4.7 Article

Hexokinase gene OsHXK1 positively regulates leaf senescence in rice

期刊

BMC PLANT BIOLOGY
卷 21, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12870-021-03343-5

关键词

OsHXK1; Rice; Leaf senescence; ROS; Glucose

资金

  1. National Natural Science Foundation of China [31921004, 32000457, 31871231]
  2. China Postdoctoral Science Foundation [2019 M662941]
  3. Natural Science Foundation of Guangdong Province [2019A1515110824]
  4. Major Program of Guangdong Basic and Applied Research [2019B030302006]

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This study revealed that OsHXK1 is a positive regulator of rice leaf senescence by mediating glucose accumulation and inducing an increase in ROS levels. OsHXK1 upregulation leads to premature senescence of rice leaves, decreased chlorophyll levels, and damage to chloroplast structure, along with increased glucose and ROS levels, and programmed cell death signals at an early stage.
Background Leaf senescence is a highly complex and meticulous regulatory process, and the disruption of any factor involved in leaf senescence might lead to premature or delayed leaf senescence and thus result in reduced or increased crop yields. Despite sincere efforts by scientists, there remain many unsolved problems related to the regulatory factors and molecular mechanisms of leaf senescence. Results This study successfully revealed that OsHXK1 was highly expressed in senescent leaves of rice. The upregulation of OsHXK1 led to premature senescence of rice leaves, a decreased level of chlorophyll, and damage to the chloroplast structure. The overexpression of OsHXK1 resulted in increases in glucose and ROS levels and produced programmed cell death (PCD) signals earlier at the booting stage. Further analysis showed that expression level of the respiratory burst oxidase homolog (RBOH) genes and OsGLO1 were increased in OsHXK1-overexpressing plants at the booting stage. Conclusions Overall, the outcomes of this study suggested that OsHXK1 could act as a positive regulator of rice leaf senescence by mediating glucose accumulation and inducing an increase in ROS.

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