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1)  B.ammoniagenes MA-2
产氨短杆菌MA-2
2)  Corynebacterium ammoniagenes
产氨短杆菌
1.
A high level of uridine monophosphate (UMP) transformation strain KU-F14-14 was obtained from the original strain Corynebacterium ammoniagenes K13 by mutagenesis with N+ ion-beam implantation, followed by selection of resistance to 5-fluorocytosine.
以产氨短杆菌K13为出发菌株,采用离子注入诱变,并以5-氟胞嘧啶筛选,最终获得了尿苷酸高转化突变株KU-F14-14。
2.
The analysis of HPLC and MS-HPLC were employed to corroborate the conversion oforotic acid to UMP by Corynebacterium ammoniagenes.
本研究采用HPLC 法和液质联用法确证了产氨短杆菌Corynebacterium ammoniagenesR248 能将底物乳清酸转化生成UMP。
3)  Brevibacterium ammoniagenes
产氨短杆菌
1.
The fermentation tests of inosine in 1.2L scale by Brevibacterium ammoniagenes mutant GMA-2802;
产氨短杆菌GMA-28021.2L罐肌苷发酵试验
2.
Inosine Production from Glutamic Acid Mother Liquid by Brevibacterium ammoniagenes;
产氨短杆菌GMA-1112利用味精母液发酵生产肌苷
3.
Comparison test in the process of the fermentation of inosine production by Brevibacterium ammoniagenes GMA-2802 and Bacillus subtilis GMI-741;
产氨短杆菌与枯草杆菌发酵产肌苷比较试验
4)  B.flavum MA-3
黄色短杆菌MA-3
5)  Lactobacillus brevis
短乳杆菌
1.
Study on the Biodegradation of o-Nitrophenol by Lactobacillus brevis;
短乳杆菌降解邻硝基苯酚的特性研究
2.
Rapid detection of Lactobacillus brevis with fluorescence real-time quantitative PCR;
实时荧光定量PCR快速鉴定短乳杆菌
3.
Removal of Nitrite From Aquacultural Water With Lactobacillus brevis;
应用短乳杆菌去除养殖水体中亚硝酸盐
6)  Brevibacterium sp
甾短杆菌
1.
Purification and Properties of a Cholesterol Oxidase from Brevibacterium sp. by Three-Phase Partitioning;
三相分离甾短杆菌胆固醇氧化酶及其性质
2.
Screening of a Red Mutant of Cholesterol Oxidase Producer from Brevibacterium sp. and the Study of Related Enzyme Stability;
甾短杆菌红色突变株选育及其产胆固醇氧化酶稳定条件研究
3.
In order to improve the productivity of Cholesterol oxidase by Brevibacterium sp.
为进一步提高产酶水平,本实验采用超声波联合亚硝基胍的复合诱变方法处理胆固醇氧化酶产生菌(甾短杆菌),通过1mg/mL亚硝基胍和超声(200W,50kHz,35min)同时处理细胞悬液,获得一株红色突变株,其产酶活力从0。
补充资料:偶氮氯膦-mA(chlorophosphonazo-mA)
【偶氮氯膦-mA】(chlorophosphonazo-mA)简称“`CPA-mA`”。学名“2-(4-氯-2-膦酸基苯偶氮)-7-(3-乙酰苯偶氮)-1,8-二羟基-3,6-萘二磺酸”。一种有机显色剂。分子式`C_24H_18O_12N_4PS_2Cl`,分子量684.97。深紫红色结晶粉末。易溶于水,在中性的酸性溶液中呈紫红色。在酸性介质中能与稀土元素形成蓝紫色络合物,最大吸收峰为660纳米。具有灵敏度高、选择性好、显色酸度高、测定范围宽和
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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