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Data from: The plasticity of NBS resistance genes in sorghum is driven by multiple evolutionary processes

Domain:

agriculture

Record type:

dataset
Creator:
MacTaiInnGod
Publisher:
Dry
Host:avatar
Background: Increased disease resistance is a key target of cereal breeding programs, with disease outbreaks continuing to threaten global food production, particularly in Africa. Of the disease resistance gene families, the nucleotide-binding site plus leucine-rich repeat (NBS-LRR) family is the most prevalent and ancient and is also one of the largest gene families known in plants. The sequence diversity in NBS-encoding genes was explored in sorghum, a critical food staple in Africa, with comparisons to rice and maize and with comparisons to fungal pathogen resistance QTL. Results: In sorghum, NBS-encoding genes had significantly higher diversity in comparison to non NBS-encoding genes and were significantly enriched in regions of the genome under purifying and balancing selection, both through domestication and improvement. Ancestral genes, pre-dating species divergence, were more abundant in regions with signatures of selection than in regions not under selection. Sorghum NBS-encoding genes were also significantly enriched in the regions of the genome containing fungal pathogen disease resistance QTL; with the diversity of the NBS-encoding genes influenced by the type of co-locating biotic stress resistance QTL. Conclusions: NBS-encoding genes are under strong selection pressure in sorghum, through the contrasting evolutionary processes of purifying and balancing selection. Such contrasting evolutionary processes have impacted ancestral genes more than species-specific genes. Fungal disease resistance hot-spots in the genome, with resistance against multiple pathogens, provides further insight into the mechanisms that cereals use in the “arms race” with rapidly evolving pathogens in addition to providing plant breeders with selection targets for fast-tracking the development of high performing varieties with more durable pathogen resistance. Protein sequences of NBS genes in diverse sorghum genotypesProtein sequences of NBS-genes in sorghum for 47 sorghum genotypesone_gene_47samples_protein_masked_20130909.tarMultiple sequence alignments of sorghum NBS genesMultiple sequence alignments of NBS genes identified in the sorghum genomesb.aa.domain.PF00931.alnPhylogenetic tree of NBS genes in sorghumPhylogenetic tree constructed using TreeBest based on the PFAM00931 domain of the NBS genes in the sorghum genomesb..aa.domain.PF00931.fasta.tree.treAlignments of NBS genes across sorghum, maize and riceMultiple sequence alignment of PFAM00931 domains of NBS genes identified in sorghum, maize and rice genomessb.zm.os.aa.domain.PF00931.alnPhylogenetic tree of NBS genes across sorghum, maize and ricePhylogenetic tree, constructed using TreeBest, based on the PFAM00931 domain of NBS genes identified in sorghum, maize and ricesb.zm.os.aa.domain.PF00931.fasta.tree.tre

Visit

doi.orgdatadryad.org

Tags

SorghumcerealsZea maysQTLRiceMaizeNBS-LRR genesOryza sativaSorghum bicolordisease resistance+2

Licenses

Creative Commons Zero v1.0 Universalhttps://creativecommons.org/publicdomain/zero/1.0/legalcode

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