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玉米转座元件Ac在水稻(Oryza sativa L.)中的导入与转座

Introduction and transposition of the maize transposable element Ac in rice (Oryza sativa L.).

作者信息

Izawa T, Miyazaki C, Yamamoto M, Terada R, Iida S, Shimamoto K

机构信息

Plantech Research Institute, Yokohama, Japan.

出版信息

Mol Gen Genet. 1991 Jul;227(3):391-6. doi: 10.1007/BF00273928.

Abstract

To develop a transposon tagging system in an important cereal plant, rice (Oryza sativa L.), the maize transposable element Ac (Activator) was introduced into rice protoplasts by electroporation. We employed a phenotypic assay for excision of Ac from the selectable hph gene encoding resistance to hygromycin B. Southern blot analysis of hygromycin B-resistant calli showed that the Ac element can transpose from the introduced hph gene into the rice chromosomes. Sequence analysis of several Ac excision sites in the hph genes revealed sequence alterations characteristic of the excision sites of this plant transposable element. The Ac element appears to be active during development of transgenic rice plants from calli. Moreover, hybridization patterns of different leaves from the same plant indicated that some Ac elements are stable whereas others are able to transpose further during development of leaves. The results indicate that the introduced Ac element can transpose efficiently in transgenic rice plants.

摘要

为了在重要的谷类作物水稻(Oryza sativa L.)中开发一种转座子标签系统,通过电穿孔将玉米转座元件Ac(激活子)导入水稻原生质体。我们采用了一种表型分析方法,用于从编码对潮霉素B抗性的可选择hph基因中切除Ac。对潮霉素B抗性愈伤组织的Southern印迹分析表明,Ac元件可以从导入的hph基因转座到水稻染色体中。对hph基因中几个Ac切除位点的序列分析揭示了这种植物转座元件切除位点的特征性序列改变。Ac元件在愈伤组织发育成转基因水稻植株的过程中似乎是活跃的。此外,同一植株不同叶片的杂交模式表明,一些Ac元件是稳定的,而另一些在叶片发育过程中能够进一步转座。结果表明,导入的Ac元件能够在转基因水稻植株中高效转座。

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