1] Japan Science and Technology Agency, PRESTO, 4-1-8 Honcho, Kawaguchi, Saitama 332-0012, Japan [2] Research Institute for Bioresources and Biotechnology, Ishikawa Prefectural University, 1-308 Suematsu, Nonoichi, Ishikawa 921-8836, Japan.
Nat Commun. 2013;4:2792. doi: 10.1038/ncomms3792.
Iron is essential for most living organisms. Plants transcriptionally induce genes involved in iron acquisition under conditions of low iron availability, but the nature of the deficiency signal and its sensors are unknown. Here we report the identification of new iron regulators in rice, designated Oryza sativa Haemerythrin motif-containing Really Interesting New Gene (RING)- and Zinc-finger protein 1 (OsHRZ1) and OsHRZ2. OsHRZ1, OsHRZ2 and their Arabidopsis homologue BRUTUS bind iron and zinc, and possess ubiquitination activity. OsHRZ1 and OsHRZ2 are susceptible to degradation in roots irrespective of iron conditions. OsHRZ-knockdown plants exhibit substantial tolerance to iron deficiency, and accumulate more iron in their shoots and grains irrespective of soil iron conditions. The expression of iron deficiency-inducible genes involved in iron utilization is enhanced in OsHRZ-knockdown plants, mostly under iron-sufficient conditions. These results suggest that OsHRZ1 and OsHRZ2 are iron-binding sensors that negatively regulate iron acquisition under conditions of iron sufficiency.
铁对于大多数生物都是必不可少的。在缺铁条件下,植物会转录诱导与铁吸收有关的基因,但缺乏信号的本质及其传感器尚不清楚。在这里,我们报告了在水稻中鉴定出的新的铁调节因子,称为水稻含血晶素基序的 RING 和锌指蛋白 1(OsHRZ1)和 OsHRZ2。OsHRZ1、OsHRZ2 和它们的拟南芥同源物 BRUTUS 结合铁和锌,并具有泛素化活性。OsHRZ1 和 OsHRZ2 在根中无论铁条件如何都容易降解。OsHRZ 敲低植物对缺铁表现出很强的耐受性,并且在不考虑土壤铁条件的情况下,其地上部分和籽粒中积累了更多的铁。在 OsHRZ 敲低植物中,与铁利用有关的缺铁诱导基因的表达增强,主要是在铁充足的条件下。这些结果表明,OsHRZ1 和 OsHRZ2 是铁结合传感器,在铁充足的条件下负调控铁的摄取。