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December 14, 2025Nature Communications6 citationsOpen Access

SPOROCYTELESS/NOZZLE cooperates with MADS-domain transcription factors to regulate an auxin-dependent network controlling Megaspore-Mother-Cell differentiation

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ACAlex CavalleriCAChiara AstoriSMSilvia Manrique

Key Points

  • This research aims to elucidate the regulatory mechanisms of Megaspore Mother Cell differentiation led by SPL/NZZ.
  • Utilized a multi-omics approach to analyze SPL/NZZ targets.
  • Investigated interactions with MADS-domain transcription factor complexes.
  • Examined complementation and mutant lines to understand SPL/NZZ functionality.
  • Identified differentiation pathways controlled by SPL/NZZ in MMC development.
  • Demonstrated direct interaction of SPL/NZZ with MADS-domain factors.
  • Elucidated an auxin-dependent network critical for MMC differentiation.

Abstract

Abstract The formation of the female gamete is a complex developmental process that begins with the differentiation of the Megaspore Mother Cell (MMC) within the ovule. SPOROCYTELESS/NOZZLE (SPL/NZZ) is the principal regulator of the MMC formation, as mutations in the SPL/NZZ gene lead to the failure of the MMC differentiation. Nonetheless, the SPL/NZZ-dependent regulatory pathway governing the MMC development remains largely unknown. Using a multi-omics approach, we identify direct SPL/NZZ targets and their downstream network. We discover that SPL/NZZ interacts with ovule-identity MADS-domain transcription factor complexes to regulate the expression of common target genes. By integrating the omics data with the analysis of either complementation or mutant lines, we describe a comprehensive regulatory mechanism in which SPL/NZZ controls the differentiation of the MMC by acting on an auxin-dependent downstream network.

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Cite This Study

Cavalleri et al. (2025) studied this question.

synapsesocial.com/papers/6941aaa70f5af7fd17df4ae1https://doi.org/10.1038/s41467-025-67343-x
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