García-Fernández J M, Hess W R, Houmard J, Partensky F
Observatoire Océanologique de Roscoff, CNRS et Université Paris 6, Station Biologique BP 74, Roscoff Cedex, F-29682, France.
Arch Biochem Biophys. 1998 Nov 1;359(1):17-23. doi: 10.1006/abbi.1998.0862.
The oxygenic photosynthetic prokaryotes Prochlorococcus marinus SS120 (CCMP1375) and Prochlorococcus sp. MED4 (CCMP 1378) were previously shown to exhibit different pigmentation and ecophysiological characteristics. The former strain has a much lower divinyl-Chl a to b ratio and is adapted to lower photon flux densities than the latter. In contrast to the cyanobacteria examined so far, both strains possess only one copy of the psbA gene, encoding the D1 protein of photosystem II core. In acclimated steady-state cultures, psbA transcript levels were always higher at high irradiances in both strains. Upon a shift from low to high light, the psbA transcript levels increased in both strains but more quickly in MED4 than in SS120. They decreased during the opposite shift. Iron-starved MED4 cells overexpressed psbA at all assayed irradiances, suggesting that this species, representative of populations from naturally iron-depleted oceanic areas, may have developed a particular compensation mechanism. The similar effects of DCMU and DBMIB on the expression of psbA suggest that light regulation of psbA in Prochlorococcus may be mediated by the electron transport chain. The energy state of cells could, however, also be involved in this regulation, since cultures of both strains subjected to darkness showed psbA levels significantly lower when glucose was added.
产氧光合原核生物海洋原绿球藻SS120(CCMP1375)和原绿球藻MED4(CCMP 1378)先前已被证明具有不同的色素沉着和生态生理特征。前一种菌株的二乙烯基叶绿素a与b的比率要低得多,并且比后一种菌株更适应较低的光子通量密度。与迄今为止检测的蓝细菌不同,这两种菌株都仅拥有一个编码光系统II核心的D1蛋白的psbA基因拷贝。在适应的稳态培养物中,两种菌株在高光强下psbA转录水平总是更高。从低光转变为高光时,两种菌株的psbA转录水平均升高,但MED4比SS120升高得更快。在相反的转变过程中它们会下降。缺铁的MED4细胞在所有测定的光强下都过表达psbA,这表明这种代表自然缺铁海洋区域种群的物种可能已经形成了一种特殊的补偿机制。二氯苯基二甲基脲(DCMU)和二溴甲基异噻唑啉酮(DBMIB)对psbA表达的类似影响表明,原绿球藻中psbA的光调节可能由电子传递链介导。然而,细胞的能量状态也可能参与这种调节,因为当添加葡萄糖时,两种菌株处于黑暗中的培养物显示psbA水平显著降低。