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激活子转座酶基因的高水平表达抑制了烟草子叶中解离元件的切除。

High level expression of the Activator transposase gene inhibits the excision of Dissociation in tobacco cotyledons.

作者信息

Scofield S R, English J J, Jones J D

机构信息

Sainsbury Laboratory, John Innes Centre, Norwich, England.

出版信息

Cell. 1993 Nov 5;75(3):507-17. doi: 10.1016/0092-8674(93)90385-4.

Abstract

A fusion of the strong cauliflower mosaic virus 35S promoter to the Activator (Ac) transposase (TPASE) gene does not trigger excision of Dissociation (Ds) continuously during tobacco cotyledon development, although once activated, the 35S promoter remains active throughout embryogeny. Epistasis studies where 35S:TPASE is in trans with later-acting fusions indicate that transient effectiveness for excision results from this fusion inhibiting its own action and that of other TPASE sources. Inhibition depends on the strength of TPASE expression, since fusions of the 35S promoter to a TPASE cDNA accumulate 30-fold lower amounts of TPASE mRNA than the 35S:TPASE gene fusion and do not inhibit excision. We discuss the role of TPASE levels in the curious relationship between Ac activity and Ac dosage in maize.

摘要

尽管一旦被激活,花椰菜花叶病毒35S强启动子在整个胚胎发育过程中都保持活性,但将其与激活子(Ac)转座酶(TPASE)基因融合,在烟草子叶发育过程中并不会持续触发解离(Ds)的切除。上位性研究表明,35S:TPASE与后期起作用的融合基因处于反式状态时,切除的瞬时有效性源于这种融合抑制了其自身以及其他TPASE来源的作用。抑制作用取决于TPASE表达的强度,因为35S启动子与TPASE cDNA的融合积累的TPASE mRNA量比35S:TPASE基因融合低30倍,且不会抑制切除。我们讨论了TPASE水平在玉米中Ac活性与Ac剂量之间奇特关系中的作用。

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