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Enteric methane emissions and nitrogen utilisation efficiency for two genotype of hill hoggets offered fresh, ensiled and pelleted ryegrass

机译:两种基因型山楂的肠甲烷排放和氮利用效率,分别为新鲜的,青贮的和粒状的黑麦草

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摘要

Thirty-six 12-month-old hill hoggets were used in a 2 genotype (18 Scottish Blackface vs. 18 Swaledale×Scottish Blackface)×3 diet (fresh vs. ensiled vs. pelleted ryegrass) factorial design experiment to evaluate the effects of hogget genotype and forage type on enteric methane (CH4) emissions and nitrogen (N) utilisation. The hoggets were offered 3 diets ad libitum with no concentrate supplementation in a single period study with 6 hoggets for each of the 6 genotype×diet combinations (n=6). Fresh ryegrass was harvested daily in the morning. Pelleted ryegrass was sourced from a commercial supplier (Aylescott Driers & Feeds, Burrington, UK) and the ryegrass silage was ensiled with Ecosyl (Lactobacillus plantarum, Volac International Limited, Hertfordshire, UK) as an additive. The hoggets were housed in individual pens for at least 14 d before being transferred to individual respiration chambers for a further 4 d with feed intake, faeces and urine outputs and CH4 emissions measured. There was no significant interaction between genotype and forage type on any parameter evaluated. Sheep offered pelleted grass had greater feed intake (e.g. DM, energy and N) but less energy and nutrient apparent digestibility (e.g. DM, N and neutral detergent fibre (NDF)) than those given fresh grass or grass silage (P<0.001). Feeding pelleted grass, rather than fresh grass or grass silage, reduced enteric CH4 emissions as a proportion of DM intake and gross energy (GE) intake (P<0.01). Sheep offered fresh grass had a significantly lower acid detergent fibre (ADF) apparent digestibility, and CH4 energy output (CH4-E) as a proportion of GE intake than those offered grass silage (P<0.001). There was no significant difference, in CH4 emission rate or N utilisation efficiency when compared between Scottish Blackface and Swaledale × Scottish Blackface. Linear and multiple regression techniques were used to develop relationships between CH4 emissions or N excretion and dietary and animal variables using data from sheep offered fresh ryegrass and grass silage. The equation relating CH4-E (MJ/d) to GE intake (GEI, MJ/d), energy apparent digestibility (DE/GE) and metabolisability (ME/GE) resulted in a high r2 (CH4-E=0.074 GEI+9.2 DE/GE−10.2 ME/GE−0.37, r2=0.93). N intake (NI) was the best predictor for manure N excretion (Manure N=0.66 NI+0.96, r2=0.85). The use of these relationships can potentially improve the precision and decrease the uncertainty in predicting CH4 emissions and N excretion for sheep production systems managed under the current feeding conditions.
机译:使用32个12个月大的小山猪进行2种基因型(18苏格兰黑脸vs 18 Swaledale×苏格兰黑脸)×3饮食(新鲜vs.青贮vs.粒状黑麦草)析因设计实验,以评估猪的效果肠甲烷(CH4)排放和氮(N)利用的基因型和饲料类型。在一个单一时期的研究中,为这些猪提供3种饮食,不加任何补充饲料,其中6种基因型x饮食组合中的每一种均具有6个猪(n = 6)。每天早晨收获新鲜的黑麦草。粒状黑麦草购自一家商业供应商(英国伯灵顿的Aylescott Driers&Feeds),黑麦草青贮饲料中掺有Ecosyl(植物乳杆菌,英国赫特福德郡Volac International Limited的植物乳杆菌)。将这些猪圈养在单独的围栏中至少14 d,然后再转移到单独的呼吸室再呆4 d,并测量饲料的摄入量,粪便和尿液的排出量以及CH4的排放量。在评估的任何参数上,基因型和饲草类型之间没有显着的相互作用。与饲喂新鲜草或青贮青贮饲料的绵羊相比,提供颗粒状草的绵羊具有更高的采食量(例如DM,能量和氮),但能量和营养表观消化率(例如DM,N和中性清洁剂纤维(NDF))却较少(P <0.001)。饲喂颗粒状草,而不是新鲜草或青贮饲料,可以减少肠内CH4排放,其占DM摄入量和总能量(GE)摄入量的比例(P <0.01)。提供鲜草的绵羊的酸性消化纤维(ADF)的表观消化率明显降低,并且以GE摄入量的比例计,CH4能量输出(CH4-E)占提供的草青贮饲料的比例(P <0.001)。苏格兰黑脸与Swaledale×苏格兰黑脸相比,CH4排放速率或氮利用效率没有显着差异。利用来自绵羊提供的新鲜黑麦草和青贮饲料的数据,使用线性和多元回归技术来建立CH4排放或N排泄与饮食和动物变量之间的关系。 CH4-E(MJ / d)与GE摄入量(GEI,MJ / d),能量表观消化率(DE / GE)和代谢能力(ME / GE)相关的方程导致较高的r2(CH4-E = 0.074 GEI + 9.2 DE / GE-10.2 ME / GE-0.37,r2 = 0.93)。氮摄入量(NI)是粪便氮排泄的最佳预测指标(Manure N = 0.66 NI + 0.96,r2 = 0.85)。这些关系的使用可以潜在地提高精度,并减少在当前饲养条件下管理的绵羊生产系统预测CH4排放和氮排泄的不确定性。

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