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首页> 外文期刊>Cell research. >AtbHLH29 of Arabidopsis thaliana is a functional ortholog of tomato FER involved in controlling irqn acquisition in strategy I plants
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AtbHLH29 of Arabidopsis thaliana is a functional ortholog of tomato FER involved in controlling irqn acquisition in strategy I plants

机译:拟南芥的AtbHLH29是番茄FER的功能直系同源基因,参与控制策略I植物的irqn获取

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AtbHLH29 of Arabidopsis, encoding a bHLH protein, reveals a high similarity to the tomato FER which is proposed as a transcriptional regulator involved in controlling the iron deficiency responses and the iron uptake in tomato. For identification of its biological functions, AtbHLH29 was introduced into the genome of the tomato FER mutant T3238fer mediated by Agrobacterium tumefaciencs. Transgenic plants were regenerated and the stable integration ofAtbHLH29 into their genomes was confirmed by Southern hybridization. Molecular analysis demonstrated that expression of the exogenous AtbHLH29 of Arabidopsis in roots of the FER mutant T3238/er enabled to complement the defect functions of FER. The transgenic plants regained the ability to activate the whole iron deficiency responses and showed normal growth as the wild type under iron-limiting stress. Our transformation data demonstrate that AtbHLH29 is a functional ortholog of the tomato FER and can completely replace FER in controlling the effectiveiron acquisition in tomato. Except of iron, FER protein was directly or indirectly involved in manganese homeostasis due to that loss functions of FER in T3238/er resulted in strong reduction of Mn content in leaves and the defect function on Mn accumulation in leaves was complemented by expression of AtbHLH29 in the transgenic plants. Identification of the similar biological functions of FER and AtbHLH29, which isolated from two systematically wide-diverged "strategy I" plants, suggests that FER mightbe a universal gene presented in all strategy I plants in controlling effective iron acquisition system in roots.
机译:拟南芥的AtbHLH29编码bHLH蛋白,与番茄FER具有高度相似性,后者被认为是转录调控因子,参与控制番茄中的铁缺乏反应和铁吸收。为了鉴定其生物学功能,将AtbHLH29引入根癌农杆菌介导的番茄FER突变体T3238fer的基因组中。再生了转基因植物,并且通过Southern杂交证实了AtbHLH29稳定整合到其基因组中。分子分析表明,拟南芥外源AtbHLH29在FER突变体T3238 / er的根中表达能够补充FER的缺陷功能。转基因植物恢复了激活整个铁缺乏反应的能力,并且在铁限制胁迫下表现出正常的野生型生长。我们的转化数据表明AtbHLH29是番茄FER的功能直系同源物,可以完全替代FER来控制番茄中有效铁的获取。除铁外,FER蛋白直接或间接参与了锰的体内稳态,这是由于FER在T3238 / er中的丧失功能导致了叶片中Mn含量的强烈降低,而叶片中Mn积累的缺陷功能由AtbHLH29的表达所弥补。转基因植物。从两个系统广泛的“策略I”植物中分离出的FER和AtbHLH29具有相似的生物学功能,这表明FER可能是所有策略I植物中存在的通用基因,可以控制根中的有效铁吸收系统。

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