days to first service. A single Gibbs sampling chain with 500 000 rounds was generated to run linear and threshold animal models.

Key results: Posterior mean estimates of heritabilities for traits were: TR 0.0028, milk yield 0.28, milk fat percentage 0.33, milk protein percentage 0.38, first calving interval 0.064, and days to first service 0.061. Genetic correlations between TR and performance traits were negligible and varied from –0.08 (between TR and milk yield) to 0.04 (between TR and protein percentage).

Conclusions: Diminishing TR by genetic selection is a slow task owing to its low heritability. Negligible genetic correlation between TR and performance traits suggests that selection for decreased TR would not cause a significant decrease in milk production, nor is it likely to have a negative impact on the reproductive performance of dairy cows.

Implications: Dairy cattle breeders should follow genetic selection programs, especially for milk-production traits, without concern for an increase in twinning rate.

Additional keywords: Bayesian methodology, categorical trait, genetic evaluation, twin birth, variance component estimation.


References

Andreu-Vázquez C, García-Ispierto I, Ganau S, Fricke PM, López-Gatius F (2012) Effects of twinning on the subsequent reproductive performance and productive lifespan of high-producing dairy cows. Theriogenology 78, 2061–2070.
Effects of twinning on the subsequent reproductive performance and productive lifespan of high-producing dairy cows.Crossref | GoogleScholarGoogle Scholar | 23043948PubMed |

Bell MJ, Roberts DJ (2007) Effect of twinning on the feed intake, performance and health of dairy cows. Livestock Science 107, 274–281.
Effect of twinning on the feed intake, performance and health of dairy cows.Crossref | GoogleScholarGoogle Scholar |

Berry SL, Ahmadi A, Thurmond MC (1994) Periparturient disease on large, dry lot dairies: interrelationships of lactation, dystocia, calf number, calf mortality, and calf sex. Journal of Dairy Science 77, 379.

Carneiro Júnior JM, Assis GML, Euclydes RF, Torres RA, Lopes PS (2007) Estimation of variance components using Bayesian and frequentist inferences considering simulated data under heterogeneity of variance. Revista Brasileira de Zootecnia 36, 1539–1548.

Chegini A, Shadparvar AA, Ghavi Hossein-Zadeh N (2013) Genetic trends for milk yield, persistency of milk yield, somatic cell count and calving interval in Holstein dairy cows of Iran. Iranian Journal of Applied Animal Science 3, 503–508.

Chegini A, Ghavi Hossein-Zadeh N, Hosseini-Moghaddam SH, Shadparvar AA (2019a) Genetic correlation estimates between milk production traits, mastitis and different measures of somatic cells in Holstein cows. Animal Production Science 59, 1031–1038.
Genetic correlation estimates between milk production traits, mastitis and different measures of somatic cells in Holstein cows.Crossref | GoogleScholarGoogle Scholar |

Chegini A, Ghavi Hossein-Zadeh N, Hosseini Moghaddam SH, Shadparvar AA (2019b) Genetic aspects of some reproductive, udder health and energy status traits in Holstein cows. Thriogenology 130, 1–7.
Genetic aspects of some reproductive, udder health and energy status traits in Holstein cows.Crossref | GoogleScholarGoogle Scholar |

Eaglen SAE, Coffey MP, Woolliams JA, Wall E (2013) Direct and maternal genetic relationships between calving ease, gestation length, milk production, fertility, type, and lifespan of Holstein-Friesian primiparous cows. Journal of Dairy Science 96, 4015–4025.
Direct and maternal genetic relationships between calving ease, gestation length, milk production, fertility, type, and lifespan of Holstein-Friesian primiparous cows.Crossref | GoogleScholarGoogle Scholar |

Echternkamp SE, Gregory KE (1999) Effects of twinning on postpartum reproductive performance in cattle selected for twin births. Journal of Animal Science 77, 48–60.
Effects of twinning on postpartum reproductive performance in cattle selected for twin births.Crossref | GoogleScholarGoogle Scholar | 10064027PubMed |

Echternkamp SE, Thallman RM, Cushman RA, Allan MF, Gregory KE (2007) Increased calf production in cattle selected for twin ovulations. Journal of Animal Science 85, 3239–3248.
Increased calf production in cattle selected for twin ovulations.Crossref | GoogleScholarGoogle Scholar | 17686895PubMed |

