Diploid/Polyploid Syntenic Shuttle Mapping and Haplotype-Specific Chromosome Walking Toward a Rust Resistance Gene (Bru1) in Highly Polyploid Sugarcane (2n ∼ 12x ∼ 115)

Author:

Le Cunff Loïc1,Garsmeur Olivier1,Raboin Louis Marie2,Pauquet Jérome1,Telismart Hugues2,Selvi Athiappan13,Grivet Laurent1,Philippe Romain1,Begum Dilara4,Deu Monique1,Costet Laurent2,Wing Rod4,Glaszmann Jean Christophe1,D'Hont Angélique1

Affiliation:

1. CIRAD, UMR DAP, 34398 Montpellier, Cedex 5, France

2. CIRAD, UMR PVBMT, Pôle de Protection des Plantes, 97410 Saint-Pierre, Réunion, France

3. Sugarcane Breeding Institute, Coimbatore 641007, India and

4. Clemson University Genomics Institute, Clemson, South Carolina 29634-5727

Abstract

Abstract The genome of modern sugarcane cultivars is highly polyploid (∼12x), aneuploid, of interspecific origin, and contains 10 Gb of DNA. Its size and complexity represent a major challenge for the isolation of agronomically important genes. Here we report on the first attempt to isolate a gene from sugarcane by map-based cloning, targeting a durable major rust resistance gene (Bru1). We describe the genomic strategies that we have developed to overcome constraints associated with high polyploidy in the successive steps of map-based cloning approaches, including diploid/polyploid syntenic shuttle mapping with two model diploid species (sorghum and rice) and haplotype-specific chromosome walking. Their applications allowed us (i) to develop a high-resolution map including markers at 0.28 and 0.14 cM on both sides and 13 markers cosegregating with Bru1 and (ii) to develop a physical map of the target haplotype that still includes two gaps at this stage due to the discovery of an insertion specific to this haplotype. These approaches will pave the way for the development of future map-based cloning approaches for sugarcane and other complex polyploid species.

Publisher

Oxford University Press (OUP)

Subject

Genetics

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