Li Jinlong, Xu Congbin, He Linjiao, Tuo Yong, Yang Yuxia, Ma Yan, Guo Tongjun
Feed Research Institute of Xinjiang Academy of Animal Husbandry Sciences, Urumqi, China.
Xinjiang Key Laboratory of Herbivorous Livestock Feed Biotechnology, Urumqi, China.
Front Microbiol. 2025 Apr 29;16:1585992. doi: 10.3389/fmicb.2025.1585992. eCollection 2025.
Chili straw is a crop residue that can be used as an unconventional feed additive in animal production, exhibiting potential value in improving animal health. This study investigated the effects of dietary chili straw on growth performance, rumen fungal community composition, and metabolic function in sheep. Thirty finishing sheep (3-4 months old) with similar body weights were randomly divided into three groups ( = 10) and fed diets containing 0, 10, and 20% capsicum straw (CS) for 63 days, including a 7-day adaptation period. At the end of the trial, body weights were recorded, and rumen fluid samples were collected to assess growth performance, fungal diversity, and functional profiles. Dry matter intake (DMI) significantly increased in the 10% CS group ( < 0.01), which was 9.71% higher than that of CON group, while DMI and final body weight of 20% CS group ( < 0.01 or < 0.05) decreased by 6.81 and 8.81%, respectively, compared with CON group. Final body weight and average daily gain (ADG) showed an upward trend in the 10% CS group ( > 0.05), while ADG displayed a downward trend in the 20% CS group ( > 0.05). The ACE and Chao1 indices were significantly elevated in the 20% CS group ( < 0.05). Principal coordinate analysis (PCoA) and non-metric multidimensional scaling analysis (NMDS) showed that compared with the control (CON) group, the representative points of the 20% CS group gathered more closely. Relative abundances of Ascomycota and Cladosporium increased, whereas Basidiomycota and Kazachstania decreased in CS-supplemented groups ( > 0.05). FUNGuild functional prediction indicated increased relative abundances of symbiotrophic and pathotrophic fungi and decreased saprotrophic fungi in CS groups ( > 0.05). The gross profit and net profit of the CS10% group were significantly higher than those of the other groups, which were 15.16 and 24.44% higher than those of the control group, respectively. Thus, adding 10% CS to sheep feed can improve the composition of rumen fungi and growth performance, thereby increasing profitability in sheep production.
辣椒秸秆是一种作物残渣,可作为非常规饲料添加剂用于动物生产,在改善动物健康方面具有潜在价值。本研究调查了日粮中添加辣椒秸秆对绵羊生长性能、瘤胃真菌群落组成和代谢功能的影响。将30只体重相近的育肥绵羊(3 - 4月龄)随机分为三组(每组n = 10),分别饲喂含0%、10%和20%辣椒秸秆(CS)的日粮63天,包括7天的适应期。试验结束时,记录体重,并采集瘤胃液样本以评估生长性能、真菌多样性和功能特征。10% CS组的干物质采食量(DMI)显著增加(P < 0.01),比对照组高9.71%,而20% CS组的DMI和末体重(P < 0.01或P < 0.05)分别比对照组降低了6.81%和8.81%。10% CS组的末体重和平均日增重(ADG)呈上升趋势(P > 0.05),而20% CS组的ADG呈下降趋势(P > 0.05)。20% CS组的ACE和Chao1指数显著升高(P < 0.05)。主坐标分析(PCoA)和非度量多维尺度分析(NMDS)表明,与对照组(CON)相比,20% CS组的代表点聚集更紧密。在添加CS的组中,子囊菌门和枝孢属的相对丰度增加,而担子菌门和卡氏酵母属的相对丰度降低(P > 0.05)。FUNGuild功能预测表明,CS组中兼性营养型和致病型真菌的相对丰度增加,腐生型真菌的相对丰度降低(P > 0.05)。CS10%组的毛利润和净利润显著高于其他组,分别比对照组高15.16%和24.44%。因此,在绵羊饲料中添加10%的CS可以改善瘤胃真菌组成和生长性能,从而提高绵羊生产的盈利能力。