Logo image
Merino ewes can be bred for body weight change to be more tolerant to uncertain feed supply
Journal article   Open access   Peer reviewed

Merino ewes can be bred for body weight change to be more tolerant to uncertain feed supply

G. Rose, A. Kause, H.A. Mulder, J.H.J. van der Werf, A.N. Thompson, M.B. Ferguson and J.A.M. van Arendonk
Journal of Animal Science, Vol.91(6), pp.2555-2565
2013
pdf
ewe_body_weight_change_and_uncertain_feed_supply.pdfDownloadView
Published (Version of Record) Open Access
url
Link to Published Version *Subscription may be requiredView

Abstract

Sheep in Australia experience periods with different feed supply causing them to gain and lose BW during the year. It is more efficient if ewes lose less BW during periods of poor nutrition and gain more BW during periods of good nutrition. We investigated whether BW loss during periods of poor nutrition and BW gain during periods of good nutrition are genetically different traits. We used BW measurements from 2,336 adult Merino ewes managed over 5 yr in a Mediterranean climate in Katanning, Australia. Body weight loss is the difference between 2 BW measured 42 d apart during mating, a period of poor nutrition. Body weight gain is the difference between 2 BW measured 131 d apart during a period of good nutrition between prelambing and weaning. We estimated variance compnents of BW change using 3 methods: 1) as a trait calculated by subtracting the first BW from the second, 2) multivariate analysis of BW traits, and 3) random regression analysis of BW. The h(2) and genetic correlations (r(g)) estimated using the multivariate analysis of BW and the BW change trait were very similar whereas the random regression analysis estimated lower heritabilities and more extreme negative genetic correlations between BW loss and gain. The multivariate model fitted the data better than random regression based on Akaike and Bayesian information criterion so we considered the results of the multivariate model to be more reliable. The heritability of BW loss (h(2) = 0.05-0.16) was smaller than that of BW gain (h(2) = 0.14-0.37). Body weight loss and gain can be bred for independently at 2 and 4 yr of age (r(g) = 0.03 and -0.04) whereas at 3 yr of age ewes that genetically lost more BW gained more BW (r(g) = -0.41). Body weight loss is genetically not the same trait at different ages (r(g) range 0.13-0.39). Body weight gain at age 3 yr is genetically the same trait at age 4 yr (r(g) = 0.99) but is different between age 2 yr and the older ages (r(g) = 0.53 and 0.51). These results suggest that as the ewes reach their mature BW, BW gain at different ages becomes the same trait. This does not apply to BW loss. We conclude that BW change could be included in breeding programs to breed adult Merino ewes that are more tolerant to variation in feed supply.

Details

UN Sustainable Development Goals (SDGs)

This output has contributed to the advancement of the following goals:

#3 Good Health and Well-Being

Source: InCites

Metrics

251 File views/ downloads
128 Record Views

InCites Highlights

These are selected metrics from InCites Benchmarking & Analytics tool, related to this output

Collaboration types
Domestic collaboration
International collaboration
Citation topics
3 Agriculture, Environment & Ecology
3.51 Dairy & Animal Sciences
3.51.115 Livestock Reproduction
Web Of Science research areas
Agriculture, Dairy & Animal Science
ESI research areas
Plant & Animal Science
Logo image