为确定吉林省某养殖场导致猪群死亡的病原菌,本研究从病死猪胸腔积液中分离得到一株优势菌,经16S r DNA检测该株优势菌为解鸟氨酸拉乌尔菌;动物回归试验显示分离株对猪、小鼠均有致病性;药敏试验结果显示该菌对大环内酯类的麦迪霉素、...为确定吉林省某养殖场导致猪群死亡的病原菌,本研究从病死猪胸腔积液中分离得到一株优势菌,经16S r DNA检测该株优势菌为解鸟氨酸拉乌尔菌;动物回归试验显示分离株对猪、小鼠均有致病性;药敏试验结果显示该菌对大环内酯类的麦迪霉素、阿奇霉素、红霉素、泰乐菌素呈显著耐药,并通过PCR检测到分离菌株的大环内酯耐药基因呈显性表达。本研究首次从猪体内分离到解鸟氨酸拉乌尔菌,并为该条件致病菌的临床诊疗、免疫防控提供参考依据。展开更多
After 8 yrs lab experiments and field tests, an advanced technique for identifying varieties resistance to rice blast was developed by a research group in Plant Protection Institute, Zhejiang Academy of Agricultural ... After 8 yrs lab experiments and field tests, an advanced technique for identifying varieties resistance to rice blast was developed by a research group in Plant Protection Institute, Zhejiang Academy of Agricultural Sciences. With this technique, the inoculum was prepared on a maize-rice-straw-agar media which was suitable for sporulation of most rice blast pathogen isolates. To avoid possible virulence variation during the vegetative growth, the conidia were harvested and preserved for later different sets of resistance evaluation tests. A simple and precise new method—smear inoculation was used for infection. The experi-展开更多
文摘为确定吉林省某养殖场导致猪群死亡的病原菌,本研究从病死猪胸腔积液中分离得到一株优势菌,经16S r DNA检测该株优势菌为解鸟氨酸拉乌尔菌;动物回归试验显示分离株对猪、小鼠均有致病性;药敏试验结果显示该菌对大环内酯类的麦迪霉素、阿奇霉素、红霉素、泰乐菌素呈显著耐药,并通过PCR检测到分离菌株的大环内酯耐药基因呈显性表达。本研究首次从猪体内分离到解鸟氨酸拉乌尔菌,并为该条件致病菌的临床诊疗、免疫防控提供参考依据。
文摘 After 8 yrs lab experiments and field tests, an advanced technique for identifying varieties resistance to rice blast was developed by a research group in Plant Protection Institute, Zhejiang Academy of Agricultural Sciences. With this technique, the inoculum was prepared on a maize-rice-straw-agar media which was suitable for sporulation of most rice blast pathogen isolates. To avoid possible virulence variation during the vegetative growth, the conidia were harvested and preserved for later different sets of resistance evaluation tests. A simple and precise new method—smear inoculation was used for infection. The experi-