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Four chromosome scale genomes and a pan-genome annotation to accelerate pecan tree breeding.


ABSTRACT: Genome-enabled biotechnologies have the potential to accelerate breeding efforts in long-lived perennial crop species. Despite the transformative potential of molecular tools in pecan and other outcrossing tree species, highly heterozygous genomes, significant presence-absence gene content variation, and histories of interspecific hybridization have constrained breeding efforts. To overcome these challenges, here, we present diploid genome assemblies and annotations of four outbred pecan genotypes, including a PacBio HiFi chromosome-scale assembly of both haplotypes of the 'Pawnee' cultivar. Comparative analysis and pan-genome integration reveal substantial and likely adaptive interspecific genomic introgressions, including an over-retained haplotype introgressed from bitternut hickory into pecan breeding pedigrees. Further, by leveraging our pan-genome presence-absence and functional annotation database among genomes and within the two outbred haplotypes of the 'Lakota' genome, we identify candidate genes for pest and pathogen resistance. Combined, these analyses and resources highlight significant progress towards functional and quantitative genomics in highly diverse and outbred crops.

SUBMITTER: Lovell JT 

PROVIDER: S-EPMC8257795 | biostudies-literature | 2021 Jul

REPOSITORIES: biostudies-literature

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Four chromosome scale genomes and a pan-genome annotation to accelerate pecan tree breeding.

Lovell John T JT   Bentley Nolan B NB   Bhattarai Gaurab G   Jenkins Jerry W JW   Sreedasyam Avinash A   Alarcon Yanina Y   Bock Clive C   Boston Lori Beth LB   Carlson Joseph J   Cervantes Kimberly K   Clermont Kristen K   Duke Sara S   Krom Nick N   Kubenka Keith K   Mamidi Sujan S   Mattison Christopher P CP   Monteros Maria J MJ   Pisani Cristina C   Plott Christopher C   Rajasekar Shanmugam S   Rhein Hormat Shadgou HS   Rohla Charles C   Song Mingzhou M   Hilaire Rolston St RS   Shu Shengqiang S   Wells Lenny L   Webber Jenell J   Heerema Richard J RJ   Klein Patricia E PE   Conner Patrick P   Wang Xinwang X   Grauke L J LJ   Grimwood Jane J   Schmutz Jeremy J   Randall Jennifer J JJ  

Nature communications 20210705 1


Genome-enabled biotechnologies have the potential to accelerate breeding efforts in long-lived perennial crop species. Despite the transformative potential of molecular tools in pecan and other outcrossing tree species, highly heterozygous genomes, significant presence-absence gene content variation, and histories of interspecific hybridization have constrained breeding efforts. To overcome these challenges, here, we present diploid genome assemblies and annotations of four outbred pecan genotyp  ...[more]

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