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BRUTUS and its paralogs BTS LIKE1 and BTS LIKE2 encode important negative regulators of the iron deficiency response in Arabidopsis thaliana

机译:BRUTUS及其旁系同源物BTS LIKE1和BTS LIKE2编码拟南芥中铁缺乏反应的重要负调控因子

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摘要

Iron (Fe) is required for plant health, but it can also be toxic when present in excess. Therefore, Fe levels must be tightly controlled. The Arabidopsis thaliana E3 ligase BRUTUS (BTS) is involved in the negative regulation of the Fe deficiency response and we show here that the two A. thaliana BTS paralogs, BTS LIKE1 (BTSL1) and BTS LIKE2 (BTSL2) encode proteins that act redundantly as negative regulators of the Fe deficiency response. Loss of both of these E3 ligases enhances tolerance to Fe deficiency. We further generated a triple mutant with loss of both BTS paralogs and a partial loss of BTS expression that exhibits even greater tolerance to Fe-deficient conditions and increased Fe accumulation without any resulting Fe toxicity effects. Finally, we identified a mutant carrying a novel missense mutation of BTS that exhibits an Fe deficiency response in the root when grown under both Fe-deficient and Fe-sufficient conditions, leading to Fe toxicity when plants are grown under Fe-sufficient conditions.
机译:铁(Fe)是植物健康所必需的,但铁含量过多时也可能有毒。因此,必须严格控制铁含量。拟南芥E3连接酶BRUTUS(BTS)参与了对铁缺乏反应的负调控,我们在这里显示了两个拟南芥BTS旁系同源物BTS LIKE1(BTSL1)和BTS LIKE2(BTSL2)编码的蛋白质冗余地充当铁缺乏反应的负调节剂。这两种E3连接酶的缺失增强了对铁缺乏的耐受性。我们进一步产生了一个三重突变体,它既失去了BTS旁系同源物又失去了部分BTS表达,从而对铁缺乏条件表现出更大的耐受性,并增加了铁的积累,而没有任何铁毒性作用。最后,我们确定了一个携带新型BTS错义突变的突变体,该突变体在既缺铁又缺铁的条件下生长时,在根部表现出缺铁反应,当植物在缺铁条件下生长时会导致中毒。

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