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Research Article | Open Access

PbrWRKY62-PbrADC1 module involves in superficial scald development of Pyrus bretschneideri Rehd.fruit via regulating putrescine biosynthesis

Xu Zhang1,Lijuan Zhu2,Ming Qian1,Li Jiang2,Peng Gu1,Luting Jia1,Chunlu Qian3,Weiqi Luo4Min Ma5Zhangfei Wu1Xin Qiao1( )Libin Wang1( )Shaoling Zhang1 ( )
State Key Laboratory of Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, Jiangsu, China
College of Food Science and Technology, Nanjing Agricultural University, Nanjing 210095, Jiangsu, China
College of Food Science and Engineering, Yangzhou University, Yangzhou 225127, Jiangsu, China
Center for Integrated Pest Management, North Carolina State University, Raleigh, NC 27606, USA
Joint Center for Single Cell Biology, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China

Xu Zhang, Lijuan Zhu, Ming Qian, Li Jiang, Peng Gu, Luting Jia and Chunlu Qian contributed equally to this paper.

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Abstract

Putrescine plays a role in superficial scald development during the cold storage of pear fruit. However, the molecular mechanism behind this phenomenon has not been un-fully clarified until recently. In this study, a conjoint analysis of metabolites and gene expression profiles in the putrescine-metabolic pathway of P. bretschneideri Rehd. fruit followed by experimental validation revealed that PbrADC1, forming a homodimer in the chloroplast, was involved in putrescine biosynthesis and thus fruit chilling resistance. Additionally, the substrate-binding residue Cys546 in PbrADC1, whose activity was modified by H2O2, played a crucial role in arginine decarboxylation into agmatine. Through a combined analysis of the distribution of cis-acting elements in the PbrADC1 promoter as well as the expression profiles of related transcription factors (TFs), several TFs were identified as upstream regulators of PbrADC1 gene. Further investigation revealed that the nuclear PbrWRKY62 could directly bind to the W-box elements in the PbrADC1 promoter, activate its expression, enhance putrescine accumulation, and thus increase fruit chilling tolerance. In conclusion, our results suggest that the PbrWRKY62-PbrADC1 module is involved in the development of superficial scald in P. bretschneideri Rehd. fruit via regulating putrescine biosynthesis. Consequently, these findings could serve as valuable genetic resources for breeding scald-resistant pear fruit.

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Molecular Horticulture
Article number: 6

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Cite this article:
Zhang X, Zhu L, Qian M, et al. PbrWRKY62-PbrADC1 module involves in superficial scald development of Pyrus bretschneideri Rehd.fruit via regulating putrescine biosynthesis. Molecular Horticulture, 2024, 4(1): 6. https://doi.org/10.1186/s43897-024-00081-8

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Received: 06 October 2023
Accepted: 14 January 2024
Published: 20 February 2024
© The Author(s) 2024.

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