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Deoxymugineic acid increases Zn translocation in Zn-deficient rice plants.
- Source :
-
Plant molecular biology [Plant Mol Biol] 2008 Apr; Vol. 66 (6), pp. 609-17. Date of Electronic Publication: 2008 Jan 26. - Publication Year :
- 2008
-
Abstract
- Deoxymugineic acid (DMA) is a member of the mugineic acid family phytosiderophores (MAs), which are natural metal chelators produced by graminaceous plants. Rice secretes DMA in response to Fe deficiency to take up Fe in the form of Fe(III)-MAs complex. In contrast with barley, the roots of which secrete MAs in response to Zn deficiency, the amount of DMA secreted by rice roots was slightly decreased under conditions of low Zn supply. There was a concomitant increase in endogenous DMA in rice shoots, suggesting that DMA plays a role in the translocation of Zn within Zn-deficient rice plants. The expression of OsNAS1 and OsNAS2 was not increased in Zn-deficient roots but that of OsNAS3 was increased in Zn-deficient roots and shoots. The expression of OsNAAT1 was also increased in Zn-deficient roots and dramatically increased in shoots; correspondingly, HPLC analysis was unable to detect nicotianamine in Zn-deficient shoots. The expression of OsDMAS1 was increased in Zn-deficient shoots. Analyses using the positron-emitting tracer imaging system (PETIS) showed that Zn-deficient rice roots absorbed less (62)Zn-DMA than (62)Zn(2+). Importantly, supply of (62)Zn-DMA rather than (62)Zn(2+) increased the translocation of (62)Zn into the leaves of Zn-deficient plants. This was especially evident in the discrimination center (DC). These results suggest that DMA in Zn-deficient rice plants has an important role in the distribution of Zn within the plant rather than in the absorption of Zn from the soil.
- Subjects :
- Alkyl and Aryl Transferases genetics
Alkyl and Aryl Transferases metabolism
Azetidinecarboxylic Acid chemistry
Azetidinecarboxylic Acid metabolism
Biological Transport physiology
Blotting, Northern
Iron metabolism
Niacinamide metabolism
Oryza enzymology
Oryza genetics
Plant Proteins genetics
Plant Proteins metabolism
Plant Roots genetics
Plant Roots metabolism
Plant Shoots genetics
Plant Shoots metabolism
Transaminases genetics
Transaminases metabolism
Azetidinecarboxylic Acid analogs & derivatives
Oryza metabolism
Zinc metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 0167-4412
- Volume :
- 66
- Issue :
- 6
- Database :
- MEDLINE
- Journal :
- Plant molecular biology
- Publication Type :
- Academic Journal
- Accession number :
- 18224446
- Full Text :
- https://doi.org/10.1007/s11103-008-9292-x