Dissection of the IDA promoter identifies WRKY transcription factors as abscission regulators in Arabidopsis

Author:

Galindo-Trigo Sergio1ORCID,Bågman Anne-Maarit2ORCID,Ishida Takashi34ORCID,Sawa Shinichiro4ORCID,Brady Siobhán M2ORCID,Butenko Melinka A1ORCID

Affiliation:

1. Section for Genetics and Evolutionary Biology, Department of Biosciences, University of Oslo , Norway

2. Department of Plant Biology and Genome Center, University of California , Davis , CA , USA

3. International Research Organization for Advanced Science and Technology (IROAST), Kumamoto University , Kumamoto , Japan

4. Graduate School of Science and Technology, Kumamoto University , Kumamoto , Japan

Abstract

Abstract Plants shed organs such as leaves, petals, or fruits through the process of abscission. Monitoring cues such as age, resource availability, and biotic and abiotic stresses allow plants to abscise organs in a timely manner. How these signals are integrated into the molecular pathways that drive abscission is largely unknown. The INFLORESCENCE DEFICIENT IN ABSCISSION (IDA) gene is one of the main drivers of floral organ abscission in Arabidopsis and is known to transcriptionally respond to most abscission-regulating cues. By interrogating the IDA promoter in silico and in vitro, we identified transcription factors that could potentially modulate IDA expression. We probed the importance of ERF- and WRKY-binding sites for IDA expression during floral organ abscission, with WRKYs being of special relevance to mediate IDA up-regulation in response to biotic stress in tissues destined for separation. We further characterized WRKY57 as a positive regulator of IDA and IDA-like gene expression in abscission zones. Our findings highlight the promise of promoter element-targeted approaches to modulate the responsiveness of the IDA signaling pathway to harness controlled abscission timing for improved crop productivity.

Funder

Norwegian Ministry of Education and Research

Department of Biosciences

Research Council of Norway

Publisher

Oxford University Press (OUP)

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Abscission in plants: from mechanism to applications;Advanced Biotechnology;2024-08-09

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