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利用设计的锌指核酸酶实现植物细胞中的靶向转基因整合。

Targeted transgene integration in plant cells using designed zinc finger nucleases.

作者信息

Cai Charles Q, Doyon Yannick, Ainley W Michael, Miller Jeffrey C, Dekelver Russell C, Moehle Erica A, Rock Jeremy M, Lee Ya-Li, Garrison Robbi, Schulenberg Lisa, Blue Ryan, Worden Andrew, Baker Lisa, Faraji Farhoud, Zhang Lei, Holmes Michael C, Rebar Edward J, Collingwood Trevor N, Rubin-Wilson Beth, Gregory Philip D, Urnov Fyodor D, Petolino Joseph F

机构信息

Dow AgroSciences, LLC, 9330 Zionsville Road, Indianapolis, IN 46268, USA.

出版信息

Plant Mol Biol. 2009 Apr;69(6):699-709. doi: 10.1007/s11103-008-9449-7. Epub 2008 Dec 27.

Abstract

Targeted transgene integration in plants remains a significant technical challenge for both basic and applied research. Here it is reported that designed zinc finger nucleases (ZFNs) can drive site-directed DNA integration into transgenic and native gene loci. A dimer of designed 4-finger ZFNs enabled intra-chromosomal reconstitution of a disabled gfp reporter gene and site-specific transgene integration into chromosomal reporter loci following co-transformation of tobacco cell cultures with a donor construct comprised of sequences necessary to complement a non-functional pat herbicide resistance gene. In addition, a yeast-based assay was used to identify ZFNs capable of cleaving a native endochitinase gene. Agrobacterium delivery of a Ti plasmid harboring both the ZFNs and a donor DNA construct comprising a pat herbicide resistance gene cassette flanked by short stretches of homology to the endochitinase locus yielded up to 10% targeted, homology-directed transgene integration precisely into the ZFN cleavage site. Given that ZFNs can be designed to recognize a wide range of target sequences, these data point toward a novel approach for targeted gene addition, replacement and trait stacking in plants.

摘要

对于基础研究和应用研究而言,植物中的靶向转基因整合仍然是一项重大的技术挑战。本文报道,设计的锌指核酸酶(ZFNs)能够驱动位点特异性DNA整合到转基因和天然基因座中。设计的四指ZFN二聚体能够实现失活的绿色荧光蛋白(gfp)报告基因的染色体内重组,并且在将烟草细胞培养物与由补充无功能的pat除草剂抗性基因所需序列组成的供体构建体共转化后,能够将位点特异性转基因整合到染色体报告基因座中。此外,基于酵母的检测方法被用于鉴定能够切割天然几丁质酶基因的ZFNs。携带ZFNs和包含pat除草剂抗性基因盒的供体DNA构建体(该构建体两侧有与几丁质酶基因座的短同源片段)的Ti质粒通过农杆菌介导进行传递,结果显示高达10%的靶向、同源性定向转基因精确整合到了ZFN切割位点。鉴于ZFNs可被设计用于识别广泛的靶序列,这些数据为植物中的靶向基因添加、替换和性状叠加提供了一种新方法。

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