Department of Biological Sciences, Dartmouth College, Hanover, New Hampshire, United States of America.
PLoS Genet. 2013 Nov;9(11):e1003953. doi: 10.1371/journal.pgen.1003953. Epub 2013 Nov 21.
Iron is essential for photosynthesis and is often a limiting nutrient for plant productivity. Plants respond to conditions of iron deficiency by increasing transcript abundance of key genes involved in iron homeostasis, but only a few regulators of these genes have been identified. Using genome-wide expression analysis, we searched for transcription factors that are induced within 24 hours after transferring plants to iron-deficient growth conditions. Out of nearly 100 transcription factors shown to be up-regulated, we identified MYB10 and MYB72 as the most highly induced transcription factors. Here, we show that MYB10 and MYB72 are functionally redundant and are required for plant survival in alkaline soil where iron availability is greatly restricted. myb10myb72 double mutants fail to induce transcript accumulation of the nicotianamine synthase gene NAS4. Both myb10myb72 mutants and nas4-1 mutants have reduced iron concentrations, chlorophyll levels, and shoot mass under iron-limiting conditions, indicating that these genes are essential for proper plant growth. The double myb10myb72 mutant also showed nickel and zinc sensitivity, similar to the nas4 mutant. Ectopic expression of NAS4 rescues myb10myb72 plants, suggesting that loss of NAS4 is the primary defect in these plants and emphasizes the importance of nicotianamine, an iron chelator, in iron homeostasis. Overall, our results provide evidence that MYB10 and MYB72 act early in the iron-deficiency regulatory cascade to drive gene expression of NAS4 and are essential for plant survival under iron deficiency.
铁对于光合作用至关重要,通常是植物生产力的限制营养物质。当植物受到缺铁条件的影响时,会通过增加与铁稳态相关的关键基因的转录丰度来做出反应,但仅有少数这些基因的调节剂已被鉴定出来。使用全基因组表达分析,我们在将植物转移到缺铁生长条件后的 24 小时内,寻找被诱导的转录因子。在将近 100 个被证明上调的转录因子中,我们鉴定出 MYB10 和 MYB72 是诱导程度最高的转录因子。在这里,我们表明 MYB10 和 MYB72 是功能冗余的,并且在碱性土壤中是植物生存所必需的,因为在这种土壤中铁的可用性受到极大限制。myb10myb72 双突变体无法诱导尼克酰胺合成酶基因 NAS4 的转录积累。在缺铁条件下,myb10myb72 双突变体和 nas4-1 突变体的铁浓度、叶绿素水平和茎质量都降低,表明这些基因对于植物的正常生长是必不可少的。双突变体 myb10myb72 还表现出对镍和锌的敏感性,类似于 nas4 突变体。NAS4 的异位表达挽救了 myb10myb72 植物,这表明 NAS4 的缺失是这些植物的主要缺陷,并强调了铁螯合剂尼克酰胺在铁稳态中的重要性。总的来说,我们的结果提供了证据表明,MYB10 和 MYB72 在缺铁调节级联反应的早期阶段起作用,以驱动 NAS4 的基因表达,并且在缺铁条件下对于植物的生存是必不可少的。