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1)  three T-DNAs vector
无标记转基因植株
2)  marker-free transgenic plants (MFTP)
无标记基因转基因植物
3)  marker_free transgenic plants (MFTPs)
无标记转基因植物
1.
Furthermore, marker_free transgenic plants (MFTPs) have a number of special advantages, such as decreasing the concerns about safety of selectable marker and stacking transgenes progressively into transgenic plants, which significantly owns potential application value.
本文对获得无标记转基因植物的一些途径做一综述。
4)  transgenic plants
转基因植株
1.
Dripping antibiotic solution on growing point as a novel approach to screening transgenic plants;
生长点点滴法在筛选鉴定转基因植株中的应用
2.
From tests of hygromycin resistance, PCR and Southern blot, 14 independent transgenic plants were confirmed.
Northern blot检测表明,原系统素基因(prosystemin)和马铃薯(Solanum tuberosum)蛋白酶抑制剂基因(PinⅡ)在这些转基因植株中都能转录表达。
3.
An efficient and reproducible system hasbeen developed for the production of transgenic plantsin tall fescue (Festuca arundinacea Schreb.
9株转基因植株,大大高于基因枪法的高羊茅转化效率(2~5 株)。
5)  transgenic plant
转基因植株
1.
Study on enzyme-treated preparation of DNA template for PCR assay of transgenic plants;
酶液处理法制备转基因植株PCR DNA模板的研究
2.
In order to obtain anti-virus transgenic plants of Chinese cabbage,Agrobacterium strain R1000(pRiA4b) and EHA105(pTiBo542) which contained a binary vector carrying the TuMV-cp gene were used for genetic transformation.
TuMV-cp基因在转基因植株T1代中获得了稳定的遗传。
3.
Each condition was studied in the process of genetic transformation,the high purity plasmid DNA of Bar-Bt-1Ab genes was transformed into Japonica rice varieties such as Songjing9,Longdao5 with pollen-tube pathway,and the resistant seedlings were selected and identified,the transgenic plants were got,the efficient genetic transformation system for Japonica rice in the north area was optimized.
利用抗性外源基因的整合,获得对水稻害虫和除草剂均有一定抗性的的转基因植株,通过对遗传转化过程中各种条件的研究,将Bar-Bt-1Ab基因的高纯质粒DNA通过花粉管通道法转化到松粳9号、龙稻5号等粳稻品种中,并对抗性苗进行了初步筛选鉴定,获得转基因植株,优化北方粳稻高效的遗传转化体系。
6)  transgenic plantlet
转基因植株
补充资料:标记基因
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性质:一类决定特殊表型特征的突变的染色体座位。如某营养缺陷型标记、某抗生素抗性标记、某噬菌体抗性标记等。带有各种不同标记基因的菌株在遗传学研究和育种中有广泛的应用。

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