Eriksson S, Näsholm A, Johansson K, Philipsson J (2004) Genetic parameters for calving difficulty, stillbirth, and birth weight for Hereford and Charolais at first and later parities. Journal of Animal Science 82, 375–383.
Genetic parameters for calving difficulty, stillbirth, and birth weight for Hereford and Charolais at first and later parities.Crossref | GoogleScholarGoogle Scholar | 14974534PubMed |

Fricke PM (2001) Review: twinning in dairy cattle. The Professional Animal Scientist 17, 61–67.
Review: twinning in dairy cattle.Crossref | GoogleScholarGoogle Scholar |

Ghavi Hossein-Zadeh N (2010a) Evaluation of the effect of twin births on the perinatal calf mortality and productive performance of Holstein dairy cows. Archives of Animal Breeding 53, 256–265.
Evaluation of the effect of twin births on the perinatal calf mortality and productive performance of Holstein dairy cows.Crossref | GoogleScholarGoogle Scholar |

Ghavi Hossein-Zadeh N (2010b) The effect of twinning on milk yield, dystocia, calf birth weight and open days in Holstein dairy cows of Iran. Journal of Animal Physiology and Animal Nutrition 94, 780–787.
The effect of twinning on milk yield, dystocia, calf birth weight and open days in Holstein dairy cows of Iran.Crossref | GoogleScholarGoogle Scholar |

Ghavi Hossein-Zadeh N (2011a) Genetic parameters and trends for calving interval in the first three lactations of Iranian Holsteins. Tropical Animal Health and Production 43, 1111–1115.
Genetic parameters and trends for calving interval in the first three lactations of Iranian Holsteins.Crossref | GoogleScholarGoogle Scholar | 21360067PubMed |

Ghavi Hossein-Zadeh N (2011b) Genetic and phenotypic trends for age at first calving and milk yield and compositions in Holstein dairy cows. Archiv fur Tierzucht 54, 338–347.

Ghavi Hossein-Zadeh N (2013) Effects of main reproductive and health problems on the performance of dairy cows: a review. Spanish Journal of Agricultural Research 11, 718–735.
Effects of main reproductive and health problems on the performance of dairy cows: a review.Crossref | GoogleScholarGoogle Scholar |

Ghavi Hossein-Zadeh N (2014) Effect of dystocia on the productive performance and calf stillbirth in Iranian Holsteins. Journal of Agricultural Science and Technology 16, 69–78.

Ghavi Hossein-Zadeh N (2017) Estimates of genetic parameters and genetic trends for production and reproduction traits in Iranian buffaloes (Bubalus bubalis). Animal Production Science 57, 216–222.
Estimates of genetic parameters and genetic trends for production and reproduction traits in Iranian buffaloes (Bubalus bubalis).Crossref | GoogleScholarGoogle Scholar |

Ghavi Hossein-Zadeh N, Ardalan M (2011a) Estimation of genetic parameters for milk urea nitrogen and its relationship with milk constituents in Iranian Holsteins. Livestock Science 135, 274–281.
Estimation of genetic parameters for milk urea nitrogen and its relationship with milk constituents in Iranian Holsteins.Crossref | GoogleScholarGoogle Scholar |

Ghavi Hossein-Zadeh N, Ardalan M (2011b) Genetic relationship between milk urea nitrogen and reproductive performance in Holstein dairy cows. Animal 5, 26–32.
Genetic relationship between milk urea nitrogen and reproductive performance in Holstein dairy cows.Crossref | GoogleScholarGoogle Scholar | 22440698PubMed |

Ghavi Hossein-Zadeh N, Nejati-Javaremi A, Miraei-Ashtiani SR, Kohram H (2008) An observational analysis of twin births, calf stillbirth, calf sex ratio, and abortion in Iranian Holsteins. Journal of Dairy Science 91, 4198–4205.
An observational analysis of twin births, calf stillbirth, calf sex ratio, and abortion in Iranian Holsteins.Crossref | GoogleScholarGoogle Scholar |

Ghavi Hossein-Zadeh N, Nejati-Javaremi A, Miraei-Ashtiani SR, Kohram H (2009) Estimation of variance components and genetic trends for twinning rate in Holstein dairy cattle of Iran. Journal of Dairy Science 92, 3411–3421.
Estimation of variance components and genetic trends for twinning rate in Holstein dairy cattle of Iran.Crossref | GoogleScholarGoogle Scholar | 19528619PubMed |

