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April 1, 2026Horticulture Research0 citationsOpen Access

Genomic divergence, adaptation, and the genetic basis of quality traits in ancient walnut landraces and wild relatives

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XLXiang LuoXinjiang Production and Construction CorpsZGZhe GuoMinistry of EducationQJQiang JinXinjiang Production and Construction Corps

Key Points

  • This study aims to elucidate the genetic architecture of quality traits in walnuts and understand their population differentiation.
  • Performed whole-genome resequencing of 282 walnut accessions
  • Categorized walnuts into groups based on genetic differentiation
  • Analyzed deleterious mutations and their patterns
  • Conducted genome-wide association studies to identify key loci
  • Functionally validated a gene related to shell thickness
  • Identified distinct genetic groups among wild walnuts and ancient landraces
  • Found evidence of shared origin between ancient landraces and Middle Eastern wild walnuts
  • Uncovered contrasting accumulation patterns of mutations shaped by demographic history
  • Highlighted key loci associated with quality traits
  • Validated a gene as a significant regulator of shell thickness

Abstract

Abstract Elucidating the genetic architecture of key quality traits and understanding population differentiation in walnut (Juglans regia) are critical for advancing molecular breeding and enhancing environmental adaptability. In this study, we performed whole-genome resequencing of 282 representative walnut accessions encompassing wild populations, ancient landraces, and modern cultivars. Walnuts in Xinjiang exhibit clear genetic differentiation and can be categorized into two main groups: wild walnuts from Yili and ancient landraces from Aksu, Kashi, and Hotan. The Yili region in northern Xinjiang, China, represents an independent center of walnut genetic diversity. In contrast, the ancient landraces and cultivated walnuts from other regions of Xinjiang are closely related to wild walnuts from the Middle East, suggesting a shared origin. Analysis of deleterious mutations uncovered contrasting accumulation patterns between Wild-YiliChina and Ancient Landrace-XinjiangChina groups, likely shaped by demographic history and local environmental adaptation. Genome-wide association studies (GWAS) identified key loci and candidate genes, including JruL2x, JrCRK26 and JrRHF2A, that are associated with important quality traits. Furthermore, we functionally validated JrCYP98A2, which encodes a ferulate 5-hydroxylase, as a regulator of shell thickness. Together, these findings provide insights into walnut domestication and the genetic basis of quality trait variation, offering valuable genomic resources for future molecular breeding and genetic improvement of walnut.

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Cite This Study

Luo et al. (2026) studied this question.

synapsesocial.com/papers/69cd7ad45652765b073a8526https://doi.org/10.1093/hr/uhag082
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