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1)  Host-plasmid balanced lethal system
抗药性基因
2)  The multidrug resistance gene(pfmdr1)
多药抗性基因(pfmdr1)
3)  drug-resistance gene
抗药基因
1.
Objective To study the drug-resistance gene carried by clinically isolated Pseudomonas aeruginosa and its relation to and level of resistance to disinfectants.
目的研究临床分离的铜绿假单胞菌携带的抗药基因情况及其与消毒剂的抗性关系和水平。
2.
Objective To study the drug-resistance gene carried by a few clinically isolated pathogenic bacteria and its level of resistance to povidone iodine.
目的研究几种临床分离病原菌抗药基因携带情况及其对聚维酮碘的抗力水平。
4)  resistance gene
抗性基因
1.
Preliminary study on SSR makers linked to the resistance gene of MRDV in maize;
玉米粗缩病抗性基因SSR标记初步研究
2.
Advances in resistance gene of brown planthopper in rice;
水稻褐飞虱抗性基因研究进展
3.
Research progress on molecular diagnosis and resistance genes of the cereal cyst nematode,Heterodera avenae;
禾谷孢囊线虫(Heterodera avenae)的分子鉴定及抗性基因研究进展
5)  resistant gene
抗性基因
1.
Imported effects of resistant gene Xa23 of bacterial blight of rice;
水稻白叶枯病抗性基因Xa23导入效应分析
2.
Evaluation of selection effect of molecular marker detection of resistant gene and phenotypical identification to rice bacterial leaf blight;
白叶枯病抗性基因Xa21分子标记检测与表型鉴定的选育效果评价
3.
Introduction of kanamycin resistant gene into tomato somatic cells by Ti plasmid binary vector system;
用Ti质粒的双元载体法将抗性基因转入西红柿体细胞
6)  Resistance genes
抗性基因
1.
The identification of powdery mildew resistance genes in some common wheat of China;
一些小麦白粉病抗源抗性基因鉴定分析
2.
Comparison with 48 cultivars with known Lr gene or gene combinations, we postulated that resistance genes of Lr1, Lr3, Lr10, Lr13, Lr14a, Lr34, and LrB might exist in Pavon76.
通过与 48个抗叶锈单/双基因系的反应型比较,鉴定出该品种中可能含有Lr1、Lr3、L410、L413、Lr14a、Lr34和LrB抗性基因。
3.
For identification of molecular markers linked to the resistance genes Xa3,Xa4 and xa5,three nearisogenic lines (NILs) IRBB3,IRBB4 and IRBB5,and a recurrent cultivar of IR24 were screened by RAPD.
因此,推测这些特异性条带(DNA片段)分别与水稻抗白叶枯病抗性基因Xa-3、Xa-4和xa-5相关。
补充资料:交叉抗药性
分子式:
CAS号:

性质:又称交叉抗药性。是指某种细菌对某种抗生素所获得的耐药性具有特异性,但有时对其他抗生素也同样获得了耐药性。交叉耐药性一般也认为是由于细菌单一基因的变异而同时对两种以上的药物产生耐药性。交叉耐药性多见于化学结构和作用机制近似的,或化学结构不同但作用机制相仿的抗生素之间。如四环素类、氨基糖苷类药物有交叉耐药性。交叉耐药性又可分成部分或完全交叉耐药性。

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