Programmed cell death of secretory cavity cells of citrus fruits is associated with Ca2+ accumulation in the nucleus
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science,Ecology,Physiology,Forestry
Link
http://link.springer.com/content/pdf/10.1007/s00468-014-1024-z.pdf
Reference32 articles.
1. Aleksandrushkina NI, Vanyushin BF (2009) Endonucleases and their involvement in plant apoptosis. Russ J Plant Physiol 56:291–305
2. Azad AK, Ishikawa Takayuki, Ishikawa Takahiro, Sawa Y, Shibata H (2008) Intracellular energy depletion triggers programmed cell death during petal senescence in tulip. J Exp Bot 59:2085–2095
3. Bosch M, Franklin-Tong VE (2008) Self-incompatibility in Papaver: signalling to trigger PCD in incompatible pollen. J Exp Bot 59:481–490
4. Cao J, Jiang F, Sodmergen Cui KM (2003) Time-course of programmed cell death during leaf senescence in Eucommia ulmoides. J Plant Res 116:7–12
5. Chen Y, Wu H (2010) Programmed cell death involved in the schizolysigenous formation of the secretory cavity in Citrus sinensis L. (Osbeck). Chin Sci Bull 55:2160–2168
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2. CgPG21 is involved in the degradation of the cell wall during the secretory cavity formation in Citrus grandis ‘Tomentosa’ fruits;Plant Cell Reports;2023-05-23
3. Zn2+-Dependent Nuclease Is Involved in Nuclear Degradation during the Programmed Cell Death of Secretory Cavity Formation in Citrus grandis ‘Tomentosa’ Fruits;Cells;2021-11-18
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