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PMID: 20003133 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Two functionally distinct members of the MATE (multi-drug and toxic compound extrusion) family of transporters potentially underlie two major aluminum tolerance QTLs in maize.

The Plant journal : for cell and molecular biology ·Vol. 61 ·No. 5 ·2010-03-00 ·Pages 728-40

Maron LG, Piñeros MA, Guimarães CT, Magalhaes JV, Pleiman JK, Mao C, Shaff J, Belicuas SN, Kochian LV

Abstract

Crop yields are significantly reduced by aluminum (Al) toxicity on acidic soils, which comprise up to 50% of the world's arable land. Al-activated release of ligands (such as organic acids) from the roots is a major Al tolerance mechanism in plants. In maize, Al-activated root citrate exudation plays an important role in tolerance. However, maize Al tolerance is a complex trait involving multiple genes and physiological mechanisms. Recently, transporters from the MATE family have been shown to mediate Al-activated citrate exudation in a number of plant species. Here we describe the cloning and characterization of two MATE family members in maize, ZmMATE1 and ZmMATE2, which co-localize to major Al tolerance QTL. Both genes encode plasma membrane proteins that mediate significant anion efflux when expressed in Xenopus oocytes. ZmMATE1 expression is mostly concentrated in root tissues, is up-regulated by Al and is significantly higher in Al-tolerant maize genotypes. In contrast, ZmMATE2 expression is not specifically localized to any particular tissue and does not respond to Al. [(14)C]-citrate efflux experiments in oocytes demonstrate that ZmMATE1 is a citrate transporter. In addition, ZmMATE1 expression confers a significant increase in Al tolerance in transgenic Arabidopsis. Our data suggests that ZmMATE1 is a functional homolog of the Al tolerance genes recently characterized in sorghum, barley and Arabidopsis, and is likely to underlie the largest maize Al tolerance QTL found on chromosome 6. However, ZmMATE2 most likely does not encode a citrate transporter, and could be involved in a novel Al tolerance mechanism.

MeSH Terms
Aluminum/toxicity Amino Acid Sequence Animals Arabidopsis/genetics,metabolism Carrier Proteins/genetics,metabolism Chromosome Mapping Cloning, Molecular Gene Expression Regulation, Plant Molecular Sequence Data Oocytes Organic Anion Transporters/genetics,metabolism Plant Proteins/genetics,metabolism Plants, Genetically Modified/genetics,metabolism Quantitative Trait Loci RNA, Plant/genetics Sequence Alignment Xenopus Zea mays/genetics,metabolism
Chemicals
Carrier Proteins Organic Anion Transporters Plant Proteins RNA, Plant citrate-binding transport protein Aluminum
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Maron Lyza G
Robert W. Holley Center for Agriculture and Health, USDA Agricultural Research Service, Cornell University, Ithaca, NY 14853, USA.
Piñeros Miguel A
Guimarães Claudia T
Magalhaes Jurandir V
Pleiman Jennifer K
Mao Chuanzao
Shaff Jon
Belicuas Silvia N J
Kochian Leon V
Article Info
Journal
The Plant journal : for cell and molecular biology
Abbr.
Plant J
ISSN
1365-313X
Published
2010-03-00
Epub
2009-00-10
Pages
728-40
Language
English
Region
England
NLM ID
9207397
Subset
IM
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