,bHLH121 Functions as a Direct Link that Facilitates the Activation of FIT by bHLH IVc Transcription

来源 :分子植物(英文版) | 被引量 : 0次 | 上传用户:s307403419
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Iron (Fe) deficiency is prevalent in plants grown in neutral or alkaline soil.Plants have evolved sophisticated mechanisms that regulate Fe homeostasis,ensuring survival.In Arabidopsis,FER-LIKE IRON DEFICIENCY-INDUCED TRANSCRIPTION FACTOR (FIT) is a crucial regulator of Fe-deficiency response.F/T is activated indirectly by basic helix-loop-helix (bHLH) IVc transcription factors (TFs) under Fe deficiency;however,it remains unclear which protein(s) act as the linker to mediate the activation of FIT by bHLH IVc TFs.In this study,we characterize the functions of bHLH121 and demonstrate that it directly associates with the FIT promoter.We found that loss-of-function mutations of bHLH121 cause severe Fedeficiency symptoms,reduced Fe accumulation,and disrupted expression of genes associated with Fe homeostasis.Genetic analysis showed that FIT is epistatic to bHLH121 and FIT overexpression partially rescues the bhlh121 mutant.Further investigations revealed that bHLH IVc TFs interact with and promote nuclear accumulation of bHLH121.We demonstrated that bHLH121 has DNA-binding activity and can bind the promoters of the FIT and bHLH Ib genes,but we did not find that it has either direct transcriptional activation or repression activity toward these genes.Meanwhile,we found that bHLH121 functions downstream of and is a direct target of bHLH IVc TFs,and its expression is induced by Fe deficiency in a bHLH IVc-dependent manner.Taken together,these results establish that bHLH121 functions together with bHLH IVc TFs to positively regulate the expression of FIT and thus plays a pivotal role in maintaining Fe homeostasis in Arabidopsis.
其他文献
土壤酶和微生物共同推动土壤的代谢过程。许多国内外学者运用土壤酶来监测外源污染物对土壤生态系统的扰动,取得了令人满意的研究结果。氯苯类有机物在环境中广泛存在,由于其
PHOTOPERIODIC CONTROL OF HYPOCOTYL 1 (PCH1) and PCH1-LIKE (PCHL) were shown to directly bind to phytochrome B (phyB) and suppress phyB thermal reversion,resulti
本文重点是对液体改良剂(康地宝、盐碱丰)改良碱土进行最基本的理论研究,方法以室内土柱淋溶模拟为主,采集有代表性的碱土分析其成分后,采用不同浓度的改良液(水+改良剂)定量淋洗,收
Plant immunity is controlled by both positive regulators such as PBS3 and EDS1 and negative regulators such as NPR3 and NPR4.However,the relationships among the