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1) Fick bacillus
菲克氏杆菌
2) Bacillus clausii
克劳氏芽孢杆菌
1.
Study on adsorption of Zn~(2+) by Bacillus clausii S-4;
克劳氏芽孢杆菌(Bacillus clausii S-4)吸附Zn~(2+)的研究
2.
Alkaline Pectinase Production by Bacillus clausii S-4 with Solid State Fermentaion;
克劳氏芽孢杆菌S-4菌株固态发酵产碱性果胶酶
3.
Alkaline pectinase from Bacillus clausii S-4 was tested for its ability to induce changes of physiological and biochemical characters in cucumber seedlings,attempting to unveil the mechanism of induced disease resistance.
以克劳氏芽孢杆菌(Bacillus clausii)S-4碱性果胶酶诱导黄瓜黄化苗,研究了该激发子对黄瓜生理生化特性的影响,来探究碱性果胶酶诱导黄瓜抗病的机理。
3) Klebsiella pneumoniae
克雷伯氏杆菌
1.
Optimization of microbial production of 1,3-propanediol by Klebsiella pneumoniae under anaerobic and microaerobic conditions by metabolic flux analysis;
克雷伯氏杆菌发酵生产1,3-丙二醇的代谢通量优化分析
2.
klebsiella pneumoniae not only is a term that a kind of person and animal fall ill the disease totally original, but also is a kind of to cause again various animal fall ill with the result this germ.
克雷伯氏杆菌既是一种人兽共患病病原又是一种可引起多种动物患病的条件性致病菌。
3.
In this paper,the process of glycerol bioconversion into 1,3-PD in Klebsiella pneumoniae was analyzed by metabolic flux analysis,and the dynamic process was simulated by a h.
本文对克雷伯氏杆菌转化甘油为1,3-丙二醇的代谢网络进行了通量分析,并建立了基于代谢网络的动力学模型,对生物转化过程的动态行为进行了模拟,主要研究内容如下: 首先,对简化的克雷伯氏杆菌代谢网络进行了代谢通量平衡分析与优化。
4) Klebsiella pneumoniae
克氏肺炎杆菌
1.
Effects of aldehyde dehydrogenase gene knockout on 1,3-propanediol production by Klebsiella pneumoniae;
醛脱氢酶基因敲除对克氏肺炎杆菌合成1,3-丙二醇的影响
2.
Cloning and Sequence Analysis of the Gene Encoding NiFe-hydrogenase from Klebsiella pneumoniae;
克氏肺炎杆菌NiFe-氢酶基因的克隆与序列分析
5) Klebsiella pneumoniae:M5a1
肺炎克氏杆菌M5a1
6) Klebsiella oxytoca
催娩克氏杆菌
1.
The Stabilization of Plasmid Carrying hup Genes and the Expression of H_2 uptake Hydrogenase in Klebsiella oxytoca;
含hup基因的质粒在催娩克氏杆菌中的稳定性及吸氢酶的表达
2.
Integration of Enterobacter Cloacae E26 nifA Gene into the Genome of Klebsiella oxytoca NG13 by Tn5 Transposition;
阴沟肠杆菌基因nifA经转座子Tn5整入催娩克氏杆菌NG13的基因组
补充资料:劳氏
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