Ghavi Hossein-Zadeh N, Salimi MH, Shadparvar AA (2018) Bayesian estimates of genetic relationship between calving difficulty and productive and reproductive performance in Holstein cows. Animal Production Science 58, 785–790.
Bayesian estimates of genetic relationship between calving difficulty and productive and reproductive performance in Holstein cows.Crossref | GoogleScholarGoogle Scholar |

González-Recio O, Alenda R (2005) Genetic parameters for female fertility traits and a fertility index in Spanish dairy cattle. Journal of Dairy Science 88, 3282–3289.
Genetic parameters for female fertility traits and a fertility index in Spanish dairy cattle.Crossref | GoogleScholarGoogle Scholar | 16107418PubMed |

Gregory KE, Echternkamp SE, Dickerson GE, Koch RM, Van Vleck LD (1990) Twinning in cattle I: Foundation animals and genetic and environmental effects on twinning rate. Journal of Animal Science 68, 1867–1876.
Twinning in cattle I: Foundation animals and genetic and environmental effects on twinning rate.Crossref | GoogleScholarGoogle Scholar | 2384380PubMed |

Hosmer D, Lemeshow S (2000) ‘Applied logistic regression.’ 2nd edn (Wiley-Interscience, John Wiley & Sons, New York)

Jamrozik J, Fatehi J, Kistemaker GJ, Schaeffer LR (2005) Estimates of genetic parameters for Canadian Holstein female reproduction traits. Journal of Dairy Science 88, 2199–2208.
Estimates of genetic parameters for Canadian Holstein female reproduction traits.Crossref | GoogleScholarGoogle Scholar | 15905449PubMed |

Johanson JM, Berger PJ, Kirkpatrick BW, Dentine MR (2001) Twinning rates for North American Holstein sires. Journal of Dairy Science 84, 2081–2088.
Twinning rates for North American Holstein sires.Crossref | GoogleScholarGoogle Scholar | 11573789PubMed |

Kadarmideen HN, Thompson R, Coffey MP, Kossaibati MA (2003) Genetic parameters and evaluations from single- and multiple- trait analysis of dairy cow fertility and milk production. Livestock Production Science 81, 183–195.

Karlsen A, Ruane J, Klemetsdal G, Heringstad B (2000) Twinning rate in Norwegian cattle: frequency, (co)variance components, and genetic trends. Journal of Animal Science 78, 15–20.
Twinning rate in Norwegian cattle: frequency, (co)variance components, and genetic trends.Crossref | GoogleScholarGoogle Scholar | 10682797PubMed |

Khorshidie R, Shadparvar AA, Ghavi Hossein-Zadeh N, Joezy Shakalgurabi S (2012) Genetic trends for 305-day milk yield and persistency in Iranian Holsteins. Livestock Science 144, 211–217.
Genetic trends for 305-day milk yield and persistency in Iranian Holsteins.Crossref | GoogleScholarGoogle Scholar |

Kirkpatrick BW (2002) Management of twinning cow herds. Journal of Animal Science 80, E14–E18.
Management of twinning cow herds.Crossref | GoogleScholarGoogle Scholar |

López de Maturana E, Legarra A, Varona L, Ugarte E (2007) Analysis of fertility and dystocia using recursive models to handle censored and categorical data. Journal of Dairy Science 90, 2012–2024.
Analysis of fertility and dystocia using recursive models to handle censored and categorical data.Crossref | GoogleScholarGoogle Scholar | 17369243PubMed |

López-Gatius F, Hunter RHF (2005) Spontaneous reduction of advanced twin embryos: its occurrence and clinical relevance in dairy cattle. Theriogenology 63, 118–125.
Spontaneous reduction of advanced twin embryos: its occurrence and clinical relevance in dairy cattle.Crossref | GoogleScholarGoogle Scholar | 15589278PubMed |

López-Gatius F, Santolaria P, Yániz J, Rutllant J, López-Béjar M (2002) Factors affecting pregnancy loss from gestation day 38 to 90 in lactating dairy cows from a single herd. Theriogenology 57, 1251–1261.
Factors affecting pregnancy loss from gestation day 38 to 90 in lactating dairy cows from a single herd.Crossref | GoogleScholarGoogle Scholar | 12013445PubMed |

Maijala K, Osva A (1990) Genetic correlations of twinning frequency with other economic traits in dairy cattle. Journal of Animal Breeding and Genetics 107, 7–15.
Genetic correlations of twinning frequency with other economic traits in dairy cattle.Crossref | GoogleScholarGoogle Scholar |

