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Persimmon's six-copy genome reveals its wild-to-orchard journey

Crop Improvement

The persimmon ripening on a tree in your yard each fall carries six copies of every chromosome instead of the usual two, and scientists just figured out how that genetic complexity built the sweet, orange fruit we know.

Persimmons are unusual because their cells carry six copies of each chromosome instead of the typical two, a condition called hexaploidy. Researchers sequenced the full genomes of a wild diploid persimmon relative, a four-copy species, and the cultivated six-copy persimmon, then compared them alongside DNA from 256 persimmon varieties to trace how the fruit's genetics changed as ancient farmers selected and bred it over generations.

Key Findings

1

Chromosome-scale genome assemblies were completed for three persimmon relatives spanning a diploid (2x), tetraploid (4x), and hexaploid (6x) ploidy series

2

Whole-genome resequencing data was generated for 256 cultivated Diospyros kaki varieties plus wild relatives, creating a large dataset for domestication studies

3

The assemblies combined PacBio HiFi long-read, Illumina short-read, and Hi-C chromosome-conformation sequencing for high-quality, chromosome-level genome maps

chevron_right Technical Summary

Scientists have mapped the complete genetic blueprints of three persimmon species with different chromosome counts, from wild diploid ancestors to the six-copy-genome fruit we eat today, revealing how this fruit tree evolved and was domesticated.

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Abstract Preview

Original paper

Genomic insights into the evolution and domestication of persimmon

This project releases genomic resources for persimmon (Diospyros) generated to study autopolyploid evolution and domestication. We produced chromosome-scale genome assemblies and gene annotations f...

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Abstract copyright held by the original publisher.

hub This connects to 12 other discoveries — Persimmon, Diospyros rhombifolia, Diospyros kaki crop-improvement, genomics, food-forest +1 more 5 related articles

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