首页> 美国卫生研究院文献>Journal of Bacteriology >Inducement of a Heat-Shock Requirement for Germination and Production of Increased Heat Resistance in Bacillus fastidiosus Spores by Manganous Ions
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Inducement of a Heat-Shock Requirement for Germination and Production of Increased Heat Resistance in Bacillus fastidiosus Spores by Manganous Ions

机译:锰离子诱导的耐热休克芽孢杆菌萌发和耐热性增加的产生

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摘要

Bacillus fastidiosus, which requires uric acid or allantoin, grows and sporulates on a simple medium containing 59.5 mM uric acid, 5.7 mM K2HPO4, and 2% agar in distilled water. Seventy to ninety percent sporulation was achieved in 96 h. Spores obtained on this medium do not need a heat shock prior to germination. The necessary germination conditions for this organism are 30 C, phosphate or this(hydroxymethyl)aminomethane buffer at pH 7.0, and 5.95 mM uric acid. Sporulation occurred earlier (48 h) and with higher frequency (greater than 99%) when Mn2+ was added to the growth medium. However, these spores germinated only after heat activation (70 C, 30 min). The effectiveness of heat activation was directly dependent upon the concentration of Mn2+ in the growth medium; 10−5 M Mn2+ was the minimal concentration for the effect. This phenomenon was not found upon addition of Ca2+, Mg2+, Fe2+, Zn2+, or Cu2+ to the medium. The Mn2+ content of the spores depended upon the concentration of Mn2+ in the sporulation medium. There was a significant difference in heat resistance between spores harvested from unsupplemented medium and those harvested from medium supplemented with 5 × 10−5 M Mn2+. A D85 C value of 6.5 min was determined with the former, whereas the latter had a value of 17.0 min. Very little change in either Ca2+ or dipicolinic acid content was detected in spores harvested from various Mn2+-supplemented media. Thus Mn2+ may play a role in the inducement of the heat-shock requirement and the formation of spores with increased heat resistance.
机译:要求尿酸或尿囊素的fastidiosus芽孢杆菌在含有59.5 mM尿酸,5.7 mM K2HPO4和2%琼脂的蒸馏水中的简单培养基上生长并孢子形成。 96小时内可形成百分之七十至百分之九十的孢子。在这种培养基上获得的孢子在发芽之前不需要热激。该生物的必要发芽条件是30 C,磷酸盐或pH 7.0的该(羟甲基)氨基甲烷缓冲液和5.95 mM尿酸。当向培养基中添加Mn 2 + 时,孢子形成发生的时间较早(48 h),且发生频率更高(大于99%)。然而,这些孢子仅在热活化(70℃,30分钟)后发芽。热活化的有效性直接取决于生长培养基中Mn 2 + 的浓度。 10 −5 M Mn 2 + 是该效应的最低浓度。添加Ca 2 + ,Mg 2 + ,Fe 2 + ,Zn 2 + 或Cu 2 + 移至介质。孢子中Mn 2 + 的含量取决于孢子形成介质中Mn 2 + 的浓度。从未补充培养基中收获的孢子与补充有5×10 −5 M Mn 2 + 的培养基收获的孢子的耐热性差异显着。用前者测定D85 C值为6.5分钟,而后者则为17.0分钟。从各种添加了Mn 2 + 的培养基中收获的孢子中,Ca 2 + 或二吡啶甲酸的含量变化很小。因此,Mn 2 + 可能在热休克需求的诱导和耐热性增强的孢子的形成中起作用。

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