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1)  microwave mutagenesis
微波诱变
1.
Study of microwave mutagenesis on selection of Cephalosporin C production strain-Cephalosporium acremonium;
微波诱变头孢菌素C产生顶头孢霉菌的研究
2.
Screen of lactic acid bacteria for biosynthesis of γ-amino butyric acid and the microwave mutagenesis
产γ-氨基丁酸乳酸菌的分离筛选与微波诱变育种
3.
Then microwave mutagenesis study was carried out with the strain.
其后,利用微波诱变的方式对该细菌进行了诱变育种研究。
2)  microwave mutation
微波诱变
1.
Study on screening of yeast strain with high inulinase activity by microwave mutation;
产菊粉酶酵母菌株的微波诱变选育
2.
Through microwave mutation of the strain Aspergillus niger 3.
采用微波诱变糖化酶生产菌株Aspgillus niger 3。
3.
Jinggangsis Yen F4) by microwave mutation method.
采用微波诱变方法对井冈霉素生产菌株 (Streptomyceshygroscopicusvar。
3)  Microwave irradiation
微波诱变
1.
Screening of high producing γ-linolenic acid stain by microwave irradiation;
微波诱变选育亚-麻酸高产菌株
2.
Studies on the screening of high producing kanglemycin strain by microwave irradiation;
康乐霉素C产生菌的微波诱变
4)  microwave [英]['maɪkrəweɪv]  [美]['maɪkrə'wev]
微波诱变
1.
Screening of high-yield cellulase strain by microwave mutagenesis;
微波诱变筛选纤维素酶高产菌株
2.
In this paper, Bacillus subtilis HJ-9(Xan-) was selected as the parent strain and treated by protoplast mutagenesis with ultraviolet and microwave, giving a adenosine-producing stain B.
以枯草芽孢杆菌HJ-9(Xan-)为出发菌株,根据代谢工程原理,采用原生质体紫外诱变和微波诱变相结合的方法,定向筛选出了具有黄嘌呤缺陷、腺嘌呤脱氨酶阴性、磺胺胍抗性的腺苷生产菌HS-5,其摇瓶发酵产量由出发菌株的1。
5)  microwave irradiation mutation
微波诱变
1.
Screening of high-yield fodder yeast strain by microwave irradiation mutation
微波诱变选育蛋白饲料酵母高产菌株
2.
Screening of oleaginous yeast by utilizing xylose by microwave irradiation mutation
利用木糖产油酵母的微波诱变选育
6)  microwave induction
微波诱导
1.
Meanwhile,the reactive speeds of the two stages with microwave induction and catalytic oxidatio.
同时,从表观动力学的角度对微波诱导和催化氧化两个阶段的反应速率进行了分析阐述,表明催化氧化阶段的反应速率高于前期微波诱导阶段的反应速率,即在微波诱导后,氧化反应速率迅速提高。
2.
Using ZrOCl_2·8H_2O and CO(NH_2)_2 as raw materials,the nano-sized ZrO_2 was prepared by microwave induction precipitation method.
以ZrOCl2·8H2O和CO(NH2)2为原料,利用微波诱导均匀沉淀法制得了纳米ZrO2,考察了微波加热与常规加热的不同之处以及微波加热对粒径大小、均匀度、晶化温度的影响,采用日立H600型透射电镜、Malvern粒度分布仪、差热分析仪和X射线衍射仪等对产品进行了表征,并得出结论:微波诱导制备纳米氧化锆,所得粒子粒度较小、均匀性好,并对微波加热的原理进行了探讨。
补充资料:插入诱变
分子式:
CAS号:

性质:又称插入突变(insertional mutation)。DNA链上由于插入额外的核苷酸或DNA片段而引起的突变。 

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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