Cadmium interference with iron sensing reveals transcriptional programs sensitive and insensitive to reactive oxygen species

Author:

McInturf Samuel A1,Khan Mather A1ORCID,Gokul Arun2,Castro-Guerrero Norma A1ORCID,Höhner Ricarda3,Li Jiamei4,Marjault Henri-Baptiste5,Fichman Yosef1,Kunz Hans-Henning36ORCID,Goggin Fiona L4,Keyster Marshall2,Nechushtai Rachel5,Mittler Ron1,Mendoza-Cózatl David G12ORCID

Affiliation:

1. Division of Plant Sciences, C.S. Bond Life Sciences Center, University of Missouri, Columbia, MO 65211, USA

2. Environmental Biotechnology Laboratory, Department of Biotechnology, University of the Western Cape, Bellville, Cape Town, 7535, South Africa

3. School of Biological Sciences, Washington State University, PO Box 644236, Pullman, WA 99164-4236, USA

4. Department of Entomology and Plant Pathology, 217 Plant Sciences Building, University of Arkansas System Division of Agriculture, Fayetteville, AR 72701, USA

5. Institute of Life Science, The Hebrew University of Jerusalem, Jerusalem, 91904Israel

6. Biozentrum der LMU München, Germany

Abstract

Abstract Iron (Fe) is an essential micronutrient whose uptake is tightly regulated to prevent either deficiency or toxicity. Cadmium (Cd) is a non-essential element that induces both Fe deficiency and toxicity; however, the mechanisms behind these Fe/Cd-induced responses are still elusive. Here we explored Cd- and Fe-associated responses in wild-type Arabidopsis and in a mutant that overaccumulates Fe (opt3-2). Gene expression profiling revealed a large overlap between transcripts induced by Fe deficiency and Cd exposure. Interestingly, the use of opt3-2 allowed us to identify additional gene clusters originally induced by Cd in the wild type but repressed in the opt3-2 background. Based on the high levels of H2O2 found in opt3-2, we propose a model where reactive oxygen species prevent the induction of genes that are induced in the wild type by either Fe deficiency or Cd. Interestingly, a defined cluster of Fe-responsive genes was found to be insensitive to this negative feedback, suggesting that their induction by Cd is more likely to be the result of an impaired Fe sensing. Overall, our data suggest that Fe deficiency responses are governed by multiple inputs and that a hierarchical regulation of Fe homeostasis prevents the induction of specific networks when Fe and H2O2 levels are elevated.

Funder

National Science Foundation

National Research Foundation, South Africa

DST-NRF Centre of Excellence in Food Security award

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

Reference73 articles.

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