Bhatt A M, Lister C, Crawford N, Dean C
Department of Molecular Genetics, John Innes Centre, Colney Lane, Norwich NR4 7UH, United Kingdom.
Plant Cell. 1998 Mar;10(3):427-34. doi: 10.1105/tpc.10.3.427.
Tag1 was identified as a highly active endogenous transposable element in transgenic Arabidopsis thaliana Landsberg erecta plants carrying the maize transposable element Activator (Ac). Here, we describe experiments designed to determine the basis for the high activity of Tag1. The frequency of transposition of Tag1 elements was compared in lines containing or lacking Ac transposase to assess the effect of Ac transposase on Tag1 activity. Three populations of nontransgenic plants, including nontransformed regenerants, were also analyzed. The high level of activity of Tag1 did not correlate with the presence or absence of Ac transposase but was significantly higher in transgenic lines. This result was maintained through at least six generations after transformation. These data suggest that Tag1 transposition is stimulated by processes that occur during the Agrobacterium transformation and that thereafter remain active. Two Tag1 elements are tightly linked in the Landsberg erecta genome and map to the lower arm of chromosome 1. Tag1 elements were found in only a few A. thaliana ecotypes but were present in four other Arabidopsis species.
在携带玉米转座元件激活子(Ac)的转基因拟南芥直立型兰茨贝格植株中,Tag1被鉴定为一种高度活跃的内源性转座元件。在此,我们描述了旨在确定Tag1高活性基础的实验。在含有或缺乏Ac转座酶的株系中比较Tag1元件的转座频率,以评估Ac转座酶对Tag1活性的影响。还分析了三个非转基因植物群体,包括未转化的再生植株。Tag1的高活性水平与Ac转座酶的存在与否无关,但在转基因株系中显著更高。该结果在转化后至少六代中保持。这些数据表明,Tag1转座受到农杆菌转化过程中发生的且此后仍保持活跃的过程的刺激。两个Tag1元件在直立型兰茨贝格基因组中紧密连锁,并定位到1号染色体的短臂。Tag1元件仅在少数拟南芥生态型中发现,但在其他四个拟南芥物种中存在。