The maize transcription factor CCT regulates drought tolerance by interacting with Fra a 1, E3 ligase WIPF2, and auxin response factor Aux/IAA8

Author:

Zhang Zhaoheng1,Qu Jiayue1,Lu Min1,Zhao Xinyu1,Xu Yang1,Wang Li1,Liu Zhongjia1,Shi Yingying1,Liu Chaotian1,Li Yipu23,Wang Chao2,Xu Mingliang2,Nan Zhangjie1,Cao Qingqin1,Pan Jinbao1,Liu Wende4,Li Xinrui1,Sun Qingpeng1,Wang Weixiang1ORCID

Affiliation:

1. Beijing Key Laboratory of New Technology in Agricultural Application, National Demonstration Center for Experimental Plant Production Education, College of Plant Science and Technology, Beijing University of Agriculture , Beijing , China

2. State Key Laboratory of Plant Physiology and Biochemistry, College of Agronomy and Biotechnology, National Maize Improvement Center, Center for Crop Functional Genomics and Molecular Breeding, China Agricultural University , Beijing , China

3. Agricultural College, Inner Mongolia Agricultural University , Hohhot , China

4. State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences , Beijing , China

Abstract

Abstract Plants are commonly exposed to abiotic stressors, which can affect their growth, productivity, and quality. Previously, the maize transcription factor ZmCCT was shown to be involved in the photoperiod response, delayed flowering, and quantitative resistance to Gibberella stalk rot. In this study, we demonstrate that ZmCCT can regulate plant responses to drought. ZmCCT physically interacted with ZmFra a 1, ZmWIPF2, and ZmAux/IAA8, which localized to the cell membrane, cytoplasm, and nucleus, respectively, both in vitro and in vivo in a yeast two-hybrid screen in response to abiotic stress. Notably, ZmCCT recruits ZmWIPF2 to the nucleus, which has strong E3 self-ubiquitination activity dependent on its RING-H2 finger domain in vitro. When treated with higher indole-3-acetic acid/abscisic acid ratios, the height and root length of Y331-ΔTE maize plants increased. Y331-ΔTE plants exhibited increased responses to exogenously applied auxin or ABA compared to Y331 plants, indicating that ZmCCT may be a negative regulator of ABA signalling in maize. In vivo, ZmCCT promoted indole-3-acetic acid biosynthesis in ZmCCT-overexpressing Arabidopsis. RNA-sequencing and DNA affinity purification-sequencing analyses showed that ZmCCT can regulate the expression of ZmRD17, ZmAFP3, ZmPP2C, and ZmARR16 under drought. Our findings provide a detailed overview of the molecular mechanism controlling ZmCCT functions and highlight that ZmCCT has multiple roles in promoting abiotic stress tolerance.

Funder

National Natural Science Foundation of China

Special Scientific Research Project of Beijing Agriculture University

Academic Degree & Graduate Education

Beijing University of Agriculture

Youth Talent Support Plan

Beijing Educational Committee

Research Fund

State Key Laboratory for Biology of Plant Diseases and Insect Pests

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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4. Transcriptome analysis in contrasting maize inbred lines and functional analysis of five maize NAC genes under drought stress treatment;Ding;Frontiers in Plant Science,2023

5. Evaluation of physiological characteristics as selection criteria for drought tolerance in maize inbred lines and their hybrids;Dordas;Maydica,2018

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