Boyce Thompson Institute, Cornell University, Ithaca, New York 14853, USA.
Genetics. 2011 Mar;187(3):749-59. doi: 10.1534/genetics.110.124149. Epub 2010 Dec 31.
The maize Activator/Dissociation (Ac/Ds) elements are able to replicate and transpose throughout the maize genome. Both elements preferentially insert into gene-rich regions altering the maize genome by creating unstable insertion alleles, stable derivative or excision alleles, or by altering the spatial or temporal regulation of gene expression. Here, we characterize an Ac insertion in the 5'-UTR of the Pink Scutellum1 (Ps1) gene and five Ds derivatives generated through abortive transposition events. Characterization of Ps1 transcription initiation sites in this allelic series revealed several that began within the terminus of the Ac and Ds elements. Transcripts originating within Ds or Ac accumulated to lower levels than the wild-type Ps1 allele, but were often sufficient to rescue the seedling lethal phenotype associated with severe loss-of-function alleles. Transcription initiation sites were similar in Ac and Ds derivatives, suggesting that Ac transposase does not influence transcript initiation site selection. However, we show that Ac transposase can negatively regulate Ps1 transcript accumulation in a subset of Ds-insertion alleles resulting in a severe mutant phenotype. The role of maize transposons in gene evolution is discussed.
玉米激活/解离(Ac/Ds)元件能够在整个玉米基因组中复制和转座。这两个元件优先插入基因丰富的区域,通过创建不稳定的插入等位基因、稳定的衍生或切除等位基因,或通过改变基因表达的时空调控,从而改变玉米基因组。在这里,我们描述了在 Pink Scutellum1(Ps1)基因的 5'-UTR 中的一个 Ac 插入和通过无效转座事件产生的五个 Ds 衍生物。在这个等位基因系列中,Ps1 转录起始位点的表征揭示了几个起始于 Ac 和 Ds 元件末端的位点。起源于 Ds 或 Ac 的转录本的积累水平低于野生型 Ps1 等位基因,但通常足以挽救与严重功能丧失等位基因相关的幼苗致死表型。Ac 和 Ds 衍生物中的转录起始位点相似,这表明 Ac 转座酶不影响转录起始位点的选择。然而,我们表明,Ac 转座酶可以在一组 Ds 插入等位基因中负调控 Ps1 转录本的积累,导致严重的突变表型。讨论了玉米转座子在基因进化中的作用。