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Biology subjects

Brainard, S. H.

Publications and source records attributed to Brainard, S. H..

2 recordsLinked to original sources

The first two chromosome-scale genome assemblies of American hazelnut enable comparative genomic analysis of the genus Corylus

The native, perennial shrub American hazelnut (Corylus americana) is cultivated in the Midwestern U.S. for its significant ecological benefits, as well as its high-value nut crop. Implementation of modern breeding methods and quantitative genetic analyses of C. americana requires high-quality reference genomes, a resource that is currently lacking. We therefore developed the first chromosome-scale assemblies for this species using the accessions Rush and Winkler. Genomes were assembled using HiFi PacBio reads and Arima Hi-C data, and Oxford Nanopore reads and a high-density genetic map were used to perform error correction. N50 scores are 31.9 Mb and 35.3 Mb, with 90.2% and 97.1% of the total genome assembled into the 11 pseudomolecules, for Rush and Winkler, respectively. Gene prediction was performed using custom RNAseq libraries and protein homology data. Rush has a BUSCO score of 99.0 for its assembly and 99.0 for its annotation, while Winkler had corresponding scores of 96.9 and 96.5, indicating high-quality assemblies. These two independent assemblies enable unbiased assessment of structural variation within C. americana, as well as patterns of syntenic relationships across the Corylus genus. Furthermore, we identified high-density SNP marker sets from genotyping-by-sequencing data using 1,343 C. americana, C. avellana, and C. americana x C. avellana hybrids, in order to assess population structure in natural and breeding populations. Finally, the transcriptomes of these assemblies, as well as several other recently published Corylus genomes, were utilized to perform phylogenetic analysis of sporophytic self-incompatibility (SSI) in hazelnut, providing evidence of unique molecular pathways governing self-incompatibility in Corylus.

plant biology↗

Improving selection efficiency in C. americana x C. avellana interspecific hybrids through the development of an indel-based genetic map

This study reports a genetic map created using a progeny family descended from the interspecific hazelnut cross Corylus avellana x Corylus americana. This research represents a critical step in the development of genomic tools that enable the deployment of next-generation sequencing methods in the breeding of hazelnut, specifically the improvement of well-adapted Midwestern hazelnut varieties. To produce this map, we first developed high-density molecular markers using short-read Illumina sequencing of genotype-by-sequencing libraries. By aligning reads to a newly assembled reference genome for C. americana, we were able to identify over 75,000 high-quality indel-based polymorphisms across an F1 experimental population. These markers exhibited both high allele depth coverage, and low linkage disequilibrium, making them well-suited to genetic map development. We constructed such a map using 95 individuals from a single F1 family, demonstrating the utility of next-generation sequencing to efficiently and accurately generate high-density genetic maps. This research will improve the efficiency of breeding efforts, both through the validation of specific molecular markers that are associated with agronomically-relevant traits in breeding populations of interest.

genetics↗