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首页> 外文期刊>Pesticide Biochemistry and Physiology >Induction time of Fe-SOD synthesis and activity determine different tolerance of two Desmodesmus (green algae) strains to chloridazon: a study with synchronized cultures.
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Induction time of Fe-SOD synthesis and activity determine different tolerance of two Desmodesmus (green algae) strains to chloridazon: a study with synchronized cultures.

机译:Fe-SOD合成的诱导时间和活性决定了两种Desmodesmus(绿藻)菌株对氯达松的不同耐受性:一项采用同步培养的研究。

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摘要

Cells of two Desmodesmus armatus strains (276-4a and 276-4d) grown asynchronously in batch cultures after 24-h treatment revealed different tolerance to chloridazon (photosynthetic herbicide) applied at a concentration of 3.45 mg L-1. To find time- and cell cycle-dependent biochemical reasons leading to such a difference, a population of young autospores of both strains synchronized by a light/dark (14/10) regime were exposed to chloridazon at the initiation of the light period. Chloridazon reduced the growth and number of divisions of cell strain 276-4d. In consequence, at the end of the dark phase the number of released autospores was reduced by 50% compared with the control. In contrast, the growth and reproductive processes of cell strains 276-4a was unaffected. Moreover, chloridazon treatment speeded up cell development, as a result of which the release of autospores took this process observed in the control cells over. There is a relationship between photosynthetic activity response to chloridazon and time-dependent changes in Fe-SOD content and activity. The energy trapped in the reaction centre (RC) was similar in both strains, but the amount of energy absorbed by RCs was twice as high in strain 276-4d as in 276-4a. In consequence, non-photochemical energy dissipation occurring in the cells of 276-4d strain far exceed the value obtained for 276-4a strain. The control cells of both strains differed significantly in the content of FSD 1 and FSD 2 proteins, whereas the differences in Fe-SOD isoforms activities were slight. The 8-fold increase in SOD content in CHD treated cells of strain 276-4a was associated with the transience of photosynthetic efficiency impairment. In CHD treated cells of strain 276-4d, neither activity of Fe-SOD nor FSDs protein content was instantly affected. Different response of developing cells of two Desmodesmus strains to CHD is influenced by the inherent features of cells; the short time required to induce stress adaptive mechanism involving chloroplastic Fe-SOD activity and biosynthesis in the cells of CHD tolerant strain 276-4a seems to play the key role, being an overriding on the high, but not induced in response to stress, FSD protein level and activity in cells of strain 276-4d.
机译:在24小时处理后分批培养的两种Desmodesmus armatus菌株(276-4a和276-4d)的细胞异步培养,显示出对浓度为3.45 mg L -1 。为了找到导致这种差异的时间和细胞周期依赖性的生化原因,在光照期开始时,通过亮/暗(14/10)方案同步的两个菌株的年轻自孢子群体都暴露于氯达宗。氯虫酮减少了细胞株276-4d的生长和分裂数。因此,在黑暗阶段结束时,与对照相比,释放的自生孢子数量减少了50%。相反,细胞株276-4a的生长和繁殖过程不受影响。此外,氯哒嗪处理加速了细胞发育,其结果是自孢子的释放使这一过程在对照细胞中得以观察。对氯达宗的光合作用响应与Fe-SOD含量和活性随时间的变化之间存在关系。在两种菌株中,捕获在反应中心(RC)中的能量都相似,但是在276-4d中,RCs吸收的能量是在276-4a中的两倍。因此,在276-4d菌株的细胞中发生的非光化学能量耗散远远超过了276-4a菌株获得的值。两种菌株的对照细胞在FSD 1和FSD 2蛋白含量上均存在显着差异,而Fe-SOD亚型活性差异很小。 276-4a菌株经CHD处理的细胞中SOD含量增加8倍与光合作用效率受损的短暂性有关。在276-4d菌株的经CHD处理的细胞中,Fe-SOD活性和FSDs蛋白质含量均不会立即受到影响。两种Desmodesmus菌株的发育细胞对CHD的不同反应受细胞固有特征的影响。在耐CHD菌株276-4a的细胞中诱导涉及叶绿体Fe-SOD活性和生物合成的应力适应机制所需的时间很短,似乎起着关键作用,在高水平上是最重要的,但对压力FSD却没有诱导276-4d菌株细胞中的蛋白质水平和活性。

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