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通过粒子轰击转化的转基因大豆植株中的基因沉默。

Gene silencing in transgenic soybean plants transformed via particle bombardment.

作者信息

Reddy M S Srinivasa, Dinkins Randy D, Collins Glenn B

机构信息

Department of Agronomy, N109 Agriculture Science Center Building North, University of Kentucky, KY 40546-0091, Lexington, USA.

出版信息

Plant Cell Rep. 2003 Mar;21(7):676-83. doi: 10.1007/s00299-002-0567-4. Epub 2003 Feb 12.

Abstract

Transgenes are susceptible to silencing in plants especially when multiple copies of the gene of interest are introduced. Transgenic plants derived by particle bombardment, which is the common method for transforming soybean, have a tendency to have multiple integration events. Three independent transgenic soybean plants obtained via particle bombardment were analyzed for transgene silencing. A GUS transgenic soybean line had at least 100 copies of the GUS gene while there were approximately 60 copies of the transgene in the two soybean lines transformed with a 15-kDa zein storage protein gene from maize. Soybean plants transformed with the GUS gene showed variable GUS expression. The coding region and promoter of the GUS gene in the plants with low expression of GUS were heavily methylated. Variability in GUS expression was observed in the progeny of the high expressors in the T(2) and T(3) generations as well. Expression level of the 15-kDa zein gene in transgenic soybean plants showed correlation with the level of transgene methylation. The helper component-proteinase from potyviruses is known to suppress post-transcriptional gene silencing. Transgenic plants were inoculated with the soybean mosaic potyvirus (SMV) to test possible effects on transgene silencing in soybean. Infection with SMV did not suppress transgene silencing in these plants and suggests that the silencing in these plants may not be due to post-transcriptional gene silencing.

摘要

转基因在植物中容易发生沉默,尤其是当导入多个感兴趣基因的拷贝时。通过粒子轰击获得的转基因植物(这是转化大豆的常用方法)往往会有多个整合事件。对通过粒子轰击获得的三株独立转基因大豆植株进行了转基因沉默分析。一个GUS转基因大豆品系有至少100个GUS基因拷贝,而用来自玉米的15 kDa玉米醇溶蛋白贮藏蛋白基因转化的两个大豆品系中,转基因约有60个拷贝。用GUS基因转化的大豆植株表现出不同的GUS表达。GUS表达低的植株中GUS基因的编码区和启动子高度甲基化。在T(2)和T(3)代高表达植株的后代中也观察到GUS表达的变异性。转基因大豆植株中15 kDa玉米醇溶蛋白基因的表达水平与转基因甲基化水平相关。已知马铃薯Y病毒属的辅助成分蛋白酶可抑制转录后基因沉默。用大豆花叶马铃薯Y病毒(SMV)接种转基因植株,以测试对大豆转基因沉默的可能影响。SMV感染并未抑制这些植株中的转基因沉默,这表明这些植株中的沉默可能不是由于转录后基因沉默。

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