AI Article Synopsis

  • - The study investigates the molecular mechanisms of heterosis in rice by analyzing 418 hybrids created from two testers and 265 rice varieties, revealing that the effectiveness of heterosis is influenced by genetic backgrounds and environmental conditions.
  • - Findings indicate that nonadditive quantitative trait loci (QTLs) are the primary genetic factors contributing to heterosis, showing greater sensitivity to genetic backgrounds than additive QTLs.
  • - The researchers propose a new model called homo-insufficiency under insufficient background (HoIIB), suggesting that heterosis arises not from the advantages of heterozygotes but from disadvantages of homozygotes in poor genetic contexts, offering insights for future hybrid rice breeding strategies.

Article Abstract

Background: Heterosis is widely used in agriculture. However, its molecular mechanisms are still unclear in plants. Here, we develop, sequence, and record the phenotypes of 418 hybrids from crosses between two testers and 265 rice varieties from a mini-core collection.

Results: Phenotypic analysis shows that heterosis is dependent on genetic backgrounds and environments. By genome-wide association study of 418 hybrids and their parents, we find that nonadditive QTLs are the main genetic contributors to heterosis. We show that nonadditive QTLs are more sensitive to the genetic background and environment than additive ones. Further simulations and experimental analysis support a novel mechanism, homo-insufficiency under insufficient background (HoIIB), underlying heterosis. We propose heterosis in most cases is not due to heterozygote advantage but homozygote disadvantage under the insufficient genetic background.

Conclusion: The HoIIB model elucidates that genetic background insufficiency is the intrinsic mechanism of background dependence, and also the core mechanism of nonadditive effects and heterosis. This model can explain most known hypotheses and phenomena about heterosis, and thus provides a novel theory for hybrid rice breeding in future.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9773586PMC
http://dx.doi.org/10.1186/s13059-022-02822-8DOI Listing

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