Abstract
A. halleri, is a model species to study molecular evolutionary mechanisms related to zinc hypertolerance and hyperaccumulation, due to its close relatedness with A. thaliana which is zinc sensitive and non-accumulator. Here, we comparatively characterised in both species, two zinc homeostasis and/or zinc tolerance related genes sub-families: the Metal Tolerance Protein 1 (MTP1) and the Plant defensins type I (PDF1). Genomic analyses revealed that the copy number of these genes is increased in A. halleri compared to A. thaliana. It was thus tempting to relate the acquisition of zinc hypertolerance in A. halleri to these gene duplications. However, the assumption was invalidated by functional analyses. For instance, some of the AhMTP1 or AhPDF1 proteins induced weak or no zinc tolerance to yeast. More importantly, transcripts of many AhMTP1 or AhPDF1 genes were either not accumulated or were very poorly expressed in A. halleri. These results indicate that different members of these gene sub-families are not equally functional. It is thus expected that these gene duplicates are undergoing different evolutionary fates regarding zinc tolerance. Besides helping to understand the molecular evolutionary mechanisms, studying zinc-related genes in A. halleri may also help developing strategies like phytoremediation and biofortification.