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利用放电介电泳加速实现菜豆的稳定转化。

Stable transformation of Phaseolus vulgaris via electric-discharge mediated particle acceleration.

机构信息

Agracetus, Inc., 8520 University Green, 53562, Middleton, Wisconsin, USA.

出版信息

Plant Cell Rep. 1993 Jan;12(3):165-9. doi: 10.1007/BF00239099.

Abstract

Transgenic Phaseolus vulgaris or common bean has been produced using electric-discharge particle acceleration. The method uses particle acceleration to introduce DNA into bean seed meristems. Multiple shoots are then generated and screened to recover transgenic plants at a rate of 0.03% germline transformed plants/shoot. We have been able to recover transgenic plants using both GUS and herbicide screening to introduce the gus, bar, and bean golden mosaic virus coat protein genes into the navy bean cultivar, Seafarer. The transgenic plants have been characterized over 5 generations of self-fertilization with no loss of introduced genes or expression. In addition, several families have been crossed with non-transgenic parents and these plants also show expected inheritance patterns. The introduced bar gene has been shown to confer strong resistance in transgenic beans to basta herbicide application in the greenhouse.

摘要

利用放电粒子加速技术生产了转基因菜豆(Phaseolus vulgaris 或普通豆)。该方法使用粒子加速将 DNA 导入豆种分生组织。然后生成多个芽并进行筛选,以 0.03%的种系转化植物/芽的比率回收转基因植物。我们已经能够使用 GUS 和除草剂筛选回收转基因植物,将 gus、bar 和豆金黄花叶病毒外壳蛋白基因导入海军豆品种“航海家”。这些转基因植物经过 5 代自交,没有丢失导入的基因或表达。此外,一些家系与非转基因亲本杂交,这些植物也表现出预期的遗传模式。引入的 bar 基因已被证明可使温室中喷洒草甘膦除草剂的转基因豆类具有较强的抗性。

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