Institut für Genetik, Universität zu Köln 41, D-5000 Köln 30, FRG.
EMBO J. 1988 Dec 1;7(12):3653-9. doi: 10.1002/j.1460-2075.1988.tb03246.x.
We have used the ability of Ac to transpose in tobacco to determine which Ac sequences are required for transposition, using a phenotypic assay for Ac excision from an NPTII gene in which excisions of Ac result in calli resistant to the antibiotic kanamycin (Baker et al., 1987). Here we show that deletion of the Ac DNA which encodes the untranslated leader of the Ac transcript does not prevent Ac excision. A deletion which removes 110 bp including the first 75 bp of long open reading frame prevents Ac excision in tobacco cells. However, it will excise in tobacco cells previously transformed with Ac indicating that deletion of the region prevents the synthesis of a product required for Ac excision. Deletion of the Ac sequences between bp 44 and bp 92 or from bp 75 to bp 181 abolishes, or strongly reduces, transposition in cells which are already transgenic for an active Ac element. This indicates that these deleted elements have lost sequences which are required for the transposon to respond to the transposase, when the enzyme is produced in trans. We also describe a tobacco strain transformed with a Ds element stably inserted wtihin an NPTII gene. This strain is Km and was retransformed with a construct containing the open reading frame (ORF) of the 3.5-kb Ac transcript expressed from a plant promoter. Expression of the cDNA construct promotes excision of the Ds element. These data suggest that the 3.5-kb transcript of Ac encodes the only Ac product required for transposition, i.e. the transposase function.
我们曾利用 Ac 在烟草中的转座能力,通过表型测定来确定 Ac 转座所必需的序列,所用的表型测定方法是 Ac 从 NPTII 基因中转座,导致对卡那霉素(kanamycin)有抗性的愈伤组织出现(Baker 等人,1987)。这里我们显示,缺失 Ac 编码 Ac 转录物非翻译起始序列的 DNA 并不阻止 Ac 转座。缺失包括长开放阅读框(ORF)起始的 75 个碱基在内的 110 个碱基,阻止 Ac 在烟草细胞中转座。然而,它可在以前转化有 Ac 的烟草细胞中转座,表明该区域的缺失阻止了对 Ac 转座所必需的产物的合成。缺失 Ac 在 bp44 到 bp92 之间或 bp75 到 bp181 之间的序列,使已经转化有活性 Ac 元件的细胞中的转座作用消失或大大减弱。这表明这些缺失元件已丧失了对转座子响应转座酶所必需的序列,而当酶在转座时产生。我们还描述了一种烟草品系,其中 Ds 元件稳定地插入 NPTII 基因内。该品系对 Km 有抗性,且用一个含有 3.5kb Ac 转录物 ORF 的构建体再次转化,该转录物由植物启动子表达。cDNA 构建体的表达促进了 Ds 元件的缺失。这些数据表明,Ac 的 3.5kb 转录物编码转座所必需的唯一 Ac 产物,即转座酶功能。