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Location and Consequences of 1,1,1-Trichloro-2,2-bis(p-Chlorophenyl) Ethane Uptake by Bacillus megaterium

机译:巨大芽孢杆菌摄取1,1,1-三氯-2,2-双(对氯苯基)乙烷的位置和结果

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No detrimental effects of 1,1,1-trichloro-2,2-bis(p-chlorophenyl)ethane (DDT) were observed when cells of Bacillus megaterium were grown from small inocula in nutrient media containing up to 100 μg of DDT/ml. However, when the ratio of DDT to biomass of resting cells was held constant, levels of DDT as low as 1 μg/ml (0.5 μg/mg of cell dry weight) enhanced the rate of death in the population. The lethal action of DDT was both time- and dose-dependent so that higher doses required less time to effect the same killing than did lower doses. Intact cells bound a maximum of about 1.7 μg of DDT/mg of cell dry weight, of which about 75% was localized in the protoplast membrane. Much of the bound DDT was subsequently lost to the suspending medium and the aqueous stability of the returned DDT was enhanced, possibly by association with solubilized cell materials. A small quantity of bound DDT was converted to 1,1-dichloro-2,2-bis(p-chlorophenyl)ethane, which was released from cells somewhat faster than DDT. Apparently the lethal action of DDT was related to its binding in the membrane, but respiration was not inhibited. The atypical macroscopic appearance of membranes isolated from treated cells suggested that cell death may result from altered membrane chemistry.
机译:当从大小不超过100μgDDT / ml的营养培养基中的小接种物中培养出巨大芽孢杆菌细胞时,未观察到1,1,1-三氯-2,2-双(对氯苯基)乙烷(DDT)的有害作用。但是,当DDT与静止细胞生物量的比率保持恒定时,DDT的水平低至1μg/ ml(0.5μg/ mg细胞干重)会增加种群的死亡率。滴滴涕的致死作用既与时间有关,又与剂量有关,因此与较低剂量相比,较高剂量需要更少的时间来实现相同的杀灭作用。完整细胞结合最大约1.7μgDDT / mg细胞干重,其中约75%位于原生质体膜中。随后,许多结合的滴滴涕失去了悬浮介质,并可能通过与溶解的细胞物质结合而增强了返回滴滴涕的水稳定性。少量结合的滴滴涕被转化为1,1-二氯-2,2-双(对氯苯基)乙烷,后者从细胞中释放的速度比滴滴涕快。显然,滴滴涕的致死作用与其在膜中的结合有关,但呼吸作用并未受到抑制。从处理过的细胞中分离出的膜的非典型宏观外观表明,细胞死亡可能是由于膜化学性质的改变引起的。

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