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Updated: Aug 5, 2026

Efficient and Rapid Isolation of Early-stage Embryos from Arabidopsis thaliana Seeds
Published on: June 7, 2013
TIE1 acts as a maternal brake on fertilization-independent endosperm development by associating with PRC2 to enforce
Zeliang Zhang1, Xinxue Wang1, Rongrong Yuan1
1State Key Laboratory of Gene Function and Modulation Research, School of Life Sciences, Peking University, Beijing, People's Republic of China.
Abstract:
Fully autonomous apomixis with fertilization-independent embryo and endosperm development enables the production of clonal seeds to fix crop hybrid vigour. However, the mechanisms underlying autonomous endosperm development remain unclear. Here we show that TIE1 acts as a maternally expressed transcriptional repressor inhibiting autonomous endosperm. The disruption of four TIEs in tie1 tie2 tie3 tie4 (tieQ) mutants triggers the development of autonomous endosperm, recapitulating the phenotypes observed in fertilization-independent seeds (fis)-class mutants. TIE1 exhibits maternal genomic imprinting similar to MEDEA (MEA) that encodes a core component of the FIS-POLYCOMB REPRESSIVE COMPLEX 2 (PRC2). TIE1 recruits FIS-PRC2 to transcriptionally silence a subset of its target genes whose activation would otherwise trigger endosperm development in the absence of fertilization. Our findings reveal a maternally controlled brake mechanism that prevents autonomous endosperm development, providing both a molecular framework for understanding apomictic seed formation and a possible tool for engineering synthetic apomixis to fix heterosis in crops.
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