The BRUTUS-LIKE E3 ligases BTSL1 and BTSL2 fine-tune transcriptional responses to balance Fe and Zn homeostasis
Stanton, C.; Rodriguez-Celma, J.; Kraemer, U.; Sanders, D.; Balk, J.
Show abstract
The mineral micronutrients zinc (Zn) and iron (Fe) are essential for plant growth and human nutrition, but interactions between the homeostatic networks of these two elements are not fully understood. Here we show that loss-of-function of BTSL1 and BTSL2, which encode partially redundant E3 ubiquitin ligases that negatively regulate Fe uptake, confers tolerance to Zn excess in Arabidopsis thaliana. Double btsl1 btsl2 mutant seedlings grown on high Zn medium accumulated similar amounts of Zn in roots and shoots as the wild type, but suppressed the accumulation of excess Fe in roots. RNA-seq analysis showed that roots of mutant seedlings had relatively higher expression of genes involved in Fe uptake (IRT1, FRO2, NAS) and in Zn storage (MTP3, ZIF1). Surprisingly, mutant shoots did not show the transcriptional Fe-deficiency response which is normally induced by Zn excess. Split-root experiments suggested that within roots the BTSL proteins act locally and downstream of systemic Fe deficiency signals. Together, our data show that constitutive low-level induction of the Fe-deficiency response protects btsl1 btsl2 mutants from Zn toxicity. We propose that BTSL protein function is disadvantageous in situations of external Zn and Fe imbalances, and formulate a general model for Zn-Fe interactions in plants. HighlightMutation of two E3 ligases that suppress iron uptake in roots also confers tolerance to zinc toxicity, identifying a regulatory point of interaction between iron and zinc homeostasis.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Cadmium interference with iron sensing reveals transcriptional programs sensitive and insensitive to reactive oxygen species 98%
- IBA endogenous auxin regulates Arabidopsis root system development in a glutathione-dependent way and is important for adaptation to phosphate deprivation. 96%
- Arabidopsis thaliana Zn2+-efflux ATPases HMA2 and HMA4 are required for resistance to the necrotrophic fungus Plectosphaerella cucumerina BMM 95%
Similar papers in this journal
- Specific redox and iron homeostasis responses in the root tip of Arabidopsis upon zinc excess 98%
- Cross species multi-omics reveals cell wall sequestration and elevated global transcription as mechanisms of boron tolerance in plants 96%
- A Phosphorus-Limitation Induced, Functionally Conserved DUF506 Protein is a Repressor of Root Hair Elongation in Arabidopsis thaliana 95%
Similar papers in this journal
- Protein lysine methylation is involved in modulating the response of sensitive and tolerant Arabidopsis species to cadmium stress 96%
- An amiRNA screen uncovers redundant CBF & ERF34/35 transcription factors that differentially regulate arsenite and cadmium responses 96%
- Medicago truncatula Yellow Stripe-Like7 encodes a peptide transporter required for symbiotic nitrogen fixation 95%
Similar papers in this journal
- Altered metal distribution in the sr45-1 Arabidopsis mutant causes developmental defects 98%
- Integrative spatial transcriptomic analysis pinpoints the role of the ferroxidase, TaMCO3, in wheat root tip iron mobilization 97%
- Ferroportin 3 is a dual-targeted mitochondrial/chloroplast iron exporter necessary for iron homeostasis in Arabidopsis 96%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.