Khejornsart Pichad, Meenongyai Watcharawit, Juntanam Theerayut
Faculty of Natural Resources and Agro-Industry, Kasetsart University, Sakon Nakhon, Thailand.
J Adv Vet Anim Res. 2022 Dec 31;9(4):754-760. doi: 10.5455/javar.2022.i645. eCollection 2022 Dec.
The price of animal production will be affected by the significant increase in feed costs. The objective of this research was to investigate the impact of adding waste cassava pulp to fermented total mixed ration (FTMR) on nutrient utilization, rumen ecology, and microbial protein synthesis in tropical sheep.
A 3 × 3 replicated Latin square design was used to randomly arrange nine crossbreed lambs (Santa Inês × Dorper) with an initial body weight (BW) of 18.7 ± 1.6 kg (mean ± SD). During a 21-day trial, the animal was offered a random selection of concentrate diets and rice straw (control), total mixed ration (TMR), or FTMR. During the investigation, data on nutrition utilization, rumen ecology, and microbial protein synthesis were analyzed using analysis of variance.
The finding shows that FTMR had significantly higher dry matter (DM) intake and DM intake per BW than either TMR or control ( < 0.05). Lamb fed on FTMR had significantly higher DM, organic matter protein, crude protein, and neutral detergent fiber digestion than those on control or TMR ( < 0.05). Rumen pH values for all treatments ranged from 6.68 to 6.73, with no significant differences. Growing lambs fed FTMR had greater rumen total volatile fatty acid and propionic acid concentrations than those given TMR and the control ( < 0.05). Protozoa were not different across the FTMR groups, although total bacterial and fungal zoospores were increased. In addition, when lambs were fed FTMR containing cassava pulp, ruminal microbial protein synthesis was significantly increased.
It could indicate that feeding growing lambs with FTMR could improve nutrient utilization, ruminal fermentation, and microbial protein synthesis. However, studies on the effects of FTMR on sheep performance, meat quality, and milk quality are necessary.
饲料成本的大幅上涨将影响动物生产的价格。本研究的目的是调查在发酵全混合日粮(FTMR)中添加木薯渣对热带地区绵羊营养物质利用、瘤胃生态和微生物蛋白合成的影响。
采用3×3重复拉丁方设计,将9只初始体重(BW)为18.7±1.6 kg(均值±标准差)的杂交羔羊(圣伊内斯×杜泊)随机分组。在为期21天的试验中,给动物随机提供精料日粮和稻草(对照组)、全混合日粮(TMR)或FTMR。在调查期间,使用方差分析对营养物质利用、瘤胃生态和微生物蛋白合成的数据进行分析。
结果表明,FTMR的干物质(DM)摄入量和每体重干物质摄入量显著高于TMR或对照组(P<0.05)。以FTMR喂养的羔羊的干物质、有机物、蛋白质、粗蛋白和中性洗涤纤维消化率显著高于对照组或TMR组(P<0.05)。所有处理的瘤胃pH值在6.68至6.73之间,无显著差异。以FTMR喂养的生长羔羊的瘤胃总挥发性脂肪酸和丙酸浓度高于TMR组和对照组(P<0.05)。FTMR组间原生动物无差异,尽管总细菌和真菌游动孢子增加。此外,当给羔羊饲喂含有木薯渣的FTMR时,瘤胃微生物蛋白合成显著增加。
这可能表明用FTMR喂养生长羔羊可以提高营养物质利用、瘤胃发酵和微生物蛋白合成。然而,有必要对FTMR对绵羊生产性能、肉质和乳品质的影响进行研究。