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March 28, 2026Antioxidants0 citationsOpen Access

Abscisic Acid Promotes Petal Senescence in Rose by Regulating RcMYB002

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ACAiyin CuiYDYuzheng DengYKYuanyuan Kong

Key Points

  • The aim is to explore the role of RcMYB002 in the mechanism of flower senescence induced by abscisic acid in roses.
  • Identified RcMYB002 as a regulator of flower senescence via overexpression and silencing experiments.
  • Used transient overexpression to assess effects on senescence, anthocyanin levels, and enzyme activities.
  • Employed yeast one-hybrid assays to investigate interactions between RcMYB002 and senescence-related gene promoters.
  • Overexpressing RcMYB002 delayed petal senescence and maintained anthocyanin levels.
  • Silencing RcMYB002 accelerated senescence-associated traits.
  • ABA downregulated RcMYB002 expression and triggered oxidative stress related to senescence.

Abstract

Flower senescence is a key physiological constraint on the ornamental and commercial longevity of cut roses. Although abscisic acid (ABA) is recognized as a promoter of this process, the molecular circuitry through which ABA operates, particularly the specific contributions of MYB transcription factors, remains largely unexplored. In this study, we identify RcMYB002 as a negative regulator of rose flower senescence. Transient overexpression of RcMYB002 significantly delays senescence, preserves anthocyanin accumulation, and modulates antioxidant enzyme activities in a time-dependent manner, consequently attenuating ABA-triggered oxidative stress. In contrast, silencing RcMYB002 accelerates senescence-associated phenotypes. At the molecular level, ABA suppresses RcMYB002 transcript accumulation, while yeast one-hybrid (Y1H) assays indicate that RcMYB002 interacts with the promoter regions of senescence-associated genes SAG12 and SAG21, consistent with a role in their transcriptional regulation. Taken together, our results support a model in which ABA promotes flower senescence by downregulating RcMYB002, thereby derepressing downstream senescence-executing genes. This work provides a molecular basis for understanding flower senescence and offers a potential target for extending rose vase life.

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Cite This Study

Cui et al. (2026) studied this question.

synapsesocial.com/papers/69c771838bbfbc51511e174ahttps://doi.org/10.3390/antiox15040415
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