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首页> 外文期刊>Zeitschrift fur Naturforschung, C. A Journal of Biosciences >Different sensitivities of photosystem II in green algae and cyanobacteria to phenylurea and phenol-type herbicides: effect on electron donor side
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Different sensitivities of photosystem II in green algae and cyanobacteria to phenylurea and phenol-type herbicides: effect on electron donor side

机译:绿藻和苯菌与苯菌和苯酚型除草剂的不同敏感性:对电子给体侧的影响

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摘要

The effects of short-term treatment with phenylurea (DCMU, isoproturon) and phenol-type (ioxynil) herbicides on the green alga Chlorella kessleri and the cyanobacterium Synechocystis salina with different organizations of photosystem II (PSII) were investigated using pulse amplitude modulated (PAM) chlorophyll fluorescence and photosynthetic oxygen evolution measured by polarographic oxygen electrodes (Clark-type and Joliot-type). The photosynthetic oxygen evolution showed stronger inhibition than the PSII photochemistry. The effects of the studied herbicides on both algal and cyanobacterial cells decreased in the following order: DCMU>isoproturon>ioxynil. Furthermore, we observed that the number of blocked PSII centers increased significantly after DCMU treatment (204–250 times) and slightly after ioxynil treatment (19–35 times) in comparison with the control cells. This study suggests that the herbicides affect not only the acceptor side but also the donor side of PSII by modifications of the Mn cluster of the oxygen-evolving complex. We propose that one of the reasons for the different PSII inhibitions caused by herbicides is their influence, in different extents, on the kinetic parameters of the oxygen-evolving reactions (the initial S0?S1 state distribution, the number of blocked centers SB, the turnover time of Si states, misses and double hits). The relationship between the herbicide-induced inhibition and the changes in the kinetic parameters is discussed.
机译:使用脉冲幅度调制研究了在绿藻(DCMU,Isoproturon)和苯酚型(IOxynil)和苯酚型(Ioxynil)除草剂与具有不同组织的有不同组织的Cyanobacteriums Ide(PSII)的肌腱杆菌(PSII)的疗效(PAM )通过极谱氧电极(克拉克型和慢速型)测量的叶绿素荧光和光合氧化。光合氧的进化显示比PSII光化学更强的抑制。研究的除草剂对藻类和蓝藻细胞的影响以下列顺序降低:DCMU> Isoproturon> Ioxynil。此外,我们观察到,与对照细胞相比,在DCMU治疗(204-250次)和略微略微后,封闭的PSII中心的数量显着增加,略微在IOxynil治疗(19-35次)。本研究表明除草剂不仅影响受体侧,而且影响PSII的供体侧,通过氧化复合物的Mn簇的修饰。我们提出由除草剂引起的不同PSII抑制的原因之一是它们的影响,在不同的范围内,在氧化反应的动力学参数(初始S0αS1状态分布,阻塞中心SB的数量, Si州,未命中和双击的周转时间)。讨论了除草剂诱导的抑制与动力学参数的变化之间的关系。

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