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玉米(Zea mays L.)A2基因中一个转座元件插入的永久固定。

Permanent fixation of a transposable element insert in the A2 gene of maize (Zea mays L.).

作者信息

Thatiparthi V R, Dinesh-Kumar S P, Peterson P A

机构信息

Department of Zoology and Genetics, Iowa State University, Ames 50011, USA.

出版信息

J Hered. 1995 May-Jun;86(3):167-71. doi: 10.1093/oxfordjournals.jhered.a111557.

Abstract

Transposable elements are considered to be responsible for creating genetic variation that contributes to evolutionary change. The pervasiveness of transposable elements in certain breeding lines of maize suggests that part of the observed genetic variation in those lines might be the result of transposition activity. Stable genetic variation often results from the allelic differences created by footprints generated in the host genes upon element excision; such variation can also result from insertions that are permanently fixed at a particular locus. The 1.3-kb element within the a2-m1 (class II state) allele of maize is one example of a stable insertion. Though the l element never excises from the A2 gene, it interacts with the TNPA (transposase A) product of the En/Spm element. In this study, we tested whether continued interaction of the l element with TNPA would lead to excision of l or other change of this allele. Our screening of 220,000 kernels did not yield any new states of a2-m1 in the presence of an active autonomous En/Spm element, indicating that this l element is highly stable and permanently fixed at this locus. The probable implications of l-element stability are discussed.

摘要

转座元件被认为是造成遗传变异的原因,而这种遗传变异有助于进化改变。转座元件在玉米某些育种系中的广泛存在表明,这些品系中观察到的部分遗传变异可能是转座活动的结果。稳定的遗传变异通常源于元件切除时在宿主基因中产生的足迹所造成的等位基因差异;这种变异也可能源于在特定位点永久固定的插入。玉米a2 - m1(II类状态)等位基因中的1.3 kb元件就是稳定插入的一个例子。尽管l元件从未从A2基因中切除,但它与En/Spm元件的TNPA(转座酶A)产物相互作用。在本研究中,我们测试了l元件与TNPA的持续相互作用是否会导致l元件切除或该等位基因的其他变化。在存在活跃的自主En/Spm元件的情况下,我们对220,000粒种子进行筛选,未发现a2 - m1有任何新状态,这表明该l元件高度稳定且在该位点永久固定。文中讨论了l元件稳定性可能产生的影响。

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