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Spliceosome buffers cryptic genetic variation to enforce phenotypic robustness in Arabidopsis.

Created on 16 Jul 2026

Authors

Xudong Shang, Jiawei Pei, Yan Li, Ying Guo, Renshen Yuan, Qingmeng Xiao, Jing Wu, Qi Li, Ying Cao, Ligeng Ma

Published in

Science advances. Volume 12. Issue 29. Pages eaed7513. Jul 17, 2026. Epub Jul 15, 2026.

Abstract

Cryptic genetic variations (CGVs), which are phenotypically silent under normal conditions, can compromise phenotypic robustness when unmasked. Canalization buffers CGV to stabilize phenotypes, yet the underlying molecular mechanisms remain largely unknown. Here, we show that alternative splicing acts as a canalization mechanism in Arabidopsis. A natural single-nucleotide polymorphism in the functionally unknown gene Hidden Killer 1 (HIKI1) behaves as CGV and disrupts embryonic robustness dependent on genetic background when SKIP is compromised among natural Arabidopsis populations. SKIP-containing spliceosome rescues CGV-perturbed HIKI1 pre-messenger RNA alternative splicing, thereby buffering the CGV and restoring normal embryogenesis. This buffering extends to postembryonic traits, demonstrating that alternative splicing is a general canalization mechanism. Our findings reveal how genetic decoding machinery maintains phenotypic robustness despite hidden variations and open previously unexplored routes for unlocking species-wide genetic potential and tuning trait penetrance.

PMID:
42455939
Bibliographic data and abstract were imported from PubMed on 16 Jul 2026.

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