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Leaf Senescence: The Chloroplast Connection Comes of Age

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Journal Plants (Basel)
Date 2019 Nov 14
PMID 31718069
Citations 21
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Abstract

Leaf senescence is a developmental process critical for plant fitness, which involves genetically controlled cell death and ordered disassembly of macromolecules for reallocating nutrients to juvenile and reproductive organs. While natural leaf senescence is primarily associated with aging, it can also be induced by environmental and nutritional inputs including biotic and abiotic stresses, darkness, phytohormones and oxidants. Reactive oxygen species (ROS) are a common thread in stress-dependent cell death and also increase during leaf senescence. Involvement of chloroplast redox chemistry (including ROS propagation) in modulating cell death is well supported, with photosynthesis playing a crucial role in providing redox-based signals to this process. While chloroplast contribution to senescence received less attention, recent findings indicate that changes in the redox poise of these organelles strongly affect senescence timing and progress. In this review, the involvement of chloroplasts in leaf senescence execution is critically assessed in relation to available evidence and the role played by environmental and developmental cues such as stress and phytohormones. The collected results indicate that chloroplasts could cooperate with other redox sources (e.g., mitochondria) and signaling molecules to initiate the committed steps of leaf senescence for a best use of the recycled nutrients in plant reproduction.

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References
1.
Kim J, Chang C, Tucker M . To grow old: regulatory role of ethylene and jasmonic acid in senescence. Front Plant Sci. 2015; 6:20. PMC: 4310285. DOI: 10.3389/fpls.2015.00020. View

2.
John I, Hackett R, Cooper W, Drake R, Farrell A, Grierson D . Cloning and characterization of tomato leaf senescence-related cDNAs. Plant Mol Biol. 1997; 33(4):641-51. DOI: 10.1023/a:1005746831643. View

3.
Rosenwasser S, Fluhr R, Joshi J, Leviatan N, Sela N, Hetzroni A . ROSMETER: a bioinformatic tool for the identification of transcriptomic imprints related to reactive oxygen species type and origin provides new insights into stress responses. Plant Physiol. 2013; 163(2):1071-83. PMC: 3793026. DOI: 10.1104/pp.113.218206. View

4.
Nakamura S, Izumi M . Regulation of Chlorophagy during Photoinhibition and Senescence: Lessons from Mitophagy. Plant Cell Physiol. 2018; 59(6):1135-1143. DOI: 10.1093/pcp/pcy096. View

5.
Zapata J, GUERA A, Esteban-Carrasco A, Martin M, Sabater B . Chloroplasts regulate leaf senescence: delayed senescence in transgenic ndhF-defective tobacco. Cell Death Differ. 2005; 12(10):1277-84. DOI: 10.1038/sj.cdd.4401657. View