IbMYB73 targets abscisic acid-responsive IbGER5 to regulate root growth and stress tolerance in sweet potato

Author:

Wang Zhen12ORCID,Li Xu12ORCID,Gao Xiao-ru2ORCID,Dai Zhuo-ru2ORCID,Peng Kui2ORCID,Jia Li-cong3ORCID,Wu Yin-kui2ORCID,Liu Qing-chang2ORCID,Zhai Hong2ORCID,Gao Shao-pei2ORCID,Zhao Ning2ORCID,He Shao-zhen12ORCID,Zhang Huan12ORCID

Affiliation:

1. Sanya Institute of China Agricultural University , Sanya 572025 , China

2. Key Laboratory of Sweet Potato Biology and Biotechnology, Ministry of Agriculture and Rural Affairs/Beijing Key Laboratory of Crop Genetic Improvement/Laboratory of Crop Heterosis & Utilization and Joint Laboratory for International Cooperation in Crop Molecular Breeding, Ministry of Education, College of Agronomy & Biotechnology, China Agricultural University , Beijing 100193 , China

3. Institute of Grain and Oil Crops, Yantai Academy of Agricultural Sciences , Yantai 265500 , China

Abstract

Abstract Root development influences plant responses to environmental conditions, and well-developed rooting enhances plant survival under abiotic stress. However, the molecular and genetic mechanisms underlying root development and abiotic stress tolerance in plants remain unclear. In this study, we identified the MYB transcription factor-encoding gene IbMYB73 by cDNA-amplified fragment length polymorphism and RNA-seq analyses. IbMYB73 expression was greatly suppressed under abiotic stress in the roots of the salt-tolerant sweet potato (Ipomoea batatas) line ND98, and its promoter activity in roots was significantly reduced by abscisic acid (ABA), NaCl, and mannitol treatments. Overexpression of IbMYB73 significantly inhibited adventitious root growth and abiotic stress tolerance, whereas IbMYB73-RNAi plants displayed the opposite pattern. IbMYB73 influenced the transcription of genes involved in the ABA pathway. Furthermore, IbMYB73 formed homodimers and activated the transcription of ABA-responsive protein IbGER5 by binding to an MYB binding sites I motif in its promoter. IbGER5 overexpression significantly inhibited adventitious root growth and abiotic stress tolerance concomitantly with a reduction in ABA content, while IbGER5-RNAi plants showed the opposite effect. Collectively, our results demonstrated that the IbMYB73-IbGER5 module regulates ABA-dependent adventitious root growth and abiotic stress tolerance in sweet potato, which provides candidate genes for the development of elite crop varieties with well-developed root-mediated abiotic stress tolerance.

Funder

Sanya Yazhou Bay Science and Technology City

Beijing Natural Science Foundation

Beijing Food Crops Innovation Consortium

Chinese Universities Scientific Fund

earmarked fund for CARS-10-Sweetpotato

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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