Department of Biology, University of Oxford, South Parks Rd, Oxford, OX1 3RB, UK.
Plant J. 2022 Oct;112(2):451-459. doi: 10.1111/tpj.15958. Epub 2022 Sep 13.
The search for genetic regulators of leaf venation patterning started over 30 years ago, primarily focused on mutant screens in the eudicotyledon Arabidopsis thaliana. Developmental perturbations in either cotyledons or true leaves led to the identification of transcription factors required to elaborate the characteristic reticulated vein network. An ortholog of one of these, the C2H2 zinc finger protein DEFECTIVELY ORGANIZED TRIBUTARIES 5 (AtDOT5), was recently identified through transcriptomics as a candidate regulator of parallel venation in maize (Zea mays) leaves. To elucidate how AtDOT5 regulates vein patterning, we generated three independent loss-of-function mutations by gene editing in Arabidopsis. Surprisingly, none of them exhibited any obvious phenotypic perturbations. To reconcile our findings with earlier reports, we re-evaluated the original Atdot5-1 and Atdot5-2 alleles. By genome sequencing, we show that reported mutations at the Atdot5-1 locus are actually polymorphisms between Landsberg erecta and Columbia ecotypes, and that other mutations present in the background most likely cause the pleiotropic mutant phenotype observed. We further show that a T-DNA insertion in the Atdot5-2 locus has no impact on leaf venation patterns when segregated from other T-DNA insertions present in the original line. We thus conclude that AtDOT5 plays no role in leaf venation patterning in Arabidopsis.
寻找叶片脉序模式形成的遗传调控因子的研究已经开展了 30 多年,主要集中在拟南芥等真双子叶植物的突变体筛选上。子叶或真叶的发育干扰导致了识别出精心制作特征网状叶脉网络所需的转录因子。其中一个转录因子的同源物,C2H2 锌指蛋白 DEFECTIVELY ORGANIZED TRIBUTARIES 5(AtDOT5),最近通过转录组学被鉴定为玉米(Zea mays)叶片平行脉序的候选调控因子。为了阐明 AtDOT5 如何调节叶脉模式,我们通过基因编辑在拟南芥中生成了三个独立的功能丧失突变体。令人惊讶的是,它们都没有表现出任何明显的表型干扰。为了使我们的发现与早期报道相协调,我们重新评估了原始的 Atdot5-1 和 Atdot5-2 等位基因。通过基因组测序,我们表明报告的 Atdot5-1 基因座的突变实际上是兰地伯格直立型和哥伦比亚生态型之间的多态性,而背景中存在的其他突变很可能导致观察到的多效突变表型。我们进一步表明,Atdot5-2 基因座中的 T-DNA 插入在与原始系中存在的其他 T-DNA 插入分离时,对叶片脉序模式没有影响。因此,我们得出结论,AtDOT5 在拟南芥叶片脉序模式形成中不起作用。