4.8 Article

The circadian-controlled PIF8-BBX28 module regulates petal senescence in rose flowers by governing mitochondrial ROS homeostasis at night

期刊

PLANT CELL
卷 33, 期 8, 页码 2716-2735

出版社

OXFORD UNIV PRESS INC
DOI: 10.1093/plcell/koab152

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资金

  1. National Key Research and Development Program [2018YFD1000400]
  2. National Natural Science Foundation of China [31730079, 31522049]
  3. Construction of Beijing Science and Technology Innovation and Service Capacity in Top Subjects [CEFF-PXM2019_014207_000032]
  4. 111 Project [B17043]

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Research in roses has identified a circadian-regulated RhPIF8-RhBBX28 module that controls flower senescence by governing mitochondrial ROS homeostasis. RhBBX28 gene influences respiratory metabolism-related gene expression and directly represses SUCCINATE DEHYDROGENASE 1, a key player in mtROS homeostasis. The study sheds light on the regulation of ROS homeostasis in nonphotosynthetic organs like petals.
Reactive oxygen species (ROS) are unstable reactive molecules that are toxic to cells. Regulation of ROS homeostasis is crucial to protect cells from dysfunction, senescence, and death. In plant leaves, ROS are mainly generated from chloroplasts and are tightly temporally restricted by the circadian clock. However, little is known about how ROS homeostasis is regulated in nonphotosynthetic organs, such as petals. Here, we showed that hydrogen peroxide (H2O2) levels exhibit typical circadian rhythmicity in rose (Rosa hybrida) petals, consistent with the measured respiratory rate. RNA-seq and functional screening identified a B-box gene, RhBBX28, whose expression was associated with H2O2 rhythms. Silencing RhBBX28 accelerated flower senescence and promoted H2O2 accumulation at night in petals, while overexpression of RhBBX28 had the opposite effects. RhBBX28 influenced the expression of various genes related to respiratory metabolism, including the TCA cycle and glycolysis, and directly repressed the expression of SUCCINATE DEHYDROGENASE 1, which plays a central role in mitochondrial ROS (mtROS) homeostasis. We also found that PHYTOCHROME-INTERACTING FACTOR8 (RhPIF8) could activate RhBBX28 expression to control H2O2 levels in petals and thus flower senescence. Our results indicate that the circadian-controlled RhPIF8-RhBBX28 module is a critical player that controls flower senescence by governing mtROS homeostasis in rose.

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