Department of Biochemistry and Metabolism, John Innes Centre, Norwich, NR4 7UH, UK.
School of Biological Sciences, University of East Anglia, Norwich, NR4 7TJ, UK.
Plant J. 2024 Jan;117(2):590-598. doi: 10.1111/tpj.16514. Epub 2023 Oct 26.
The Pisum sativum (pea) mutants degenerate leaves (dgl) and bronze (brz) accumulate large amounts of iron in leaves. First described several decades ago, the two mutants have provided important insights into iron homeostasis in plants but the underlying mutations have remained unknown. Using exome sequencing we identified an in-frame deletion associated with dgl in a BRUTUS homolog. The deletion is absent from wild type and the original parent line. BRUTUS belongs to a small family of E3 ubiquitin ligases acting as negative regulators of iron uptake in plants. The brz mutation was previously mapped to chromosome 4, and superimposing this region to the pea genome sequence uncovered a mutation in OPT3, encoding an oligopeptide transporter with a plant-specific role in metal transport. The causal nature of the mutations was confirmed by additional genetic analyses. Identification of the mutated genes rationalizes many of the previously described phenotypes and provides new insights into shoot-to-root signaling of iron deficiency. Furthermore, the non-lethal mutations in these essential genes suggest new strategies for biofortification of crops with iron.
豌豆突变体退化叶片(dgl)和青铜(brz)在叶片中积累大量铁。这两种突变体几十年前首次被描述,为植物中铁的稳态提供了重要的见解,但潜在的突变仍然未知。我们使用外显子组测序鉴定了一个与 dgl 相关的框内缺失突变,该突变位于 BRUTUS 同源物中。该缺失在野生型和原始亲本系中不存在。BRUTUS 属于一小类 E3 泛素连接酶家族,作为植物中铁摄取的负调节剂。brz 突变先前被定位在 4 号染色体上,将该区域叠加到豌豆基因组序列上,揭示了 OPT3 中的一个突变,该基因编码一种寡肽转运体,在金属转运中具有植物特异性的作用。通过额外的遗传分析证实了突变的因果关系。突变基因的鉴定使许多以前描述的表型合理化,并为缺铁的地上部到根部信号提供了新的见解。此外,这些必需基因中的非致死突变为用铁对作物进行生物强化提供了新的策略。