GEPHE SUMMARY Print
Gephebase Gene
Entry Status
Published
GepheID
GP00001535
Main curator
Prigent
PHENOTYPIC CHANGE
Trait Category
Trait State in Taxon A
Wheat susceptible to pathogens
Trait State in Taxon B
Wheat resistant to multiple pathogens
Ancestral State
Taxon A
Taxonomic Status
Taxon A
Common Name
bread wheat
Synonyms
Triticum aestivum subsp. aestivum; Triticum vulgare; bread wheat; Canadian hard winter wheat; common wheat; wheat; Triticum aestivum L.; Triticum vulgare L.; Triticum vulgare Vill., nom. illeg.; Tricum aestivum; Triticum aestivam; Triticum aestivum8
Rank
species
Lineage
Show more ... a; Tracheophyta; Euphyllophyta; Spermatophyta; Magnoliophyta; Mesangiospermae; Liliopsida; Petrosaviidae; commelinids; Poales; Poaceae; BOP clade; Pooideae; Triticodae; Triticeae; Triticinae; Triticum
NCBI Taxonomy ID
is Taxon A an Infraspecies?
No
Taxon B
Common Name
bread wheat
Synonyms
Triticum aestivum subsp. aestivum; Triticum vulgare; bread wheat; Canadian hard winter wheat; common wheat; wheat; Triticum aestivum L.; Triticum vulgare L.; Triticum vulgare Vill., nom. illeg.; Tricum aestivum; Triticum aestivam; Triticum aestivum8
Rank
species
Lineage
Show more ... a; Tracheophyta; Euphyllophyta; Spermatophyta; Magnoliophyta; Mesangiospermae; Liliopsida; Petrosaviidae; commelinids; Poales; Poaceae; BOP clade; Pooideae; Triticodae; Triticeae; Triticinae; Triticum
NCBI Taxonomy ID
is Taxon B an Infraspecies?
Yes
Taxon B Description
-
GENOTYPIC CHANGE
Generic Gene Name
-
Synonyms
-
String
-
Sequence Similarities
Belongs to the major facilitator superfamily. Sugar transporter (TC 2.A.1.1) family.
GO - Biological Process
-
UniProtKB
Triticum aestivum
GenebankID or UniProtKB
Presumptive Null
No
Molecular Type
Aberration Type
SNP
SNP Coding Change
Nonsynonymous
Molecular Details of the Mutation
Gly144Arg (exon 2) leads to a protein incapable of glucose import; LR67res exerts a dominant-negative effect through heterodimerization with these functional transporters to reduce glucose uptake.; alterations in hexose transport in infected leaves may explain its ability to reduce the growth of multiple biotrophic pathogen species
Experimental Evidence
Taxon A Taxon B Position
Codon - - -
Amino-acid - - -
Authors
Moore JW; Herrera-Foessel S; Lan C; Schnippenkoetter W; Ayliffe M; Huerta-Espino J; Lillemo M; Viccars L; et al. ... show more
Abstract
As there are numerous pathogen species that cause disease and limit yields of crops, such as wheat (Triticum aestivum), single genes that provide resistance to multiple pathogens are valuable in crop improvement. The mechanistic basis of multi-pathogen resistance is largely unknown. Here we use comparative genomics, mutagenesis and transformation to isolate the wheat Lr67 gene, which confers partial resistance to all three wheat rust pathogen species and powdery mildew. The Lr67 resistance gene encodes a predicted hexose transporter (LR67res) that differs from the susceptible form of the same protein (LR67sus) by two amino acids that are conserved in orthologous hexose transporters. Sugar uptake assays show that LR67sus, and related proteins encoded by homeoalleles, function as high-affinity glucose transporters. LR67res exerts a dominant-negative effect through heterodimerization with these functional transporters to reduce glucose uptake. Alterations in hexose transport in infected leaves may explain its ability to reduce the growth of multiple biotrophic pathogen species.
Additional References
RELATED GEPHE
Related Haplotypes
No matches found.
EXTERNAL LINKS
COMMENTS
Resistant allele of LR67 causes reduced hexose transport through a dominant-negative interference mechanism by forming inactive heteromultimeric protein complexes. The LR67res inhibition of hexose retrieval may mimic the ubiquitous plant response to pathogen invasion of elevated cell wall invertase activity which alters the extracellular apoplastic hexose/sucrose ratio and elicits a hexose-mediated defense response. Val387Leu (exon 3) is observed in the same haplotype but experimental replacement shows it is not responsible for the phenotype
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