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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Heat and hydrolytic enzymes treatment improved the Agrobacterium-mediated transformation of recalcitrant indica rice (Oryza sativa L.)
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Heat and hydrolytic enzymes treatment improved the Agrobacterium-mediated transformation of recalcitrant indica rice (Oryza sativa L.)

机译:加热和水解酶处理改善了农杆菌介导的calc难rice稻(Oryza sativa L.)的转化

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摘要

Reported Agrobacterium transformation efficiency of indica rice shoot apices varied from 0.4 to 13.8 %. In order to improve the transformation efficiency, modification of transformation protocols through heat and hydrolytic enzyme treatments on rice shoot apices were carried out. Transient expression study using reporter genes revealed that shoot apices heat treated for 3 min at 42 A degrees C during bacterial immersion showed improved GFP (63.0 %) and GUS (42.5 %) expressions per plant as compared to standard protocol (34.0 % GFP and 36.25 % GUS). Shoot apices pre-treated with hydrolytic enzymes containing macerase, pectinase and cellulase at concentration ratio of 1:1:1 (w/v) also demonstrated high percentage of transient GFP (40.0 %) and GUS (35.0 %) expressions per plant. PCR analyses further confirmed the presence of GFP and GUS genes in the transformants. Stable expressions of GFP and GUS were also obtained in multiple shoots of regenerated shoot apices after 4 weeks of culturing in shoot proliferation media without hygromycin. In conclusion, the transformation efficiencies were improved significantly when heat (15.83 %) and hydrolytic enzymes (16.67 %) were applied as individual treatments as compared to the standard transformation method which only accounted for 5.83 %.
机译:报道的农杆菌转化in稻茎尖的效率从0.4%到13.8%不等。为了提高转化效率,通过加热和水解酶处理对水稻芽尖进行了转化方案的修改。使用报告基因的瞬时表达研究表明,与标准操作方案(34.0%GFP和36.25)相比,在细菌浸入过程中于42 A℃热处理3分钟的芽尖显示每株植物的GFP(63.0%)和GUS(42.5%)表达提高。 %GUS)。用含有比例分别为1:1:1(w / v)的浸胶酶,果胶酶和纤维素酶的水解酶预处理的芽尖也显示出每株植物中高百分比的瞬时GFP(40.0%)和GUS(35.0%)表达。 PCR分析进一步证实转化体中存在GFP和GUS基因。在没有潮霉素的芽增殖培养基中培养4周后,在多次再生的芽顶芽的多个芽中也获得了GFP和GUS的稳定表达。综上所述,单独使用热(15.83%)和水解酶(16.67%)时,与仅占5.83%的标准转化方法相比,转化效率显着提高。

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