Cloning of the broadly effective wheat leaf rust resistance gene Lr42 transferred from Aegilops tauschii

Author:

Lin GuifangORCID,Chen HuiORCID,Tian BinORCID,Sehgal Sunish K.,Singh Lovepreet,Xie JingzhongORCID,Rawat Nidhi,Juliana PhilominORCID,Singh NarinderORCID,Shrestha SandeshORCID,Wilson Duane L.,Shult Hannah,Lee Hyeonju,Schoen Adam William,Tiwari Vijay K.,Singh Ravi P.ORCID,Guttieri Mary J.,Trick Harold N.ORCID,Poland JesseORCID,Bowden Robert L.ORCID,Bai GuihuaORCID,Gill BikramORCID,Liu SanzhenORCID

Abstract

AbstractThe wheat wild relative Aegilops tauschii was previously used to transfer the Lr42 leaf rust resistance gene into bread wheat. Lr42 confers resistance at both seedling and adult stages, and it is broadly effective against all leaf rust races tested to date. Lr42 has been used extensively in the CIMMYT international wheat breeding program with resulting cultivars deployed in several countries. Here, using a bulked segregant RNA-Seq (BSR-Seq) mapping strategy, we identify three candidate genes for Lr42. Overexpression of a nucleotide-binding site leucine-rich repeat (NLR) gene AET1Gv20040300 induces strong resistance to leaf rust in wheat and a mutation of the gene disrupted the resistance. The Lr42 resistance allele is rare in Ae. tauschii and likely arose from ectopic recombination. Cloning of Lr42 provides diagnostic markers and over 1000 CIMMYT wheat lines carrying Lr42 have been developed documenting its widespread use and impact in crop improvement.

Funder

United States Department of Agriculture | Agricultural Research Service

National Science Foundation

NSF | BIO | Division of Integrative Organismal Systems

Kansas Wheat Commission

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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