首页> 外文期刊>Journal of Animal Science >Genetic parameters of methane emissions determined using portable accumulation chambers in lambs and ewes grazing pasture and genetic correlations with emissions determined in respiration chambers
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Genetic parameters of methane emissions determined using portable accumulation chambers in lambs and ewes grazing pasture and genetic correlations with emissions determined in respiration chambers

机译:利用羊羔和母羊在呼吸室中采用羊羔和母羊放牧牧场和遗传相关性测定的甲烷排放的遗传参数

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Methane (CH4) emission traits were previously found to be heritable and repeatable in sheep fed alfalfa pellets in respiration chambers (RC). More rapid screening methods are, however, required to increase genetic progress and to provide a cost-effective method to the farming industry for maintaining the generation of breeding values in the future. The objective of the current study was to determine CH4 and carbon dioxide (CO2) emissions using several 1-h portable accumulation chamber (PAC) measurements from lambs and again as ewes while grazing ryegrass-based pasture. Many animals with PAC measurements were also measured in RC while fed alfalfa pellets at 2.0 x maintenance metabolizable energy requirements (MEm). Heritability estimates from mixed models for CH4 and CO2 production (g/d) were 0.19 and 0.16, respectively, when measured using PAC with lambs; 0.20 and 0.27, respectively, when measured using PAC with ewes; and 0.23 and 0.34, respectively, when measured using RC with lambs. For measured gas traits, repeatabilities of measurements collected 14 d apart ranged from 0.33 to 0.55 for PAC (combined lambs and ewes) and were greater at 0.65 to 0.76 for the same traits measured using RC. Genetic correlations (r(g)) between PAC in lambs and ewes were 0.99 for CH4, 0.93 for CH4 + CO2, and 0.85 for CH4 /(CH4 + CO2), suggesting that CH4 emissions in lambs and ewes are the same trait. Genetic correlations between PAC and RC measurements were lower, at 0.62 to 0.67 for CH4 and 0.41 to 0.42 for CH4 + CO2, likely reflecting different environmental conditions associated with the protocols used with the 2 measurement methods. The CH4 / (CH4 + CO2) ratio was the most similar genetic trait measured using PAC (both lambs and ewes, 63% and 66% selection efficiency, respectively) compared with CH4 yield (g/kg DMI) measured using RC. These results suggest that PAC measurements have considerable value as a rapid low-cost method to estimate breeding values for CH4 emissions in sheep.
机译:以前发现甲烷(CH 4)发射性状可遗传性和可重复在呼吸室(RC)中的绵羊喂养苜蓿颗粒。然而,需要更快的快速筛选方法来增加遗传进展,并为养殖业提供成本效益的方法,以维持未来的育种价值。目前研究的目的是使用羔羊的几个1-H便携式累积室(PAC)测量来确定CH4和二氧化碳(CO2)排放,并在饲养基于黑麦草的牧场的同时再次作为EWES。在RC中还测量了许多具有PAC测量的动物,同时在2.0 x维持可代谢能量要求(MEM)时喂养Alfalfa颗粒。使用PAC与羊羔测量时,CH4和CO2产生的混合模型(G / D)的遗传性分别为0.19和0.16;在使用PAC与母羊测量时,分别为0.20和0.27;使用RC与羊羔测量时,分别为0.23和0.34。对于测量的气体特征,收集的测量的重组14d分开为PAC(组合羔羊和母羊)的0.33-0.55,并且对于使用Rc测量的相同的性状,较大0.65至0.76。对于CH4 + CO 2的CH4,0.93的PAC之间的PAC之间的遗传相关(R(g))为0.99,对于CH 4 /(CH 4 + CO2),0.85,表明羊羔和母羊的CH 4排放是相同的特征。对于CH 4 + CO 2,PAC和RC测量之间的遗传相关性低于0.62至0.67至0.41-0.42,可能反映与2个测量方法的方案相关的不同环境条件。 CH4 /(CH4 + CO2)的比例是使用RC测量的CH 4产率(G / kg DMI)比较的PAC(分别为63%和66%的选择效率)测量的最相似的遗传性状。这些结果表明,PAC测量与快速低成本的方法具有相当大的价值,以估算绵羊CH4排放的育种值。

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