将72头28日龄三元杂交(杜×大×长)断奶仔猪随机分为3组,每组4个重复,每重复6头,分别饲喂基础日粮、基础日粮+质量分数0.25%乳酸杆菌和基础日粮+质量分数0.25%乳酸杆菌+10 m g/kg黄霉素,以研究乳酸杆菌对断奶仔猪生长性能、养...将72头28日龄三元杂交(杜×大×长)断奶仔猪随机分为3组,每组4个重复,每重复6头,分别饲喂基础日粮、基础日粮+质量分数0.25%乳酸杆菌和基础日粮+质量分数0.25%乳酸杆菌+10 m g/kg黄霉素,以研究乳酸杆菌对断奶仔猪生长性能、养分表观消化率和消化酶活性的影响。结果表明,添加乳酸杆菌组均能显著提高断奶仔猪平均日采食量(P<0.05),极显著提高平均日增重,降低料重比(P<0.01);显著提高仔猪饲粮粗脂肪表观消化率(P<0.05),极显著提高胰脏、十二指肠食糜脂肪酶和淀粉酶活性(P<0.01);与单独添加乳酸杆菌相比,乳酸杆菌与黄霉素配伍极显著降低了仔猪的日增重和十二指肠食糜脂肪酶和淀粉酶活性(P<0.01)。表明在断奶仔猪日粮中添加乳酸杆菌,可显著提高仔猪生长性能及脂肪酶活性和粗脂肪表观消化率。展开更多
Some characteristics of Ag+ biosorption and bioreduction by Lactobacillus sp. A09 biomass were reported. The optimum pH value of Ag+ biosorption by strain A09 was 4.5. Temperature(6~ 50 ℃ ) did not affect the bios...Some characteristics of Ag+ biosorption and bioreduction by Lactobacillus sp. A09 biomass were reported. The optimum pH value of Ag+ biosorption by strain A09 was 4.5. Temperature(6~ 50 ℃ ) did not affect the biosorption. The biosorptive efficiency (91% ) and biosorptive capacity(Ag+ 125 mg· g- 1 dry weight biomass ) were achieved under the conditions of Ag+ 100 mg· L- 1, biomass 800 mg· L- 1, pH 4.5 and 30 ℃ for 24 h contact. TEM analysis indicated that A09 biomass could reduce Ag+ to Ag0 as Ag particles on the surface of cells. IR spectroscopy showed that - CO2- and - HN- C=O on the surface of cells may involve in the precession for adsorbing Ag+ .展开更多
文摘将72头28日龄三元杂交(杜×大×长)断奶仔猪随机分为3组,每组4个重复,每重复6头,分别饲喂基础日粮、基础日粮+质量分数0.25%乳酸杆菌和基础日粮+质量分数0.25%乳酸杆菌+10 m g/kg黄霉素,以研究乳酸杆菌对断奶仔猪生长性能、养分表观消化率和消化酶活性的影响。结果表明,添加乳酸杆菌组均能显著提高断奶仔猪平均日采食量(P<0.05),极显著提高平均日增重,降低料重比(P<0.01);显著提高仔猪饲粮粗脂肪表观消化率(P<0.05),极显著提高胰脏、十二指肠食糜脂肪酶和淀粉酶活性(P<0.01);与单独添加乳酸杆菌相比,乳酸杆菌与黄霉素配伍极显著降低了仔猪的日增重和十二指肠食糜脂肪酶和淀粉酶活性(P<0.01)。表明在断奶仔猪日粮中添加乳酸杆菌,可显著提高仔猪生长性能及脂肪酶活性和粗脂肪表观消化率。
文摘Some characteristics of Ag+ biosorption and bioreduction by Lactobacillus sp. A09 biomass were reported. The optimum pH value of Ag+ biosorption by strain A09 was 4.5. Temperature(6~ 50 ℃ ) did not affect the biosorption. The biosorptive efficiency (91% ) and biosorptive capacity(Ag+ 125 mg· g- 1 dry weight biomass ) were achieved under the conditions of Ag+ 100 mg· L- 1, biomass 800 mg· L- 1, pH 4.5 and 30 ℃ for 24 h contact. TEM analysis indicated that A09 biomass could reduce Ag+ to Ag0 as Ag particles on the surface of cells. IR spectroscopy showed that - CO2- and - HN- C=O on the surface of cells may involve in the precession for adsorbing Ag+ .