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首页> 外文期刊>Journal of bacteriology >Regulation of Bacillus subtilis macrofiber twist development by ions: effects of magnesium and ammonium.
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Regulation of Bacillus subtilis macrofiber twist development by ions: effects of magnesium and ammonium.

机译:离子调节枯草芽孢杆菌大纤维扭曲发展:镁和铵的作用。

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The steady-state twist of Bacillus subtilis macrofibers produced by growth in complex medium was found to vary as a function of the magnesium and ammonium concentrations. Four categories of macrofiber-producing strains that differed in their response to temperature regulation of twist were studied. Macrofibers were cultured in the complex medium TB used in previous experiments and in two derivative media, T (consisting of Bacto Tryptose), in which most strains produced left-handed structures, and Be (consisting of Bacto Beef Extract), in which right-handed macrofibers arose. In nearly all cases, increasing concentrations of magnesium led to the production of macrofibers with greater right-handed twist. Some strains unable to form right-handed structures as a function of temperature could be made to do so by the addition of magnesium. Inversion from right- to left-handedness in strain FJ7 induced by temperature shift-up was blocked by the addition of magnesium. The presence of magnesium during a high-temperature pulse did not block the establishment of "memory," although it delayed the initiation of the transient inversion following return to low temperature. The twist state of macrofibers grown without a magnesium supplement was not instantaneously affected by the addition of magnesium. Such fibers were, however, protected from lysozyme attack and associated relaxation motions. Lysozyme degradation of purified cell walls (both intact and lacking teichoic acid) was also blocked by the addition of magnesium. Ammonium ions influenced macrofiber twist development towards the left-hand end of the twist spectrum. Macrofiber twist produced in mixtures of magnesium and ammonium was strain and medium dependent.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:发现在复杂培养基中生长而产生的枯草芽孢杆菌大纤维的稳态扭曲随镁和铵浓度的变化而变化。研究了四类产生大纤维的菌株,它们对加捻温度调节的反应不同。在先前实验中使用的复杂培养基TB和两种衍生培养基T(由Bacto Tryptose组成)(其中大多数菌株产生左手结构)和Be(由Bacto Beef Extract)组成(其中右手使用-人造纤维出现了。在几乎所有情况下,镁浓度的增加都会导致大纤维的右旋扭曲。通过添加镁,可以使某些不能形成右旋结构随温度变化的应变。通过添加镁阻止了温度升高引起的FJ7菌株从右旋向左旋的转化。镁在高温脉冲过程中的存在没有阻止“记忆”的建立,尽管它延迟了返回低温后瞬态反转的开始。没有添加镁的大纤维的扭曲状态不会立即受到添加镁的影响。但是,这种纤维受到了溶菌酶的攻击和相关的松弛运动的保护。镁的加入也阻止了纯化细胞壁(完整的和缺乏磷壁酸的)的溶菌酶降解。铵离子影响大纤维向捻度谱左端的捻度发展。在镁和铵的混合物中产生的大纤维加捻取决于应变和介质。(摘要截断为250个字)

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