Long-read genome sequencing accelerated the cloning ofPm69by resolving the complexity of a rapidly evolving resistance gene cluster in wheat

Author:

Li YinghuiORCID,Wei Zhen-Zhen,Sela HananORCID,Govta LiubovORCID,Klymiuk ValentynaORCID,Roychowdhury RajibORCID,Chawla Harmeet SinghORCID,Ens JenniferORCID,Wiebe KrystaleeORCID,Bocharova ValeriaORCID,Ben-David Roi,Pawar Prerna B.,Jaiwar Samidha,Molnár IstvánORCID,Doležel JaroslavORCID,Pozniak Curtis J.ORCID,Fahima TzionORCID

Abstract

AbstractGene cloning in repeat-rich polyploid genomes remains challenging. Here we describe a strategy for overcoming major bottlenecks in the cloning of the powdery mildew (Pm) resistance gene (R-gene)Pm69derived from tetraploid wild emmer wheat (WEW). A conventional positional cloning approach encountered suppressed recombination due to structural variations, while chromosome sorting yielded an insufficient purity level. APm69physical map, constructed by assembling ONT long-read genome sequences, revealed a rapidly evolving nucleotide-binding leucine-rich repeat (NLR) R-gene cluster. A single candidate NLR was identified within this cluster by anchoring RNASeq reads of susceptible mutants to ONT contigs and was validated by the virus-induced gene silencing (VIGS) approach.Pm69, comprising Rx_N with RanGAP interaction sites, NB-ARC, and LRR domains, is probably a newly evolved NLR discovered only in one location across the WEW distribution range in the Fertile Crescent.Pm69was successfully introgressed into durum and bread wheat, and a diagnostic molecular marker could be used to accelerate its deployment and pyramiding with other resistance genes.

Publisher

Cold Spring Harbor Laboratory

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