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玉米须(玉米胎座)的分子遗传学基础。

Molecular genetic basis of pod corn (Tunicate maize).

机构信息

Department of Molecular Plant Genetics, Max Planck Institute for Plant Breeding Research, D-50829 Cologne, Germany.

出版信息

Proc Natl Acad Sci U S A. 2012 May 1;109(18):7115-20. doi: 10.1073/pnas.1111670109. Epub 2012 Apr 18.

Abstract

Pod corn is a classic morphological mutant of maize in which the mature kernels of the cob are covered by glumes, in contrast to generally grown maize varieties in which kernels are naked. Pod corn, known since pre-Columbian times, is the result of a dominant gain-of-function mutation at the Tunicate (Tu) locus. Some classic articles of 20th century maize genetics reported that the mutant Tu locus is complex, but molecular details remained elusive. Here, we show that pod corn is caused by a cis-regulatory mutation and duplication of the ZMM19 MADS-box gene. Although the WT locus contains a single-copy gene that is expressed in vegetative organs only, mutation and duplication of ZMM19 in Tu lead to ectopic expression of the gene in the inflorescences, thus conferring vegetative traits to reproductive organs.

摘要

穗轴玉米是玉米的一种经典形态突变体,与通常种植的玉米品种不同,其成熟的穗轴颗粒被颖壳覆盖。穗轴玉米自哥伦布时代前就已被发现,是 Tunicate(Tu)基因座显性获得性功能突变的结果。20 世纪玉米遗传学的一些经典文章报道称,突变的 Tu 基因座很复杂,但分子细节仍难以捉摸。在这里,我们表明穗轴玉米是由 ZMM19 MADS-box 基因的顺式调控突变和重复引起的。尽管 WT 基因座仅含有一个在营养器官中表达的单拷贝基因,但 Tu 中 ZMM19 的突变和重复导致该基因在花序中异位表达,从而将营养器官的特性赋予生殖器官。

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Molecular genetic basis of pod corn (Tunicate maize).玉米须(玉米胎座)的分子遗传学基础。
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