Mark T (2004) Applied genetic evaluations for production and functional traits in dairy cattle. Journal of Dairy Science 87, 2641–2652.
Applied genetic evaluations for production and functional traits in dairy cattle.Crossref | GoogleScholarGoogle Scholar | 15328289PubMed |

Masuda Y, Baba T, Suzuki M (2015) Genetic analysis of twinning rate and milk yield using a threshold-linear model in Japanese Holsteins. Animal Science Journal 86, 31–36.
Genetic analysis of twinning rate and milk yield using a threshold-linear model in Japanese Holsteins.Crossref | GoogleScholarGoogle Scholar | 25041416PubMed |

Mendes Malhado CHM, Malhado ACM, de Amorim Ramos A, Carneiro PLS, Siewerdt F, Pala A (2012) Genetic parameters by Bayesian inference for dual purpose Jaffarabadi buffaloes. Archives of Animal Breeding 55, 567–576.
Genetic parameters by Bayesian inference for dual purpose Jaffarabadi buffaloes.Crossref | GoogleScholarGoogle Scholar |

Mitchell RG, Rogers GW, Dechow CD, Vallimont JE, Cooper JB, Sander-Nielsen U, Clay JS (2005) Milk urea nitrogen concentration: heritability and genetic correlations with reproductive performance and disease. Journal of Dairy Science 88, 4434–4440.

Moioli B, Steri R, Marchitelli C, Catillo G, Buttazzoni L (2017) Genetic parameters and genome-wide associations of twinning rate in a local breed, the Maremmana cattle. Animal 11, 1660–1666.
Genetic parameters and genome-wide associations of twinning rate in a local breed, the Maremmana cattle.Crossref | GoogleScholarGoogle Scholar | 28219476PubMed |

Nixon M, Bohmanova J, Jamrozik J, Schaeffer LR, Hand K, Miglior F (2009) Genetic parameters of milking frequency and milk production traits in Canadian Holsteins milked by an automated milking system. Journal of Dairy Science 92, 3422–3430.
Genetic parameters of milking frequency and milk production traits in Canadian Holsteins milked by an automated milking system.Crossref | GoogleScholarGoogle Scholar | 19528620PubMed |

Philipsson J (1981) Genetic aspects of female fertility in dairy cattle. Livestock Production Science 8, 307–319.
Genetic aspects of female fertility in dairy cattle.Crossref | GoogleScholarGoogle Scholar |

Silva del Río N, Stewart S, Rapnicki P, Chang YM, Fricke PM (2007) An observational analysis of twin births, calf sex ratio, and calf mortality in Holstein dairy cattle. Journal of Dairy Science 90, 1255–1264.
An observational analysis of twin births, calf sex ratio, and calf mortality in Holstein dairy cattle.Crossref | GoogleScholarGoogle Scholar | 17297102PubMed |

Stoop WM, Bovenhuis H, Van Arendonk JAM (2007) Genetic parameters for milk urea nitrogen in relation to milk production traits. Journal of Dairy Science 90, 1981–1986.
Genetic parameters for milk urea nitrogen in relation to milk production traits.Crossref | GoogleScholarGoogle Scholar | 17369239PubMed |

Vergara OD, Elzo MA, Cerón-Muñoz MF (2009) Genetic parameters and genetic trends for age at first calving and calving interval in an Angus-Blanco Orejinegro-Zebu multibreed cattle population in Colombia. Livestock Science 126, 318–322.
Genetic parameters and genetic trends for age at first calving and calving interval in an Angus-Blanco Orejinegro-Zebu multibreed cattle population in Colombia.Crossref | GoogleScholarGoogle Scholar |

Wall E, Brotherstone S, Woolliams JA, Banos G, Coffey MP (2003) Genetic evaluation of fertility using direct and correlated traits. Journal of Dairy Science 86, 4093–4102.
Genetic evaluation of fertility using direct and correlated traits.Crossref | GoogleScholarGoogle Scholar | 14740850PubMed |

Wasike CB, Indetie D, Ojango JMK, Kahi AK (2009) Direct and maternal (co)variance components and genetic parameters for growth and reproductive traits in the Boran cattle in Kenya. Tropical Animal Health and Production 41, 741–748.
Direct and maternal (co)variance components and genetic parameters for growth and reproductive traits in the Boran cattle in Kenya.Crossref | GoogleScholarGoogle Scholar | 18958578PubMed |