Literature DB >> 18614714

Manganese efficiency in barley: identification and characterization of the metal ion transporter HvIRT1.

Pai Pedas1, Cecilie K Ytting, Anja T Fuglsang, Thomas P Jahn, Jan K Schjoerring, Søren Husted.   

Abstract

Manganese (Mn) deficiency is an important plant nutritional disorder in many parts of the world. Barley (Hordeum vulgare) genotypes differ considerably in their ability to grow in soils with low Mn(2+) availability. Differential genotypic Mn efficiency can be attributed to differences in Mn(2+) uptake kinetics in the low nanomolar concentration range. However, the molecular basis for these differences has not yet been clarified. We present here the identification and characterization of the first barley gene encoding a plasma membrane-localized metal transport protein able to transport Mn(2+). The gene is designated HvIRT1 (for IRON-REGULATED TRANSPORTER1) because it belongs to the ZIP gene family and has a high similarity to rice (Oryza sativa) OsIRT1. A novel yeast uptake assay based on inductively coupled plasma-mass spectrometry analysis of 31 different metal and metalloid ions showed that the HvIRT1 protein, in addition to Mn(2+), also transported Fe(2+)/Fe(3+), Zn(2+), and Cd(2+). Both Mn and iron deficiency induced an up-regulation of HvIRT1 in two barley genotypes differing in Mn efficiency, but the expression levels in all cases were highest (up to 40%) in the Mn-efficient genotype. The higher expression of HvIRT1 correlated with an increased Mn(2+) uptake rate. We conclude that HvIRT1 is an important component controlling Mn(2+) uptake in barley roots and contributes to genotypic differences in Mn(2+) uptake kinetics.

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Year:  2008        PMID: 18614714      PMCID: PMC2528110          DOI: 10.1104/pp.108.118851

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  35 in total

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Journal:  Plant Cell       Date:  2002-06       Impact factor: 11.277

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  50 in total

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Journal:  Plant Signal Behav       Date:  2009-09-12

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4.  A combined zinc/cadmium sensor and zinc/cadmium export regulator in a heavy metal pump.

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5.  High-affinity manganese uptake by the metal transporter NRAMP1 is essential for Arabidopsis growth in low manganese conditions.

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6.  Over-expression of the MxIRT1 gene increases iron and zinc content in rice seeds.

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7.  The HvNramp5 Transporter Mediates Uptake of Cadmium and Manganese, But Not Iron.

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8.  Competition between uptake of ammonium and potassium in barley and Arabidopsis roots: molecular mechanisms and physiological consequences.

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10.  Manganese deficiency leads to genotype-specific changes in fluorescence induction kinetics and state transitions.

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Journal:  Plant Physiol       Date:  2009-04-15       Impact factor: 8.340

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