A Study of the Molecular Regulatory Network of VcTCP18 during Blueberry Bud Dormancy

Author:

Li Ruixue1,Ma Rui1,Zheng Yuling1,Zhao Qi1,Zong Yu12ORCID,Zhu Youyin3ORCID,Chen Wenrong12,Li Yongqiang12ORCID,Guo Weidong12

Affiliation:

1. College of Life Sciences, Zhejiang Normal University, Jinhua 321004, China

2. Zhejiang Provincial Key Laboratory of Biotechnology on Specialty Economic Plants, Zhejiang Normal University, Jinhua 321004, China

3. School of Agricultural, Jinhua Polytechinc, Jinhua 321007, China

Abstract

BRANCHED1 (BRC1) is a crucial member of the TEOSINTE BRANCHED1/CYCLOIDEA/PCF (TCP) gene family and is well known for playing a central role in shoot branching by controlling buds’ paradormancy. However, the expression characteristics and molecular regulatory mechanism of BRC1 during blueberry bud dormancy are unclear. To shed light on these topics, shoots of three blueberry cultivars with different chilling requirements (CRs) were decapitated in summer to induce paradormancy release and subjected to different levels of chilling in winter to induce endodormancy release. The results showed that the high-CR cultivar ‘Chandler’ had the strongest apical dominance among the three cultivars; additionally, the expression of VcTCP18, which is homologous to BRC1, was the highest under both the decapitation treatment and low-temperature treatment. The ‘Emerald’ cultivar, with a low CR, demonstrated the opposite trend. These findings suggest that VcTCP18 plays a negative regulatory role in bud break and that there may be a correlation between the CR and tree shape. Through yeast 1-hybrid (Y1H) assays, we finally screened 21 upstream regulatory genes, including eight transcription factors: zinc-finger homeodomain protein 1/4/5/9, MYB4, AP2-like ethylene-responsive transcription factor AINTEGUMENTA (ANT), ASIL2-like, and bHLH035. It was found that these upstream regulatory genes positively or negatively regulated the expression of VcTCP18 based on the transcriptome expression profile. In summary, this study enriched our understanding of the regulatory network of BRCl during bud dormancy and provided new insights into the function of BRC1.

Funder

Project of the Major Program for Science and Technology of Zhejiang Province

Major Scientific and Technological Project of Zhejiang Province

Zhejiang Public Welfare Technology Application Research Project

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

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1. Molecular advances in bud dormancy in trees;Journal of Experimental Botany;2024-06-03

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