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A Reference-Quality NLRome for the Hexaploid Sweetpotato and Diploid Wild Relatives. | LitMetric

A Reference-Quality NLRome for the Hexaploid Sweetpotato and Diploid Wild Relatives.

Mol Plant Microbe Interact

North Carolina State University at Raleigh, Department of Entomology and Plant Pathology and NC Plant Sciences Initiative, 4122 Plant Sciences Building, Campus Box 7825, 840 Oval Drive, Raleigh, North Carolina, United States, 27606;

Published: July 2025


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Article Abstract

Breeding for sweetpotato () resistance requires accelerating our understanding of genomic sources of resistance. Nucleotide-binding domain leucine-rich repeat receptors (NLRs) proteins represent a key component of the plant immune system that mediate plant immune responses. We cataloged the NLR diversity in 32 hexaploid sweetpotato genotypes and three diploid wild relatives using resistance gene enrichment sequencing (RenSeq) to capture and sequence full NLRs. A custom designed NLR bait-library enriched NLR genes with an average 97% target capture rate. We employed a curated database of cloned and functionally characterized NLRs to assign sequenced sweetpotato NLRs to canonical phylogenetic clades. We identified between 800 to 1,200 complete NLRs, highlighting the expanded diversity of coiled-coil NLRs (CNLs) across all genotypes. NLRs among sweetpotato genotypes exhibited large conservation across genotypes. Phylogenetic distance between 6X (hexaploid) and 2X (diploid) genotypes revealed that a small repertoire of CNLs diverged from the sweetpotato wild relatives. Finally, we obtained chromosome coordinates in hexaploid (Beauregard) and diploid () genomes and recorded clustering of NLRs on chromosomes arms. Our study provides a catalog of NLR genes that can be used to accelerate breeding and increase our understanding of evolutionary dynamics of sweetpotato NLRs.

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Source
http://dx.doi.org/10.1094/MPMI-03-25-0034-RDOI Listing

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