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May 16, 2026Advanced Science2 citationsOpen Access

eQTL Meta‐Analysis Reveals Conserved and Population‐Specific Regulatory Variation Underlying Nutritional Trait Evolution and Domestication in Tomato

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JZJ Y ZhaoXWXin WangJZJ Zhang

Key Points

  • This research aims to explore genetic variation in transcriptional regulation and its impact on nutritional traits in tomato plants.
  • Conducted a comprehensive meta-analysis of eQTLs across five tomato populations.
  • Constructed a genome-wide atlas of 40,928 eQTLs, including 9,463 cis- and 31,465 trans-eQTLs.
  • Analyzed associations between eQTLs and transcription factors, focusing on genes related to fruits' nutritional quality.
  • Identified thousands of eQTLs, with a significant portion linked to transcription factors.
  • Strong cis-eQTLs predominantly control genes related to sugars, organic acids, carotenoids, and folates.
  • Revealed a MYB12-centered regulatory network linking flavonoid and folate biosynthesis, affecting reduced folate in pink-fruited tomatoes.

Abstract

ABSTRACT Deciphering how genetic variation shapes transcriptional regulation is key to understanding the regulatory architecture of complex crop traits. Here, we present a comprehensive meta‐analysis of expression quantitative trait loci (eQTLs) across five diverse tomato populations. We construct a genome‐wide atlas of 40 928 eQTLs, comprising 9463 cis‐ and 31 465 trans‐ eQTLs, and reveal thousands of loci detectable only through meta‐analysis. A substantial fraction of these eQTLs is associated with transcription factors (TFs), including a co‐regulated cluster of two TFs and one transcriptional regulator targeted by a shared trans ‐eQTL hotspot harboring a key enzyme gene in gibberellin biosynthesis. Genes underlying nutritional quality traits, including sugars, organic acids, carotenoids, and folates, are predominantly controlled by strong cis ‐eQTLs. We further delineate a MYB12 ‐centered regulatory network coordinating flavonoid metabolism that also extends to folate biosynthesis. Remarkably, MYB12 functions as a trans ‐regulator linking flavonoid and folate pathways, contributing to the reduced folate content characteristic of pink‐fruited tomatoes. Together, this eQTL meta‐analysis provides a high‐resolution regulatory map of transcriptional variation in tomato and highlights key regulators of fruit nutritional quality, providing biological insights and practical targets for crop improvement.

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Cite This Study

Zhao et al. (2026) studied this question.

synapsesocial.com/papers/6a0809f1a487c87a6a40bcd0https://doi.org/10.1002/advs.202519899
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