藻胆体
光系统
光合作用
光系统II
发菜
脱水
露水
植物
能量转移
光抑制
化学
生物物理学
光化学
蓝藻
生物
生物化学
物理
化学物理
冷凝
细菌
热力学
遗传学
作者
Hui Huang,K. V. K. Bai,Zhong Ze-pu,Liangbi Li,Tingyun Kuang
标识
DOI:10.1111/j.1744-7909.2005.00105.x
摘要
Abstract: During the non-frost season, the condensation of dew makes Nostoc flagelliforme Born. et Flah., a highly drought-tolerant terrestrial cyanobacterium, frequently undergo rehydration-dehydration. Rehydration begins in the dark at night. After rewetting in the dark, photochemical activity and the structure of photosystem (PS) II were not recovered at all; the structure of PSI, energy transfer in phycobilisomes, and energy transfer from phycobilisomes to PSI were recovered within 5 min, as in the light. The recovery of energy transfer from phycobilisomes to PSII was light dependent and energy transfer from phycobilisomes to PSII was only partially recovered in the dark. These results suggest that the two-trigger control (water and light) of photo synthetic recovery may make N. flagelliforme avoid unnecessary energy consumption and, at the same time, the partial recovery of energy transfer from phycobilisomes to PSII in the dark could help N. flagelliforme accumulate more photosynthetic products during the transient period of rehydration-dehydration. (Managing editor: Ping HE)
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