MIR156 Participates in Iron Homeostasis Through Targeting SPL9/SPL15 in Arabidopsis Thaliana
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Summary
Two homologous RNA-binding proteins play different roles in carotenoid biosynthesis and stress adaptation in Lotus japonicus.
- Type
- article
- Published
- 2015-01-01
- Cited by
- 1
- References
- 141
- Access
- Open access
- OpenAlex
- https://openalex.org/W309363136
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:82125397
Keywords
Arabidopsis thaliana, Arabidopsis, Biology, Phytochemical, Lotus japonicus
References
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- Iron uptake, trafficking and homeostasis in plants
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- A ferric-chelate reductase for iron uptake from soils
- The IRT1 protein from Arabidopsis thaliana is a metal transporter with a broad substrate range
- MicroRNA‐Based Biotechnology for Plant Improvement
- Iron stress in plants
- Iron deficiency in infancy and childhood.
- Transcriptome analysis by GeneTrail revealed regulation of functional categories in response to alterations of iron homeostasis in Arabidopsis thaliana
- Anemia and iron deficiency in heart failure.
- Arabidopsis bHLH100 and bHLH101 Control Iron Homeostasis via a FIT-Independent Pathway
- Enhanced seed carotenoid levels and branching in transgenic Brassica napus expressing the Arabidopsis miR156b gene.
- The Essential Basic Helix-Loop-Helix Protein FIT1 Is Required for the Iron Deficiency Response
- MicroRNA regulation of gene expression in plants.
- Structure and Function of Plant-Type Ferredoxins
- Interaction between the bHLH Transcription Factor FIT and ETHYLENE INSENSITIVE3/ETHYLENE INSENSITIVE3-LIKE1 Reveals Molecular Linkage between the Regulation of Iron Acquisition and Ethylene Signaling in Arabidopsis[C][W]
- Simultaneous Fe- and Cu-deficiency synergically accelerates the induction of several Fe-deficiency stress responses in Strategy I plants
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