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改良培养基生产仔猪副伤寒活疫苗的研究
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作者 李宏英 李强华 《江西畜牧兽医杂志》 2015年第1期16-18,共3页
为提高仔猪副伤寒活疫苗质量,降低生产成本,使用某培养基生产企业生产的仔猪副伤寒干粉培养基,添加0.75%的水解乳蛋白,配制成合成培养基(以下称改良培养基),用于仔猪副伤寒活疫苗(C500株)的生产,同时与自制培养基进行比较。结果表明,改... 为提高仔猪副伤寒活疫苗质量,降低生产成本,使用某培养基生产企业生产的仔猪副伤寒干粉培养基,添加0.75%的水解乳蛋白,配制成合成培养基(以下称改良培养基),用于仔猪副伤寒活疫苗(C500株)的生产,同时与自制培养基进行比较。结果表明,改良培养基培养的活菌数平均达到515×108CFU·m L-1,高于自制培养基水平(450×108CFU·m L-1);改良培养基生产的6批活疫苗活菌率达50%以上,分别用兔做安全检验、产品经12个月的保存后计活菌数,均符合《中华人民共和国兽药典》2010年版三部[1]的质量要求。试验表明,改良培养基替代自制培养基用于仔猪副伤寒活疫苗(C500株)的生产是可行的,并能降低生产成本。 展开更多
关键词 仔猪副伤寒 改良培养基 菌液活菌数
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Effect of Different Bacterial-Feeding Nematode Species on Soil Bacterial Numbers,Activity,and Community Composition 被引量:4
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作者 XIAO Hai-Feng LI Gen +2 位作者 LI Da-Ming HU Feng LI Hui-Xin 《Pedosphere》 SCIE CAS CSCD 2014年第1期116-124,共9页
The effects of bacterial-feeding nematodes on bacterial number, activity, and community composition were studied through a microcosm experiment using sterilized soil inoculated with soil bacteria (soil suspension) a... The effects of bacterial-feeding nematodes on bacterial number, activity, and community composition were studied through a microcosm experiment using sterilized soil inoculated with soil bacteria (soil suspension) and with bacteria and three species of bacterial-feeding nematodes ( Cephalobus persegnis, Protorhabditis filiformis, and Caenorhabditis elegans). Catalyzed reporter deposition-fluorescence in situ hybridization, CO2 evolution, and denaturing gradient gel electrophoresis (DGGE) of PCR ampli- fied 16S rRNA gene fragments were used to investigate bacterial numbers, antivity, and community composition, respectively. Our results showed that bacterial numbers and activity significantly increased in the presence of bacterial-feeding nematodes, which indicated that bacterial-feeding nematodes had a significant positive effect on soil bacteria. The different nematode species had different effects on bacterial numbers and activity. C. persegnis and P. filiformis, isolated from native soil, increased the bacterial number and activity more than C. elegans. The DGGE analysis results showed that dominant bacterial species significantly differed among the treatments, which suggested that bacterial-feeding nematode species modified the bacterial community composition in soil. Further gene sequence analysis results showed that the dominant bacterial species in this study were gram-negative bacteria. Given the completely same conditions except nematode species, the varied selective feeding behavior of different nematode species was the most likely reason for the altered bacterial community composition. Overall, the alteration of bacterial numbers, activity and community composition resulting from the bacterial-feeding nematodes may ult!mately affect soil ecological functioning and processes. 展开更多
关键词 CARD-FISH CO2 evolution DGGE gene sequence gram-negative bacteria
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