van der Biezen E A, Brandwagt B F, van Leeuwen W, Nijkamp H J, Hille J
Department of Genetics, Vrije Universiteit, Amsterdam, The Netherlands.
Mol Gen Genet. 1996 Jun 12;251(3):267-80. doi: 10.1007/BF02172517.
The Ac/Ds transposon system from maize was used for insertional mutagenesis in tomato. Marker genes were employed for the selection of plants carrying a total of 471 unique Ds elements. Three mutants were obtained with Ds insertions closely linked to recessive mutations: feebly (fb), yellow jim (yj) and dopey (dp). The fb seedlings produced high anthocyanin levels, developed into small fragile plants, and were insensitive to the herbicide phosphinothricin. The yj plants had yellow leaves as a result of reduced levels of chlorophyll. The dp mutants completely or partially lacked inflorescences. The fb and yj loci were genetically linked to the Ds donor site on chromosome 3. Reactivation of the Ds element in the fb mutants by crosses with an Ac-containing line resulted in restoration of the wild-type phenotypes. Plant DNA fragments flanking both sides of the Ds element in the fb mutant were isolated by the inverse polymerase chain reaction. Molecular analysis showed that phenotypic reversions of fb were correlated with excisions of Ds. DNA sequence analysis of Fb reversion alleles showed the characteristic Ds footprints. Northern and cDNA sequence analysis indicated that transcription of the FEEBLY (FB) gene was impeded by the insertion of Ds in an intron. Comparison of the predicted amino acid sequence of the FB protein with other database sequences indicated that FB is a novel gene.
来自玉米的Ac/Ds转座子系统被用于番茄的插入诱变。利用标记基因筛选出携带总共471个独特Ds元件的植株。获得了3个Ds插入与隐性突变紧密连锁的突变体:虚弱(fb)、黄吉姆(yj)和迟钝(dp)。fb幼苗产生高水平花青素,发育成矮小脆弱的植株,并且对除草剂草丁膦不敏感。yj植株由于叶绿素水平降低而叶片发黄。dp突变体完全或部分缺乏花序。fb和yj位点在遗传上与第3号染色体上的Ds供体位点连锁。通过与含Ac品系杂交使fb突变体中的Ds元件重新激活,导致野生型表型恢复。通过反向聚合酶链反应分离出fb突变体中Ds元件两侧的植物DNA片段。分子分析表明,fb的表型回复与Ds的切除相关。Fb回复等位基因的DNA序列分析显示出特征性的Ds足迹。Northern分析和cDNA序列分析表明,Ds插入内含子阻碍了FEEBLY(FB)基因的转录。将FB蛋白的预测氨基酸序列与其他数据库序列进行比较表明,FB是一个新基因。