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冷胁迫诱导嗜冷根瘤菌菌株的呼吸途径向乳酸糖酵解转变。

Cold stress induces switchover of respiratory pathway to lactate glycolysis in psychrotrophic Rhizobium strains.

作者信息

Sardesai N, Babu C R

机构信息

Department of Botany, University of Delhi, Delhi-110 007, India.

出版信息

Folia Microbiol (Praha). 2000;45(2):177-82. doi: 10.1007/BF02817420.

Abstract

Two psychrotrophic strains of Rhizobium, DDSS69, a non-cold acclimated strain, and ATR1, a cold acclimated strain, were subjected to cold stress. A 4-fold increase in the specific activity of lactate dehydrogenase (LDH) was characteristic for cold stressed cells of DDSS69, whereas ATR1 showed a higher LDH activity in general, which increased 1.5-fold under cold stress. Cold sensitive mutants of DDSS69 which could not grow below 15 degrees C, in contrast to the wild type which could grow at 5 degrees C, were isolated using Tn5-tagged mutagenesis. These mutants showed a 40% lower LDH activity than the wild type grown at 5 degrees C that was comparable to the wild type grown at 15 degrees C. High specific activity of succinic dehydrogenase (SDH) at 28 degrees C in both strains and mutants indicated that aerobic respiration via the citrate cycle is the normal mode of saccharide utilization. Shifts to lower temperatures decreased the specific activity of SDH. However, alcohol dehydrogenase (ADH) activity remained very low in both the strains and the mutants at low temperatures indicating that a shift from aerobic saccharide metabolism to anaerobic one under cold stress involves lactate glycolysis rather than alcohol fermentation. There was an increase in membrane-bound ATPase activity under cold stress which is correlated to higher LDH activity. These data show that, in psychrotrophic Rhizobium strains, cold stress induces a switchover of respiratory metabolism from aerobic to anaerobic pathway, especially lactate glycolysis.

摘要

两种耐冷性根瘤菌菌株,未冷驯化的菌株DDSS69和冷驯化的菌株ATR1,接受了冷胁迫处理。乳酸脱氢酶(LDH)的比活性增加4倍是DDSS69冷胁迫细胞的特征,而ATR1总体上显示出较高的LDH活性,在冷胁迫下增加了1.5倍。利用Tn5标签诱变分离出DDSS69的冷敏感突变体,与能在5℃生长的野生型相比,这些突变体在15℃以下不能生长。这些突变体的LDH活性比在5℃生长的野生型低40%,与在15℃生长的野生型相当。两种菌株和突变体在28℃时琥珀酸脱氢酶(SDH)的比活性较高,表明通过柠檬酸循环的有氧呼吸是糖类利用的正常模式。温度降低会降低SDH的比活性。然而,在低温下,两种菌株和突变体中的乙醇脱氢酶(ADH)活性都非常低,这表明在冷胁迫下从有氧糖代谢转变为无氧糖代谢涉及乳酸糖酵解而非酒精发酵。冷胁迫下膜结合ATP酶活性增加,这与较高的LDH活性相关。这些数据表明,在耐冷性根瘤菌菌株中,冷胁迫诱导呼吸代谢从有氧途径转变为无氧途径,尤其是乳酸糖酵解。

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