分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

Transcriptome Dynamics of Terminal Buds During Flower Bud Morphogenesis in Blueberry

Xingyu Lu, Dongyu Sun, Yinyan Yang, Yalan Liu, Qin Yang, Biyan Zhou

Journal:Genes

IF:3.1

DOI:10.3390/genes17070837

PMID:

Published:2026-07-21

research field:肿瘤学毒理学呼吸生物学

Abstract

Background/Objectives: Flower bud morphogenesis is a critical developmental phase during which blueberry transitions from vegetative to reproductive growth, yet the transcriptome dynamics and regulatory networks within buds during this process have not been systematically characterized.Methods: Terminal buds of the rabbiteye blueberry ‘Brightwell’ were sampled at six time points spanning from summer shoot cessation to bud swelling and dormancy entry. RNA sequencing, trend clustering, and Pearson correlation network analyses were performed to identify potentially important genes and regulatory relationships.Results: A total of 26,302 differentially expressed genes were identified, with a major transcriptomic shift at week 15. From four major expression trends, 1050 candidate genes were selected, including 176 flowering-related genes, 770 transcription factors, and 277 hormone-related genes. Photoperiod and vernalization pathway genes (COLs,VRN1, etc.) were predominantly down-regulated, whereas age pathway genes (SPLs) and MADS-box flower development genes (FULs,AP3,PI, andSEP2, etc.) were up-regulated. The floral integratorsFTandSOC1exhibited opposite expression dynamics:SOC1was highly expressed during the early-to-mid stage, whereasFTpeaked at the late stage, with the two showing opposing co-expression and correlation patterns. This suggests stage-specific divergence between the two integrators in coordinating flower bud differentiation and dormancy entry. Multiple hormone pathways (IAA, BR, JA, and SA, etc.) converged independently onto floral regulatory hubs through their biosynthesis/metabolism and signal transduction genes, with numerous transcription factors also involved.Conclusions: These findings provide a comprehensive view of bud transcriptome dynamics and propose a molecular regulatory framework integrating flowering signals, hormones, and transcriptional cascades, offering a theoretical foundation and gene resources for blueberry breeding.

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