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1)  Protoplasts culture/fusion
原生质体培养/融合
2)  protoplast culture
原生质体培养
1.
Studies on protoplast culture of Descurainia sophia calli;
播娘蒿愈伤组织原生质体培养体系的研究
2.
A simplified and effectual system of protoplast culture of N.Tabacum;
一种简化有效的普通烟草原生质体培养方法
3.
Plantlet regeneration from cotyledon protoplast culture of non heading Chinese cabbage;
不结球白菜子叶原生质体培养再生植株
3)  Fusion-protoplast culture
融合体培养
4)  Protoplast Fusion
原生质体融合
1.
Study on potent starch-fermenting strains of Saccharomyces diastaticus constructed by protoplast fusion and colchicine chromosome treatment;
原生质体融合和秋水仙素染色体加倍构建强发酵淀粉的糖化酵母研究
2.
Studies on protoplast fusion between strain of F46 and strain of SC1, SC11;
生防放线菌原生质体融合条件的研究
3.
Studies on protoplast fusion technique in the breeding of Ganoderma lucidium strains of HH series;
灵芝原生质体融合HH系列菌株的选育研究
5)  protoplast electrofusion
原生质体电融合
1.
Screening of high quality yeasts for Kiwifruit wine and preliminary study on their protoplast electrofusion conditions;
猕猴桃酒优质酵母的筛选及原生质体电融合条件初探
2.
Grape wine yeast F83 of good fermenting performance and oenococcus oeni of malic acid-degradation capability were used as parant strains to construct malic acid-degradation wine yeast by protoplast electrofusion method.
结果表明,两亲本菌株原生质体电融合的最佳条件为:交变电压55 V,交变电场频率1000 kHz,脉冲宽度30μs,脉冲个数5个。
3.
In order to improve the ability of degrading anthracene and the survival of exogenous bacteria An, protoplast electrofusion was performed between An which can degrade anthracene effectively and Tu which has high survival ability, and then a fusant with specific properties was selected from the regenerated colonies.
为了提高外源蒽降解菌An降解蒽的能力和存活能力,采用原生质体电融合技术,在蒽降解菌An和土生优势菌Tu之间实行了原生质体电融合,并从再生的融合子F中筛选到具有特定性状的后代菌株。
6)  protoplasts fusion
原生质体融合
1.
In this paper, the protoplasts fusion between Pleurotus LMPQ39 and CoprinusCSP was reported.
本文以有抗菌作用的担子菌CSP的高温敏感性为标记,将CSP的原生质体与经热灭活的LMPQ39原生质体融合。
2.
By protoplasts fusion, the microorganisms, which are applied to oil extraction, were improved.
应用原生质体融合技术对高温采油微生物菌种进行改良 ,获得了具有双亲的基本特性、能以烃为碳源、适应高温且产高表面活性物质的融合株 N2 1 ,大大提高了该融合株在油田的应用价值 。
补充资料:原生质体培养
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性质:植物原生质体即为除去细胞壁的裸露植物细胞,1960年Cocking采取酶法游离原生质体获得成功。原生质体培养是指以除去细胞壁的原生质体为外植体的离体无菌培养。由于植物原生质体培养可应用于外源基因转移、体细胞杂交、无性系变异及突变体筛选等研究,因而受到了人们越来越多的重视。

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