Salt enhances photosystem I content and cyclic electron flow via NAD(P)H dehydrogenase in the halotolerant cyanobacterium Aphanothece halophytica

被引:44
作者
Hibino, T
Lee, BH
Rai, AK
Ishikawa, H
Kojima, H
Tawada, M
Shimoyama, H
Takabe, T
机构
[1] MEIJO UNIV, FAC SCI & TECHNOL, DEPT CHEM, TEMPAKU KU, NAGOYA, AICHI 468, JAPAN
[2] NAGOYA UNIV, SCH AGR SCI, BIOSCI CTR, NAGOYA, AICHI 46401, JAPAN
[3] MEIJO UNIV, FAC SCI & TECHNOL, DEPT ELECTR, TEMPAKU KU, NAGOYA, AICHI 468, JAPAN
[4] MEIJO UNIV, RES INST, TEMPAKU KU, NAGOYA, AICHI 468, JAPAN
来源
AUSTRALIAN JOURNAL OF PLANT PHYSIOLOGY | 1996年 / 23卷 / 03期
关键词
D O I
10.1071/PP9960321
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
To uncover the adaptation mechanisms of photosystems for halotolerance, changes in stoichiometry and activity of photosystems in response to changes of salinities were examined in a halotolerant cyanobacterium, Aphanothece halophytica.. Photosynthetic O-2 evolution was high even at high salinities. O-2 evolution activity increased with increasing external concentration of NaCl, reached a maximum at 1.5 M NaCl, and then decreased. Similar salt dependence was observed for photosystem Ii activity. On the other hand, photosystem I activity increased concomitantly with increase in salinity. Photoacoustic measurements indicated that appreciable energy storage by photosystem I mediated cyclic electron flow at high salinities. Significant electron donation to photosystem I reaction centres through NAD(P)H-dehydrogenase complexes was observed in high salt media. The contents of cytochrome b(6)/f and photosystem II were almost constant under various salinity conditions, whereas the levels of chlorophyll a, photosystem I, soluble cytochrome c-553, and NAD(P)H-dehydrogenase increased in the cells grown with high salinities. These results indicate that salt specifically induces an increase of protein levels involving cyclic electron flow around photosystem I that may entail an important role for adaptation of Aphanothece halophytica cells to high salinities.
引用
收藏
页码:321 / 330
页数:10
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