Potential of feeding microwave-treated forage hays to improve sheep intake, digestion, nitrogen partitioning, and metabolism

IF 2.5 2区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE Animal Feed Science and Technology Pub Date : 2024-05-30 DOI:10.1016/j.anifeedsci.2024.116008
Md Safiqur Rahaman Shishir , Brendan Cullen , Graham Brodie , Rongzhen Zhong , Long Cheng
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Abstract

Microwave (MW) treatment has been suggested to improve forage hays' nutritive value and sheep growth performance. However, the extent to which the MW-treated forage hay affects apparent digestibility and nitrogen partitioning is not documented. This study examined the potential to use the MW as a novel thermal treatment to improve forage hay intake, digestibility, and nitrogen utilisation of sheep. A total of 24 merino rams (18 months of age, 42 ± 2.0 kg initial body weight) were randomly divided into four dietary treatments: Control lucerne hay (CLH), MW-treated lucerne hay (MLH), Control wheat hay (CWH), and MW-treated wheat hay (MWH). The study had 14 days adaption and 7 7-day sample collection period, with 6 sheep replicates/treatment. Feed, faeces, urine, and blood plasma samples were collected. Higher dry matter (DM) intake was observed in MLH vs. CLH (P < 0.001). The DM and organic matter digestibility both increased by 8 % in MLH compared to CLH (P <0.001). The digestibility of neutral detergent fibre (NDF), acid detergent fibre (ADF), and nitrogen increased by 12 %, 9 %, and 10 %, respectively in MLH compared to CLH (P < 0.001). The MLH-feed sheep showed higher nitrogen retention (P = 0.037) and microbial nitrogen synthesis (P = 0.047) compared to CLH-fed sheep. A limited effect was observed in CWH vs. MWH, with only ADF digestibility (P = 0.023) and plasma glucose (P < 0.05) being higher in sheep fed with MWH. Electron microscope images showed clear cell microstructure destruction (P <0.001) due to MW treatment in lucerne hay but there was no difference observed in wheat hay. The result provided first-hand comprehensive data to quantify MW treatment's effect on hay quality and sheep performance, with potential mechanisms explained underpinning the observed changes.

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饲喂经微波处理的牧草改善绵羊摄入量、消化、氮分配和新陈代谢的潜力
微波(MW)处理被认为可以提高干草的营养价值和绵羊的生长性能。然而,经微波处理的饲草干草对表观消化率和氮分配的影响程度尚无文献记载。本研究探讨了使用新型热处理方法--水处理法来提高绵羊对干草的摄入量、消化率和氮利用率的潜力。总共 24 只美利奴公羊(18 月龄,初始体重为 42 ± 2.0 千克)被随机分为四种日粮处理:对照组苜蓿干草(CLH)、MW 处理组苜蓿干草(MLH)、对照组小麦干草(CWH)和 MW 处理组小麦干草(MWH)。研究的适应期为 14 天,样本采集期为 7 个 7 天,每种处理有 6 只绵羊重复。收集饲料、粪便、尿液和血浆样本。观察发现,MLH 与 CLH 相比,干物质(DM)摄入量更高(P < 0.001)。与CLH相比,MLH的DM和有机物消化率均提高了8%(P <0.001)。与CLH相比,MLH的中性洗涤纤维(NDF)、酸性洗涤纤维(ADF)和氮的消化率分别提高了12%、9%和10%(P <0.001)。与 CLH 饲喂的绵羊相比,MLH 饲喂的绵羊表现出更高的氮保留率(P = 0.037)和微生物氮合成率(P = 0.047)。CWH 对 MWH 的影响有限,只有 ADF 消化率(P = 0.023)和血浆葡萄糖(P < 0.05)高于 MWH 饲喂的绵羊。电子显微镜图像显示,在苜蓿干草中,MW 处理明显破坏了细胞的微观结构(P <0.001),但在小麦干草中没有观察到差异。该结果提供了第一手全面数据,量化了MW处理对干草质量和绵羊生产性能的影响,并解释了观察到的变化的潜在机制。
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来源期刊
Animal Feed Science and Technology
Animal Feed Science and Technology 农林科学-奶制品与动物科学
CiteScore
6.00
自引率
6.20%
发文量
266
审稿时长
3 months
期刊介绍: Animal Feed Science and Technology is a unique journal publishing scientific papers of international interest focusing on animal feeds and their feeding. Papers describing research on feed for ruminants and non-ruminants, including poultry, horses, companion animals and aquatic animals, are welcome. The journal covers the following areas: Nutritive value of feeds (e.g., assessment, improvement) Methods of conserving and processing feeds that affect their nutritional value Agronomic and climatic factors influencing the nutritive value of feeds Utilization of feeds and the improvement of such Metabolic, production, reproduction and health responses, as well as potential environmental impacts, of diet inputs and feed technologies (e.g., feeds, feed additives, feed components, mycotoxins) Mathematical models relating directly to animal-feed interactions Analytical and experimental methods for feed evaluation Environmental impacts of feed technologies in animal production.
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