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产细菌素乳酸菌发酵棉籽粕饲喂蛋鸡效果研究 被引量:3
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作者 韩雪 王雅冰 +7 位作者 郝建雄 宫彬彬 李研东 赵丹丹 白利琴 顾梦茹 郭旭茜 王雯 《中国饲料》 北大核心 2019年第11期45-48,共4页
产细菌素乳酸菌发酵棉籽粕在有效降低棉籽粕毒性的同时可提高棉籽粕的营养价值。本研究采用该发酵棉籽粕饲喂蛋鸡后,对蛋鸡的抗病和营养素利用率进行了分析评价。结果显示:产细菌素乳酸菌发酵棉籽粕替代基础日粮40%时,可显著提高蛋鸡的... 产细菌素乳酸菌发酵棉籽粕在有效降低棉籽粕毒性的同时可提高棉籽粕的营养价值。本研究采用该发酵棉籽粕饲喂蛋鸡后,对蛋鸡的抗病和营养素利用率进行了分析评价。结果显示:产细菌素乳酸菌发酵棉籽粕替代基础日粮40%时,可显著提高蛋鸡的抗病能力,与对照组相比发病率和死亡率分别降至1.73%、0.18%(P<0.05)。同时能够显著提高蛋鸡对蛋白质(65.68%)、磷(34.69%)的利用率及肠道乳酸菌的数量(9.72lg cfu/g)(P<0.05)。综上,产细菌素乳酸菌发酵棉籽粕可有效提高蛋鸡的抗病能力和营养素利用率。 展开更多
关键词 发酵棉籽粕 蛋鸡 抗病能力 营养素利用
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A Study on the Contribution of Different Food Sources to Shrimp Growth in an Intensive Fenneropenaeus chinensis Pond
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作者 SU Yuepeng MA Shen TIAN Xiangli DONG Shuanglin 《Journal of Ocean University of China》 SCIE CAS 2008年第4期453-456,共4页
Stable isotope methods can be used to determine the food sources and prey items of aquatic organisms accurately and reliably. This study examined the relative contribution of artificial foods (the formulated feed and... Stable isotope methods can be used to determine the food sources and prey items of aquatic organisms accurately and reliably. This study examined the relative contribution of artificial foods (the formulated feed and Arternia) and natural foods to shrimp growth in an intensive Fenneropenaeus chinensis pond by using carbon and nitrogen stable isotopes. The results showed that the nutrition utilization efficiency of the harvested shrimp was low, only 33.18% of feed nitrogen and 21.73% of feed carbon being converted to shrimp flesh, Our stable isotope results showed that the shrimp obtained nutrition for maximum growth from artificial foods, whose contribution was 93.5%, with the remaining attributed to the natural foods. However, there was 0.94t harvested shrimp derived from natural foods (the rest of 13.56t harvested shrimp derived from artificial foods) in lha intensive pond with a shrimp production of 14.50 tha^-1. Therefore, unit area shrimp production can be increased by increasing the contribution proportion of natural foods in intensive shrimp farming. 展开更多
关键词 shrimp pond nutrition utilization stable isotope CONTRIBUTION INTENSIVE
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