The Senescence-Induced Staygreen Protein Regulates Chlorophyll Degradation
Белок staygreen, индуцируемый старением, регулирует деградацию хлорофилла
2007-05-01
SCID: 54.1/j7qazpu7
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LHCPII disassemblychlorophyll degradationleaf senescencestaygreen mutantthylakoid membranes
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Abstract (AI)
Loss of green color in leaves results from chlorophyll (Chl) degradation in chloroplasts, but little is known about how Chl catabolism is regulated throughout leaf development. Using the staygreen (sgr) mutant in rice (Oryza sativa), which maintains greenness during leaf senescence, we identified Sgr, a senescence-associated gene encoding a novel chloroplast protein. Transgenic rice overexpressing Sgr produces yellowish-brown leaves, and Arabidopsis thaliana pheophorbide a oxygenase-impaired mutants exhibiting a stay-green phenotype during dark-induced senescence have reduced expression of Sgr homologs, indicating that Sgr regulates Chl degradation at the transcriptional level. We show that the leaf stay-greenness of the sgr mutant is associated with a failure in the destabilization of the light-harvesting chlorophyll binding protein (LHCP) complexes of the thylakoid membranes, which is a prerequisite event for the degradation of Chls and LHCPs during senescence. Transient overexpression of Sgr in Nicotiana benthamiana and an in vivo pull-down assay show that Sgr interacts with LHCPII, indicating that the Sgr-LHCPII complexes are formed in the thylakoid membranes. Thus, we propose that in senescing leaves, Sgr regulates Chl degradation by inducing LHCPII disassembly through direct interaction, leading to the degradation of Chls and Chl-free LHCPII by catabolic enzymes and proteases, respectively.
Key Findings
1
Sgr directly interacts with LHCPII in thylakoid membranes, forming complexes that promote LHCPII disassembly.
2
Sgr is proposed to initiate chlorophyll catabolism by inducing LHCPII disassembly, enabling subsequent enzymatic chlorophyll and proteolytic apoprotein degradation.
3
Sgr overexpression causes yellowish-brown rice leaves, whereas reduced Sgr homolog expression accompanies stay-green phenotypes in Arabidopsis mutants.
4
The rice staygreen gene Sgr encodes a novel chloroplast protein associated with leaf senescence and chlorophyll degradation.
5
The sgr mutant remains green because light-harvesting chlorophyll protein complexes fail to destabilize, preventing chlorophyll and LHCP degradation during senescence.
Research Object
Senescing leaves of rice (Oryza sativa), particularly the staygreen sgr mutant and its Sgr protein–associated thylakoid membranes
Research Subject
Sgr-mediated regulation of chlorophyll degradation through destabilization and disassembly of LHCPII complexes during leaf senescence
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2007-05-01
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