PIF4 interacts with ABI4 to serve as a transcriptional activator complex to promote seed dormancy by enhancing ABA biosynthesis and signaling

Author:

Luo Xiaofeng12ORCID,Dai Yujia12ORCID,Xian Baoshan12ORCID,Xu Jiahui1ORCID,Zhang Ranran1ORCID,Rehmani Muhammad Saad1ORCID,Zheng Chuan1ORCID,Zhao Xiaoting1ORCID,Mao Kaitao1ORCID,Ren Xiaotong1ORCID,Wei Shaowei12ORCID,Wang Lei12ORCID,He Juan12ORCID,Tan Weiming3ORCID,Du Junbo4ORCID,Liu Weiguo4ORCID,Yuan Shu5ORCID,Shu Kai12ORCID

Affiliation:

1. Shaanxi Key Laboratory of Qinling Ecological Intelligent Monitoring and Protection, School of Ecology and Environment Northwestern Polytechnical University Xi'an 710129 China

2. Research & Development Institute of Northwestern Polytechnical University in Shenzhen Shenzhen 518057 China

3. College of Agronomy and Biotechnology China Agricultural University Beijing 100193 China

4. Institute of Ecological Agriculture Sichuan Agricultural University Chengdu 611130 China

5. College of Resources Sichuan Agricultural University Chengdu 611130 China

Abstract

ABSTRACTTranscriptional regulation plays a key role in the control of seed dormancy, and many transcription factors (TFs) have been documented. However, the mechanisms underlying the interactions between different TFs within a transcriptional complex regulating seed dormancy remain largely unknown. Here, we showed that TF PHYTOCHROME‐INTERACTING FACTOR4 (PIF4) physically interacted with the abscisic acid (ABA) signaling responsive TF ABSCISIC ACID INSENSITIVE4 (ABI4) to act as a transcriptional complex to promote ABA biosynthesis and signaling, finally deepening primary seed dormancy. Both pif4 and abi4 single mutants exhibited a decreased primary seed dormancy phenotype, with a synergistic effect in the pif4/abi4 double mutant. PIF4 binds to ABI4 to form a heterodimer, and ABI4 stabilizes PIF4 at the protein level, whereas PIF4 does not affect the protein stabilization of ABI4. Subsequently, both TFs independently and synergistically promoted the expression of ABI4 and NCED6, a key gene for ABA anabolism. The genetic evidence is also consistent with the phenotypic, physiological and biochemical analysis results. Altogether, this study revealed a transcriptional regulatory cascade in which the PIF4–ABI4 transcriptional activator complex synergistically enhanced seed dormancy by facilitating ABA biosynthesis and signaling.

Funder

Postdoctoral Research Foundation of China

National Natural Science Foundation of China

Publisher

Wiley

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