首页> 外文OA文献 >Adaptation to nutrient starvation in Rhizobium leguminosarum bv. phaseoli: analysis of survival, stress resistance, and changes in macromolecular synthesis during entry to and exit from stationary phase.
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Adaptation to nutrient starvation in Rhizobium leguminosarum bv. phaseoli: analysis of survival, stress resistance, and changes in macromolecular synthesis during entry to and exit from stationary phase.

机译:豆科根瘤菌对营养饥饿的适应。菜豆:进入和退出固定相期间的存活率,抗逆性和大分子合成变化的分析。

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摘要

The nitrogen-fixing bacterium Rhizobium leguminosarum bv. phaseoli often has to survive long periods of starvation in the soil, when not in a useful symbiotic relationship with leguminous plants. We report that it can survive carbon, nitrogen, and phosphorus starvation for at least 2 months with little loss of viability. Upon carbon starvation, R. leguminosarum cells were found to undergo reductive cell division. During this period, they acquired the potential for long-term starvation-survival, levels of protein, DNA, and RNA synthesis were decreased to base levels, and pool mRNA was stabilized. The starved cells are ready to rapidly restart growth when nutrients become available. Upon addition of fresh nutrients, there is an immediate increase in the levels of macromolecular synthesis, pool mRNA destabilizes, and the cultures enter exponential growth within 5 to 8 h. The starved cells were cross-protected against pH, heat, osmotic, and oxidative shock. These results provide evidence for a general starvation response in R. leguminosarum similar to that previously found in other bacteria such as Escherichia coli and Vibrio sp.
机译:固氮细菌豆科根瘤菌。当与豆科植物没有有用的共生关系时,菜豆通常必须在土壤中长期饥饿生存。我们报告说它可以在碳,氮和磷饥饿状态下存活至少2个月,而几乎没有活力丧失。在碳饥饿时,发现豆科植物念珠菌细胞经历还原性细胞分裂。在此期间,他们获得了长期饥饿生存的潜力,蛋白质,DNA和RNA的合成水平降低至基本水平,并且库mRNA稳定了。营养充足时,饥饿的细胞已准备好迅速重新开始生长。添加新鲜营养素后,大分子合成水平立即增加,池mRNA不稳定,培养物在5至8小时内进入指数增长。对饥饿的细胞进行交叉保护,使其不受pH值,热,渗透和氧化休克的影响。这些结果提供了证据,证明豆科植物普遍存在饥饿反应,类似于先前在其他细菌(如大肠杆菌和弧菌)中发现的饥饿反应。

著录项

  • 作者

    Thorne, S H; Williams, H D;

  • 作者单位
  • 年度 1997
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  • 原文格式 PDF
  • 正文语种 en
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