College of Animal Sciences and Veterinary Medicines, Shanxi Agricultural University, Taigu, Shanxi, 030801, People's Republic of China.
Biol Trace Elem Res. 2012 Dec;150(1-3):130-6. doi: 10.1007/s12011-012-9452-3. Epub 2012 Jun 14.
The aim of this study was to evaluate the effect of nano-selenium (NS) and yeast-selenium (YS) supplementation on feed digestibility, rumen fermentation, and urinary purine derivatives in sheep. Six male ruminally cannulated sheep, average 43.32 ± 4.8 kg of BW, were used in a replicated 3 × 3 Latin square experiment. The treatments were control (without NS and YS), NS with 4 g nano-Se (provide 4 mg Se), and YS with 4 g Se-yeast (provide 4 mg Se) per kilogram of diet dry matter (DM), respectively. Experimental periods were 25 days with 15 days of adaptation and 10 days of sampling. Ruminal pH, ammonia N concentration, molar proportion of propionate, and ratio of acetate to propionate were decreased (P < 0.01), and total ruminal VFA concentration was increased with NS and YS supplementation (P < 0.01). In situ ruminal neutral detergent fiber (aNDF) degradation of Leymus chinensis (P < 0.01) and crude protein (CP) of soybean meal (P < 0.01) were significantly improved by Se supplementation. Digestibilities of DM, organic matter, crude protein, ether extract, aNDF, and ADF in the total tract and urinary excretion of purine derivatives were also affected by feeding Se supplementation diets (P < 0.01). Ruminal fermentation was improved by feeding NS, and feed conversion efficiency was also increased compared with YS (P < 0.01). We concluded that nano-Se can be used as a preferentially available selenium source in ruminant nutrition.
本研究旨在评估纳米硒(NS)和酵母硒(YS)补充对绵羊饲料消化率、瘤胃发酵和尿嘌呤衍生物的影响。选用 6 只雄性瘤胃可插管绵羊,平均体重为 43.32±4.8kg,采用 3×3 拉丁方试验设计。处理组分别为对照组(不添加 NS 和 YS)、NS 组(添加 4g 纳米硒,提供 4mg Se)和 YS 组(添加 4g 硒酵母,提供 4mg Se)。试验期为 25d,其中适应期 15d,采样期 10d。NS 和 YS 补充降低了瘤胃 pH、氨态氮浓度、丙酸摩尔比例和乙酸/丙酸比(P<0.01),并增加了总瘤胃 VFA 浓度(P<0.01)。NS 和 YS 补充显著提高了羊草(P<0.01)和豆粕(P<0.01)中性洗涤纤维(aNDF)在瘤胃中的降解率和粗蛋白(CP)降解率。Se 补充还影响了 DM、有机物、粗蛋白、乙醚提取物、aNDF 和 ADF 在全肠道中的消化率以及尿嘌呤衍生物的排泄量(P<0.01)。NS 组的瘤胃发酵得到改善,与 YS 组相比,饲料转化率也得到提高(P<0.01)。综上,纳米硒可以作为反刍动物营养中优先利用的硒源。