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利用非抗生素选择标记磷酸甘露糖异构酶对洋葱进行农杆菌介导转化和基因枪转化

Agrobacterium and biolistic transformation of onion using non-antibiotic selection marker phosphomannose isomerase.

作者信息

Aswath Chenna Reddy, Mo Sung Youn, Kim Doo Hwan, Park S Won

机构信息

Indian Institute of Horticultural Research, Bangalore 560089, India.

出版信息

Plant Cell Rep. 2006 Mar;25(2):92-9. doi: 10.1007/s00299-005-0022-4. Epub 2005 Oct 7.

Abstract

A new selection system for onion transformation that does not require the use of antibiotics or herbicides was developed. The selection system used the Escherichia coli gene that encodes phosphomannose isomerase (pmi). Transgenic plants carrying the manA gene that codes for pmi can detoxify mannose-6-phosphate by conversion to fructose-6-phosphate, an intermediate of glycolysis, via the pmi activity. Six-week-old embryogenic callus initiated from seedling radicle was used for transformation. Transgenic plants were produced efficiently with transformation rates of 27 and 23% using Agrobacterium and biolistic system, respectively. Untransformed shoots were eliminated by a stepwise increase from 10 g l(-1) sucrose with 10 g l(-1) mannose in the first selection to only 10 g l(-1) mannose in the second selection. Integrative transformation was confirmed by PCR, RT-PCR and Southern hybridization.

摘要

开发了一种新的洋葱转化选择系统,该系统无需使用抗生素或除草剂。该选择系统使用编码磷酸甘露糖异构酶(pmi)的大肠杆菌基因。携带编码pmi的manA基因的转基因植物可通过pmi活性将6-磷酸甘露糖转化为糖酵解中间体6-磷酸果糖,从而解除其毒性。以幼苗胚根诱导产生的六周龄胚性愈伤组织用于转化。使用农杆菌和基因枪系统分别以27%和23%的转化率高效产生了转基因植物。通过从第一次选择中含10 g l(-1)蔗糖和10 g l(-1)甘露糖逐步增加到第二次选择中仅含10 g l(-1)甘露糖的方式,去除未转化的芽。通过PCR、RT-PCR和Southern杂交确认了整合转化。

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