首页> 外文会议>Journal of Integrative Plant Biology vol.48 no.1 2006 >Further Analysis of the Function of AtBHLH29 in Regulating the Iron Uptake Process in Arabidopsis thaliana
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Further Analysis of the Function of AtBHLH29 in Regulating the Iron Uptake Process in Arabidopsis thaliana

机译:AtBHLH29在调节拟南芥中铁吸收过程中功能的进一步分析

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Using T-DNA insertion and chemical mutants, two recent studies have shown that AtBHLH29, encoding a putative basic helix-loop-helix (BHLH) protein, is involved in regulating the iron uptake process in Arabidopsis thaliana. Herein, we report that RNA interference (RNAi) mutants can be used to reveal more accurately the genetic function of AtBHLH29, We compared the iron deficiency responses of seven RNAi strains that contained decreasing amounts of AtBHLH29 transcripts. Under high iron conditions (50 μmoi/L iron), only in the most severe RNAi strains (R101, R111, and R119) was plant growth significantly retarded. However, these mutants could still survive and produce seeds. This suggests that the function of AtBHLH29 is beneficial, but not absolutely essential, to plant growth when iron supply is not limiting. Under low iron conditions (less than 10 μmoI/L iron), the R111 and R119 strains died prematurely, demonstrating that AtBHLH29 is absolutely necessary for plant survival when iron supply is restricted. The transcription of AtBHLH29 was essential for the expression of AtFRO2 (encoding the ferric chelate reductase). In contrast, the expression of AtlRTI (encoding the high-affinity iron transporter) was not so strongly dependent upon the transcription of AtBHLH29. By transient expression, we found that the AtBHLH29-GUS fusion protein was targeted specifically to the nucleus in plant cells. Interestingly, the nuclear localization of AtBHLH29-GUS was abolished when the four consecutive arginine residues located in the basic region of the putative AtBHLH29 protein were replaced by alanine residues by metagenesis. The implications of our findings on further studies of the mechanism underlying the function of AtBHLH29 are discussed.
机译:使用T-DNA插入和化学突变体,两项最新研究表明,编码假定的基本螺旋-环-螺旋(BHLH)蛋白的AtBHLH29参与调节拟南芥中铁的吸收过程。在本文中,我们报道了RNA干扰(RNAi)突变体可用于更准确地揭示AtBHLH29的遗传功能。我们比较了7种RNAi菌株的铁缺乏反应,这些菌株的AtBHLH29转录物数量减少。在高铁条件下(50μmoi/ L铁),仅在最严重的RNAi菌株(R101,R111和R119)中,植物的生长才显着受阻。但是,这些突变体仍然可以存活并产生种子。这表明在铁供应不受限制的情况下,AtBHLH29的功能对植物生长有益但并非绝对必要。在低铁条件下(铁含量低于10μmoI/ L),R111和R119菌株过早死亡,表明在铁供应受到限制的情况下,AtBHLH29对于植物生存是绝对必要的。 AtBHLH29的转录对于AtFRO2(编码铁螯合物还原酶)的表达至关重要。相反,AtlRTI(编码高亲和力铁转运蛋白)的表达不是很强烈地依赖于AtBHLH29的转录。通过瞬时表达,我们发现AtBHLH29-GUS融合蛋白被专门针对植物细胞的细胞核。有趣的是,当通过假定的代谢将位于推定的AtBHLH29蛋白基本区域中的四个连续的精氨酸残基替换为丙氨酸残基时,AtBHLH29-GUS的核定位被取消。讨论了我们的发现对进一步研究AtBHLH29的功能基础机制的意义。

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