Genotype-by-Environment Interaction with Broiler Genotypes Differing in Growth Rate. 3. Growth Rate and Water Consumption of Broiler Progeny from Weight-Selected Versus Nonselected Parents Under Normal and High Ambient Temperatures

Взаимодействие генотип–среда у бройлеров с различной скоростью роста. 3. Скорость роста и потребление воды у потомства бройлеров от родителей, отбираемых по массе, и неотобранных родителей при нормальной и высокой температуре окружающей среды
N. Deeb, A. Cahaner
2002-03-01

broiler growth rate selectiongenotype-by-environment interactionhigh ambient temperature (HAT)normal ambient temperature (NAT)water-to-feed ratio
One cycle of high-intensity selection on BW was conducted to study correlated effects on performance under high ambient temperature (AT). From a large flock of a commercial sire-line, 3 males and 15 females with the highest BW at 35 d of age were mated and produced a group of 120 BW-selected chicks. Three average-BW males and 15 average-BW females from the same flock were mated to produce a control group of 120 chicks. On Day 17, the two groups were equally divided between two temperature-controlled chambers and housed in individual cages. One chamber was set to a normal AT (NAT; constant 22 C) and the second chamber to high AT (HAT; constant 32 C). Under NAT, the relative advantage of the selected broilers over the controls did not change from 17 to 42 d of age, averaging about 15% for BW gain and 9.7% for feed consumption. These differences were halved under HAT from Days 17 to 28 and were reversed from 28 to 42 d of age, when the selected broilers consumed significantly less feed and gained less BW than the controls. Water-to-feed ratio was measured in each AT treatment. From 28 to 42 d of age, averaged over the two groups, birds under HAT consumed 2.5 g water/g of feed compared to only 1.5 g water/g feed under NAT. The diminished superiority of the selected broilers under HAT led to a substantial genotype-by-environment interaction involving high AT and within-stock genetic differences in growth rate. It appears that broilers selected for rapid growth under optimal conditions do not achieve their genetic potential under high AT. Thus, specific indicators of adaptation to heat, possibly water consumption or body temperature, should be added to commercial selection for rapid growth to improve broiler performance in hot climates.
1
A substantial genotype-by-environment interaction exists: broilers selected for rapid growth under optimal conditions do not realize their genetic potential under high ambient temperature.
2
Birds under high ambient temperature (32°C) consumed more water: 2.5 g water per g feed (28–42 d) versus 1.5 g/g under normal temperature (22°C).
3
One cycle of high-intensity selection for 35-day body weight produced broilers with ~15% greater BW gain and 9.7% greater feed consumption than controls under normal ambient temperature (22°C).
4
Recommendation: commercial selection for rapid growth should include specific heat-adaptation indicators (e.g., water consumption or body temperature) to improve performance in hot climates.
5
Under high ambient temperature (32°C), the selected broilers' growth and feed advantages were halved from Days 17–28 and reversed from Days 28–42, with selected birds consuming significantly less feed and gaining less BW than controls.

Broiler progeny from weight-selected versus nonselected parents reared under normal and high ambient temperatures

Effects of parental weight-selection and ambient temperature (normal vs high) on growth rate, feed and water consumption, and genotype-by-environment interaction in broiler performance

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2002-03-01
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N. Deeb
A. Cahaner
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