Steiner-Lange Sabine, Unte Ulrike S, Eckstein Luca, Yang Caiyun, Wilson Zoe A, Schmelzer Elmon, Dekker Koen, Saedler Heinz
Zentrum zur Identifizierung von Genfunktionen durch Insertionsmutagenese in Arabidopsis thaliana (ZIGIA), Max-Planck-Institut für Züchtungsforschung, Carl-von-Linné-Weg 10, 50829 Köln, Germany.
Plant J. 2003 May;34(4):519-28. doi: 10.1046/j.1365-313x.2003.01745.x.
A male sterile mutant with a defect in anther dehiscence was identified in an Arabidopsis thaliana population mutagenized with the Zea mays transposon En-1/Spm. Mutants produce viable pollen that can fertilize when released mechanically from the anthers. Mutant stamens are of normal size and shape, but lack cell wall fortifications in the endothecial cell layer of the anther, which are required for the dehiscence process. The mutant phenotype was shown to be caused by a transposon insertion in AtMYB26, disrupting the putative DNA-binding domain of this R2R3-type MYB transcription factor. RT-PCR revealed that expression of AtMYB26 is restricted to inflorescences. Sterility was shown to be stable under several environmental conditions. The high stability of the sterile phenotype, together with the fact that pollen is functional, makes AtMYB26 and its orthologs a valuable tool for manipulating male fertility in higher plants.
在用玉米转座子En-1/Spm诱变的拟南芥群体中,鉴定出一个花药开裂存在缺陷的雄性不育突变体。突变体产生的可育花粉在从花药中机械释放后能够受精。突变体雄蕊大小和形状正常,但花药内壁细胞层缺乏细胞壁强化结构,而这是开裂过程所必需的。研究表明,突变体表型是由AtMYB26中的转座子插入引起的,该转座子破坏了这种R2R3型MYB转录因子的假定DNA结合结构域。RT-PCR显示AtMYB26的表达仅限于花序。在几种环境条件下,不育性表现稳定。不育表型的高稳定性以及花粉具有功能这一事实,使得AtMYB26及其直系同源基因成为操纵高等植物雄性育性的宝贵工具。