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      • Here, the authors perform deep genome resequencing of 117 diverse accessions and reveal comprehensive models of apple origin, speciation, domestication, and fruit size evolution as well as candidate genes associated with important agronomic traits.
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  2. Aug 15, 2017 · Here, the authors perform deep genome resequencing of 117 diverse accessions and reveal comprehensive models of apple origin, speciation, domestication, and fruit size evolution as well as ...

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  3. Aug 15, 2017 · Human selection has reshaped crop genomes. Here we report an apple genome variation map generated through genome sequencing of 117 diverse accessions. A comprehensive model of apple speciation and domestication along the Silk Road is proposed based on evidence from diverse genomic analyses.

  4. Apple is one of the most important fruit crops. Here, the authors perform deep genome resequencing of 117 diverse accessions and reveal comprehensive models of apple origin, speciation, domestication, and fruit size evolution as well as candidate genes associated with important agronomic traits.

  5. Aug 15, 2017 · Genome re-sequencing reveals the history of apple and supports a two-stage model for fruit enlargement. ...

  6. An apple genome variation map generated through genome sequencing of 117 diverse accessions is reported and comprehensive models of apple origin, speciation, domestication, and fruit size evolution as well as candidate genes associated with important agronomic traits are revealed.

  7. Apr 2, 2019 · Duan, N. et al. Genome re-sequencing reveals the history of apple and supports a two-stage model for fruit enlargement. Nat. Commun. 8, 249 (2017).

  8. Aug 25, 2017 · Genome re-sequencing reveals the history of apple and supports a two-stage model for fruit enlargement. Cultivated apples (Malus domestica) trace their roots to Kazakhstan 4000 – 10,000 years ago, and since then have been propagated, transported, hybridized to other Malus species, and domesticated.

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