Misra H S, Mahajan S K
Molecular Biology and Agriculture Division, Bhabha Atomic Research Centre, Trombay, Bombay, India.
Biochim Biophys Acta. 2000 Jul 20;1459(1):139-47.
Plectonema boryanum shows temporal separation of photosynthesis and nitrogen fixation under diazotrophic conditions. Low temperature fluorescence studies have shown that in vivo the nitrogen fixing and photosynthesizing cells are adapted to 'state 2' and 'state 1', respectively. During nitrogen fixation phycobilisomes seem to transfer excitation energy to photosystem I whereas during oxygenic photosynthesis the energy is transferred to photosystem II. The state 2 adapted N-phase cells failed to undergo transition to state 1 while P-phase cells exhibited state 1 to state 2 transition. The nitrogen fixing cells showed a decreased level ofpsbC transcript, lack of CP47 in thylakoid membrane, and presence of the F685 peak but absence of the F695 peak in 77 K fluorescence spectra. These results suggest that the metabolic and molecular changes associated with nitrogen fixation may favor direct energy transfer from the phycobilisomes to photosystem I. This should help the organism to achieve low photosystem II and high photosystem I activity to set temporal separation of nitrogen fixation and photosynthesis for photoautotrophic growth under diazotrophic conditions.
颤藻在固氮条件下表现出光合作用和固氮作用的时间分离。低温荧光研究表明,在体内固氮细胞和光合细胞分别适应“状态2”和“状态1”。在固氮过程中,藻胆体似乎将激发能转移到光系统I,而在有氧光合作用过程中,能量转移到光系统II。适应状态2的N期细胞未能转变为状态1,而P期细胞则表现出从状态1到状态2的转变。固氮细胞显示psbC转录本水平降低,类囊体膜中缺乏CP47,并且在77K荧光光谱中存在F685峰但不存在F695峰。这些结果表明,与固氮作用相关的代谢和分子变化可能有利于激发能从藻胆体直接转移到光系统I。这应该有助于生物体实现低光系统II和高光系统I活性,以便在固氮条件下为光合自养生长设定固氮作用和光合作用的时间分离。