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Microcalorimetric Studies on Influence of Sm^3+, Dy^3+ on Growth and Sporulation of Bacillus thuringiensis
引用本文:赵儒铭 刘义 杨昌英 谢志雄 沈萍 屈松生. Microcalorimetric Studies on Influence of Sm^3+, Dy^3+ on Growth and Sporulation of Bacillus thuringiensis[J]. 中国化学, 2004, 22(12): 1444-1448. DOI: 10.1002/cjoc.20040221214
作者姓名:赵儒铭 刘义 杨昌英 谢志雄 沈萍 屈松生
作者单位:[1]DepartmentofChemistry,CollegeofChemistryandMolecularSciences.WuhanUniversitY,Wuhan430072,China//ChinaThreeGorgesUniversity,Yichang,Hubei443002,China [2]DepartmentofChemistry,CollegeofChemistryandMolecularSciences.WuhanUniversitY,Wuhan430072,China [3]CollegeofLifeSciences,WuhanUniversity,Wuhan,Hubei430072,China
基金项目:Project supported by the National Natural Science Foundation of China,the Teaching and Scientific Research Award Program for Outstanding Young Professors in High Education Institute,and the Natural Science Foundation of Hubei Province.
摘    要:By using an LKB-2277 Bioactivity Monitor and cycle-flow method, the thermogenic curves of aerobic growth for Bacillus thuringiensis cry Ⅱ strain at 28 ℃ have been obtained. The metabolic thermogenic curves of Bt cry Ⅱ contain two distinct parts: the first part reflects the changes of bacterial growth phase and the second part corresponds to sporulation phase. From these thermogenic curves in the absence or presence of Sm^3 , Dy^3 ions, the thermokinetic parameters such as the growth rate constants k. the interval time τ1, the maximum power PMAX1 and heat-output QLOG for log phase, the maximum power PMAX2 and heat-output QSTAT for stationary phase, the heat-output QSPOR for sporulation phase and total heat effects QT were calculated. Sm^3 and Dy^3 ions have promoting action on the growth of Bt cryⅡ in their lower concentration range, on the other hand, they have inhibitory action on the sporulation of Bt in their higher concentration range, It has also been found that the effects of Sm^3 and Dy^3 ions on Bt during the sporulation phase were far greater than those during the bacterial growth phase. It was concluded that the application of Bt for controlling insecticide could not be affected by the presence of the rare-earth elements in the environmental ecosystem.

关 键 词:微量热研究 Sm^3+ Dy^3+ 好氧菌 杆状菌 生物活性 杉 镝 新陈代谢

Microcalorimetric Studies on Influence of Sm~(3+), Dy~(3+) on Growth and Sporulation of Bacillus thuringiensis
ZHAO,RU-Ming Liu,Yi,YANG,Chang-Yinga,XIE,Zhi-Xiong SHEN,Ping QU,Song-Shenga. Microcalorimetric Studies on Influence of Sm~(3+), Dy~(3+) on Growth and Sporulation of Bacillus thuringiensis[J]. Chinese Journal of Chemistry, 2004, 22(12): 1444-1448. DOI: 10.1002/cjoc.20040221214
Authors:ZHAO  RU-Ming Liu  Yi  YANG  Chang-Yinga  XIE  Zhi-Xiong SHEN  Ping QU  Song-Shenga
Affiliation:ZHAO,RU-Ming Liu,Yi*,YANG,Chang-Yinga,XIE,Zhi-Xiong SHEN,Ping QU,Song-Shenga Department of Chemistry,College of Chemistry and Molecular Sciences,Wuhan University,Wuhan 430072,China b China Three Gorges University,Yichang,Hubei 443002,China c College of Life Sciences,Wuhan University,Wuhan,Hubei 430072,China
Abstract:By using an LKB‐2277 Bioactivity Monitor and cycle‐flow method, the thermogenic curves of aerobic growth for Bacillus thuringiensis cry II strain at 28 °C have been obtained. The metabolic thermogenic curves of Bt cry II contain two distinct parts: the first part reflects the changes of bacterial growth phase and the second part corresponds to sporulation phase. From these thermogenic curves in the absence or presence of Sm3+, Dy3+ ions, the thermokinetic parameters such as the growth rate constants k, the interval time τI, the maximum power PMAX1 and heat‐output QLOG for log phase, the maximum power PMAX2 and heat‐output QSTAT for stationary phase, the heat‐output QSPOR for sporulation phase and total heat effects QT were calculated. Sm3+ and Dy3+ ions have promoting action on the growth of Bt cry II in their lower concentration range, on the other hand, they have inhibitory action on the sporulation of Bt in their higher concentration range. It has also been found that the effects of Sm3+ and Dy3+ ions on Br firing the sporulation phase were far greater than those during the bacterial growth phase. It was concluded that the application of Bt for controlling insecticide could not be affected by the presence of the rare‐earth elements in the environmental ecosystem.
Keywords:microcalorimetry   Sm3+   Dy3+   thermokinetics
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