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December 10, 2025Nature Communications10 citationsOpen Access

The bHLH transcription factor PIL1 orchestrates starch synthesis in key cereal crops

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YMYanjun MengJCJiaqu CuiWZWenbo Zeng

Key Points

  • This research aims to identify the role of the transcription factor PIL1 in starch synthesis in cereal crops.
  • Identified TaPIL1-5D and its interaction with starch synthesis genes in wheat.
  • Analyzed grain yields in wheat and rice over two years.
  • Studied the haplotypes of TaPIL1-5B and their regulatory effects.
  • TaPIL1-5D enhances grain starch synthesis in wheat and rice.
  • PIL1 significantly improves grain yields over two growing seasons.
  • Three distinct haplotypes of TaPIL1-5B were identified, each influencing expression.

Abstract

Key cereal crops, including wheat, rice and maize, supply nearly 50% of the world's caloric intake, with starch constituting over 70% of the grain weight. However, the regulatory mechanisms underlying starch synthesis are poorly understood. In this study, we identify a transcription factor TaPIL1-5D, which binds to the promoters of ADP-glucose pyrophosphorylase small subunit 1 (TaAGPS1a-7A), granule-bound starch synthase I (TaGBSSI-4A), and branching enzyme II b (TaBEIIb-2D). Similarly, its homologous OsPIL11 and ZmPIL1 also activate the expression of the AGPS1, BEIIb, and GBSSI, and positively regulates grain starch synthesis. TaPIL1-5D and ZmPIL1 improve grain yields in two successive years. Nine alleles of TaPIL1-5B form three distinct haplotypes (Hap1-3), while TaPIL1-5B-Hap1 is repressed due to its binding by the transcriptional repressor TaBZR1.1. Additionally, TaPIL1-5B interacts with TaPIL1-5D in the nucleus, enhancing its transcriptional activation. Collectively, our study enriches the starch regulatory network and provides a promising tool for improving starch content.

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Cite This Study

Meng et al. (2025) studied this question.

synapsesocial.com/papers/69401b3d2d562116f28f8211https://doi.org/10.1038/s41467-025-67200-x
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1The Phytochrome-Interacting Factor OsPIL11 Coordinates Grain Weight and Grain Number Via Directly Regulating the Expression of OsMIR530 and OsCKX2 in Rice2025
  2. 2NUCLEAR FACTOR-Y–POLYCOMB REPRESSIVE COMPLEX2 dynamically orchestrates starch and seed storage protein biosynthesis in wheat2024 · 31 citations
  3. 3bHLH Transcription Factors in Cereal Crops: Diverse Functions in Regulating Growth, Development and Stress Responses2025
  4. 4The Phytochrome-Interacting Factor OsPIL11 Coordinates Grain Weight and Grain Number via Directly Regulating the Expression of OsMIR530 and OsCKX2 in Rice2025
  5. 5Deciphering the Transcriptional Regulatory Network Governing Starch and Storage Protein Biosynthesis in Wheat for Breeding Improvement2024 · 22 citations