Chlorophyll Degradation and Light-harvesting Complex II Aggregate Formation During Dark-induced Leaf Senescence in Arabidopsis Pheophytinase Mutants

被引:0
|
作者
Young Nam Yang
Rana B. Safarova
So-Yon Park
Yasuhito Sakuraba
Min-Hyuk Oh
Ismayil S. Zulfugarov
Chin Bum Lee
Ayumi Tanaka
Nam-Chon Paek
Choon-Hwan Lee
机构
[1] Pusan National University,Department of Integrated Biological Science and Department of Molecular Biology
[2] Seoul National University,Department of Plant Science, Plant Genomics and Breeding Institute, Research Institute of Agriculture and Life Sciences
[3] Dong-eui University,Department of Molecular Biology
[4] Hokkaido University,Institute of Low Temperature Science
[5] Seoul National University,Crop Biotechnology Institute, Institutes of Green Bio Science and Technology
[6] Yeongnam Regional Office,Animal and Plant Quarantine Agency
来源
Journal of Plant Biology | 2019年 / 62卷
关键词
Aggregate; Chlorophyll degradation; Chlorophyllprotein complexes; Dark-induced senescence; Light-harvesting;
D O I
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中图分类号
学科分类号
摘要
The stay-green mutant of Arabidopsis thaliana, ore10 forms stable light-harvesting complex II (LHCII) aggregates during dark-induced senescence, which showed a single base deletion (G1351) in the coding region of the pheophytinase (PPH) gene. PPH specifically dephytylates the Mg-free chlorophyll (Chl) pigment pheophytin, yielding pheophorbide. In both ore10 and pph-1 mutants, pheophytin a accumulated due to the deficiency of PPH gene, but the amount was relatively smaller than that of degraded Chl, and most of the pheophytin a was bound to the stable LHCII forming aggregates with some other Chl-protein (CP) complexes. Comparison of Chl a/b ratios in thylakoids, aggregates, and LHCII indicated that the suppression of Chl b to Chl a conversion was stronger when Chl b reductase was missing and weak when PPH is missing in the large Chl catabolic complex, which allowed the partial degradation of Chl b. These results suggest that the PPH-dependent pathway is not specific for LHCII, but common for all CP complexes, including LHCII. In PPH-deficient mutants, the degradation of LHCII was suppressed by the formation of aggregates, and some of the remaining CP complexes and pheophytin a were included in the aggregates. Non-included CP complexes were degraded via an unknown mechanism.
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页码:27 / 38
页数:11
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