Xing Wei, Huang Wen-min, Li Dun-hai, Liu Yong-ding
State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, 430072, People's Republic of China.
Curr Microbiol. 2007 Aug;55(2):94-8. doi: 10.1007/s00284-006-0470-2. Epub 2007 Jul 11.
Changes in growth, photosynthetic pigments, and photosystem II (PS II) photochemical efficiency as well as production of siderophores of Microcystis aeruginosa and Microcystis wesenbergii were determined in this experiment. Results showed growths of M. aeruginosa and M. wesenbergii, measured by means of optical density at 665 nm, were severely inhibited under an iron-limited condition, whereas they thrived under an iron-replete condition. The contents of chlorophyll-a, carotenoid, phycocyanin, and allophycocyanin under an iron-limited condition were lower than those under an iron-replete condition, and they all reached maximal contents on day 4 under the iron-limited condition. PS II photochemical efficiencies (maximal PS II quantum yield), saturating light levels (I(k)) and maximal electron transport rates (ETR(max)) of M. aeruginosa and M. wesenbergii declined sharply under the iron-limited condition. The PS II photochemical efficiency and ETR(max) of M. aeruginosa rose , whereas in the strain of M. wesenbergii, they declined gradually under the iron-replete condition. In addition, I ( k ) of M. aeruginosa and M. wesenbergii under the iron-replete condition did not change obviously. Siderophore production of M. aeruginosa was higher than that of M. wesenbergii under the iron-limited condition. It was concluded that M. aeruginosa requires higher iron concentration for physiological and biochemical processes compared with M. wesenbergii, but its tolerance against too high a concentration of iron is weaker than M. wesenbergii.
本实验测定了铜绿微囊藻和惠氏微囊藻的生长、光合色素、光系统II(PS II)光化学效率以及铁载体的产生情况。结果表明,以665nm处的光密度衡量,铜绿微囊藻和惠氏微囊藻的生长在铁限制条件下受到严重抑制,而在铁充足条件下则生长旺盛。铁限制条件下叶绿素a、类胡萝卜素、藻蓝蛋白和别藻蓝蛋白的含量低于铁充足条件下的含量,且在铁限制条件下它们均在第4天达到最大含量。铁限制条件下,铜绿微囊藻和惠氏微囊藻的PS II光化学效率(最大PS II量子产率)、饱和光强(I(k))和最大电子传递速率(ETR(max))急剧下降。在铁充足条件下,铜绿微囊藻的PS II光化学效率和ETR(max)上升,而惠氏微囊藻菌株的则逐渐下降。此外,铁充足条件下铜绿微囊藻和惠氏微囊藻的I(k)没有明显变化。铁限制条件下,铜绿微囊藻的铁载体产量高于惠氏微囊藻。得出的结论是,与惠氏微囊藻相比,铜绿微囊藻的生理生化过程需要更高的铁浓度,但其对过高铁浓度的耐受性比惠氏微囊藻弱。