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金倍素P800在母猪分娩前后应用的对比试验 被引量:3
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作者 孙作成 吴新华 +1 位作者 刘哲楠 王翔 《现代畜牧兽医》 2016年第5期24-27,共4页
金倍素P800是微生态制剂的最新产品,它含有双歧杆菌、乳酸杆菌等100多种益生菌。对于饲养50头以上基础母猪的规模化饲养场应用后,极大地提高了母猪的生产性能。本试验随机20头母猪分成2组,两组饲养环境相同,饲喂配方和原料都相同的饲料... 金倍素P800是微生态制剂的最新产品,它含有双歧杆菌、乳酸杆菌等100多种益生菌。对于饲养50头以上基础母猪的规模化饲养场应用后,极大地提高了母猪的生产性能。本试验随机20头母猪分成2组,两组饲养环境相同,饲喂配方和原料都相同的饲料,使用相同的免疫和保健程序,分娩前后在饲料中加入金倍素P800,试验结束后,从统计的结果看母猪窝产仔数、窝产活仔数、仔猪初生重、初生仔猪均匀度、断奶成活数等方面大幅度提高;而弱仔率、死胎率都明显下降。相比对照组试验组的仔猪没有发生仔猪黄痢,提高了机体免疫力。母猪的采食量明显提高,便秘情况有所好转,从而降低了用药成本、养殖成本,提高了经济效益。 展开更多
关键词 母猪 分娩 饲料 金倍素 试验
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微生态制剂金倍素806对育肥牛的影响
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作者 徐升国 《兽医导刊》 2017年第16期224-225,共2页
金倍素806是一种新型的微生态产品,它既有保健的功能,又有提高生产性能的作用,同时是一种无毒无残留、无副作用的牛用添加剂。为检验该产品的保健和提高增重的实际功效,特与现有育肥方法作对照试验。
关键词 金倍素806 育肥牛 保健
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Effects of Ionic Strength and Sesquioxides on Adsorption of Toxin of Bacillus thuringiensis subsp.kurstaki on Soils 被引量:2
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作者 FU Qing-Ling PENG Ya-Wen +3 位作者 HUANG Tao HU Hong-Qing DENG Ya-Li YU Xia 《Pedosphere》 SCIE CAS CSCD 2012年第1期96-102,共7页
Chemical reactions and fate of the toxins of Bacillus thuringiensis (Bt) in the soil environment are causing increasing concerns due to the large-scale cultivation of transgenic Bt plants. In this study, the effect ... Chemical reactions and fate of the toxins of Bacillus thuringiensis (Bt) in the soil environment are causing increasing concerns due to the large-scale cultivation of transgenic Bt plants. In this study, the effect of ionic strength (0-1 000 mmol kg-1) adjusted by NaCl or CaCl2 on adsorption of Bt toxin by a lateritic red soil, a paddy soil and these soils after chemical removal of organic-bound or free Fe and Al oxides, as well as by pure minerals (goethite, hematite and gibbsite) which are widespread in these soils, were studied. The results indicated that when the supporting electrolyte was NaCl, the adsorption of Bt toxin by the lateritic red soil and paddy soil increased rapidly until the ionic strength reached 250 mmol kg-1 and then gradually slowed down with the increase of ionic strength; while in ease the supporting electrolyte was CaCl2, the adsorption of Bt toxin enhanced significantly at low ionic strength (〈 10 mmol kg-1) and then decreased as the ionic strength increased. The adsorption of Bt toxin by the tested minerals and soils after the removal of organic-bound or free Fe and Al oxides also increased with increasing ionic strength controlled by NaCl. Removing organic-bound Fe and Al oxides obviously increased the adsorption of Bt toxin in the tested soils. Differently, removing free Fe and Al oxides increased the Bt adsorption by the paddy soil, but decreased the adsorption by the lateritic red soil. The study indicated that the varieties of ionic strength and the presence of Ve and Al oxides affected the adsorption of Bt toxin by the soils, which would contribute to the further understanding of the fate of Bt toxin in the soil environment and provide references for the ecological risk assessment of transgenic Bt plants. 展开更多
关键词 Al oxides Fe oxides lateritic red soil paddy soil supporting electrolyte
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