Laboratory of Genomics and Genetic Improvement, MED, FCT, Universidade do Algarve, Campus de Gambelas, 8005-139 Faro, Portugal.
Corte Velada Investimentos, Monte Ruivo, PB 552X, 8600-237 Odiáxere, Portugal.
Genes (Basel). 2021 Oct 23;12(11):1680. doi: 10.3390/genes12111680.
The spontaneously emerging rogue phenotype in peas ( L.), characterized by narrow and pointed leaf stipula and leaflets, was the first identified case of the epigenetic phenomenon paramutation. The crosses of homozygous or heterozygous (e.g., F1) rogue plants with non-rogue (wild type) plants, produce exclusively rogue plants in the first and all subsequent generations. The fact that the wild phenotype disappears forever, is in clear contradiction with the Mendelian rules of inheritance, a situation that impedes the positional cloning of genes involved in this epigenetic phenomenon. One way of overcoming this obstacle is the identification of plant genotypes harboring naturally occurring or artificially induced neutral alleles, non-sensitive to paramutation. So far, such alleles have never been described for the pea rogue paramutation. Here, we report the induction via 1-ethyl-1-nitrosourea (ENU) mutagenesis of a non-rogue revertant mutant in the rogue cv. Progreta, and the completely unusual fixation of the induced non-rogue phenotype through several generations. The reversion of the methylation status of two previously identified differentially methylated genomic sequences in the induced non-rogue mutant, confirms that the rogue paramutation is accompanied by alterations in DNA methylation. Nevertheless, unexpectedly, the induced non-rogue mutant showed to be still sensitive to paramutation.
豌豆(L.)中自发出现的流氓表型,其特征是狭窄而尖锐的叶托叶和小叶,是第一个被确定的表观遗传现象——拟突变的案例。纯合或杂合(例如 F1)的流氓植物与非流氓(野生型)植物的杂交,在第一代和所有后续代中只会产生流氓植物。野生表型永远消失的事实,与孟德尔遗传规律明显矛盾,这种情况阻碍了参与这种表观遗传现象的基因的定位克隆。克服这一障碍的一种方法是鉴定天然存在或人工诱导的中性等位基因的植物基因型,这些等位基因对拟突变不敏感。到目前为止,豌豆流氓拟突变从未描述过这种等位基因。在这里,我们报告了通过 1-乙基-1-亚硝脲(ENU)诱变在流氓 cv. Progreta 中诱导非流氓回复突变体,并通过几代人的时间完全固定诱导的非流氓表型。在诱导的非流氓突变体中,两个先前鉴定的差异甲基化基因组序列的甲基化状态的回复,证实了流氓拟突变伴随着 DNA 甲基化的改变。然而,出人意料的是,诱导的非流氓突变体仍然对拟突变敏感。