Nitrogen metabolism and remobilization during senescence
Top Cited Papers
- 15 April 2002
- journal article
- review article
- Published by Oxford University Press (OUP) in Journal of Experimental Botany
- Vol. 53 (370) , 927-937
- https://doi.org/10.1093/jexbot/53.370.927
Abstract
Senescence is a highly organized and well-regulated process. As much as 75% of total cellular nitrogen may be located in mesophyll chloroplasts of C(3)-plants. Proteolysis of chloroplast proteins begins in an early phase of senescence and the liberated amino acids can be exported to growing parts of the plant (e.g. maturing fruits). Rubisco and other stromal enzymes can be degraded in isolated chloroplasts, implying the involvement of plastidial peptide hydrolases. Whether or not ATP is required and if stromal proteins are modified (e.g. by reactive oxygen species) prior to their degradation are questions still under debate. Several proteins, in particular cysteine proteases, have been demonstrated to be specifically expressed during senescence. Their contribution to the general degradation of chloroplast proteins is unclear. The accumulation in intact cells of peptide fragments and inhibitor studies suggest that multiple degradation pathways may exist for stromal proteins and that vacuolar endopeptidases might also be involved under certain conditions. The breakdown of chlorophyll-binding proteins associated with the thylakoid membrane is less well investigated. The degradation of these proteins requires the simultaneous catabolism of chlorophylls. The breakdown of chlorophylls has been elucidated during the last decade. Interestingly, nitrogen present in chlorophyll is not exported from senescencing leaves, but remains within the cells in the form of linear tetrapyrrolic catabolites that accumulate in the vacuole. The degradation pathways for chlorophylls and chloroplast proteins are partially interconnected.Keywords
This publication has 89 references indexed in Scilit:
- Protein Hydrolysis and Nitrogen Remobilisation in Plant Life and SenescencePublished by Springer Nature ,2001
- Immunolocalization of glutamine synthetase in senescing tobacco ( Nicotiana tabacum L.) leaves suggests that ammonia assimilation is progressively shifted to the mesophyll cytosolPlanta, 2000
- A Matrix Metalloproteinase Gene Is Expressed at the Boundary of Senescence and Programmed Cell Death in CucumberPlant Physiology, 2000
- Influence of nitrogen deficiency on senescence and the amounts of RNA and proteins in wheat leavesPhysiologia Plantarum, 1998
- The molecular biology of leaf senescenceJournal of Experimental Botany, 1997
- Detection, isolation and structure elucidation of a chlorophyll a catabolite from autumnal senescent leaves of Cercidiphyllum japonicumPhytochemistry, 1996
- Oxidative Stress Induces Partial Degradation of the Large Subunit of Ribulose-1,5-Bisphosphate Carboxylase/Oxygenase in Isolated Chloroplasts of BarleyPlant Physiology, 1996
- Stay‐green genotypes of Phaseolus vulgaris L.: chloroplast proteins and chlorophyll catabolites during foliar senescenceNew Phytologist, 1994
- A Purified Zinc Protease of Pea Chloroplasts, EP1, Degrades the Large Subunit of Ribulose-1,5-Bisphosphate Carboxylase/OxygenasePlant Physiology, 1993
- Dynamics of Vacuolar CompartmentationAnnual Review of Plant Physiology, 1986