Isolated ferric reductase defective polypeptides and uses thereof
Novel molecules of the multi-drug and toxin efflux (MATE) family of molecules, designated herein as mutant ferric reductase defective (FRD3) nucleic acid and protein molecules are disclosed. The FRD3 nucleic acid and protein molecules are useful as modulating agents in regulating metal homeostasis, e.g., iron homeostasis. The invention further describes transgenic plants in which expression of a FRD3 polypeptide of the invention is altered. Compositions containing FRD3 molecules and methods of using such molecules are also provided.
1. An isolated ferric reductase defective (FRD3) polypeptide comprising the amino acid sequence selected from the group consisting of the amino acid sequence set forth in SEQ ID NO:3, 6, and 9.
2. A transgenic plant comprising an isolated FRD3 polypeptide, wherein the FRD3 polypeptide comprises the amino acid sequence selected from the group consisting of the amino acid sequence set forth in SEQ ID NO:3, 6, and 9.
3. The transgenic plant of claim 2 , wherein the plant is selected from the group consisting of maize, wheat, rye, sorghum, cassava, beans, rice, beans, and peas.
4. A method for modulating metal concentration in a medium containing the metal, comprising:
(a) providing the transgenic plant of claim 2 ; and
(b) contacting the transgenic plant with the medium, such that the metal concentration in the medium is modulated.
5. A method for removing a pollutant from soil, comprising contacting the transgenic plant of claim 2 with the soil such that the pollutant is removed from the soil.
6. The method of claim 5 , wherein the pollutant is a metal.
7. The method of claim 6 , wherein the metal is selected from the group consisting of As, Pb, Co, Cd, Hg, Zn, and Cu.
8. A method for promoting plant growth, comprising introducing into a plant the isolated FRD3 polypeptide of claim 1 .