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Factors Affecting Variability in Time between Addition of Nutrient Germinants and Rapid Dipicolinic Acid Release during Germination of Spores of Bacillus Species ▿ †

机译:芽孢杆菌芽孢萌发过程中营养发芽剂添加与快速吡啶二羧酸释放之间时间变化的影响因素

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摘要

The simultaneous nutrient germination of hundreds of individual wild-type spores of three Bacillus species and a number of Bacillus subtilis strains has been measured by two new methods, and rates of release of the great majority of the large pool of dipicolinic acid (DPA) from individual spores of B. subtilis strains has been measured by Raman spectroscopy with laser tweezers. The results from these analyses and published data have allowed a number of significant conclusions about the germination of spores of Bacillus species as follows. (i) The time needed for release of the great majority of a Bacillus spore's DPA once rapid DPA release had begun (ΔTrelease) during nutrient germination was independent of the concentration of nutrient germinant used, the level of the germinant receptors (GRs) that recognize nutrient germinants used and heat activation prior to germination. Values for ΔTrelease were generally 0.5 to 3 min at 25 to 37°C for individual wild-type spores. (ii) Despite the conclusion above, germination of individual spores in populations was very heterogeneous, with some spores in wild-type populations completing germination ≥15-fold slower than others. (iii) The major factor in the heterogeneity in germination of individual spores in populations was the highly variable lag time, Tlag, between mixing spores with nutrient germinants and the beginning of ΔTrelease. (iv) A number of factors decrease spores' Tlag values including heat activation, increased levels of GRs/spore, and higher levels of nutrient germinants. These latter factors appear to affect the level of activated GRs/spore during nutrient germination. (v) The conclusions above lead to the simple prediction that a major factor causing heterogeneity in Bacillus spore germination is the number of functional GRs in individual spores, a number that presumably varies significantly between spores in populations.
机译:通过两种新方法测定了三种芽孢杆菌和许多枯草芽孢杆菌菌株的数百种野生型孢子的同时养分萌发,以及从中提取的大部分二吡啶甲酸(DPA)释放速率枯草芽孢杆菌菌株的单个孢子已经用激光镊子通过拉曼光谱法测量。这些分析和公开数据的结果得出了一些有关芽孢杆菌属芽孢萌发的重要结论,如下所述。 (i)在营养发芽过程中,一旦开始快速释放DPA(ΔT释放),释放芽孢杆菌绝大多数DPA所需的时间与所使用的营养发芽剂浓度,发芽受体(GRs)的水平无关萌发前使用的营养萌发剂和热活化剂。对于单个野生型孢子,ΔT释放的值通常在25至37℃下为0.5至3分钟。 (ii)尽管有上述结论,但种群中单个孢子的萌发非常不均匀,其中野生型种群中的一些孢子完成萌发的速度比其他种群慢15倍。 (iii)种群中单个孢子萌发异质性的主要因素是混合孢子与营养发芽剂之间和ΔT释放开始之间的高度可变的滞后时间Tlag。 (iv)许多因素会降低孢子的Tlag值,包括热活化,增加的GRs /孢子水平和较高的营养发芽水平。后面这些因素似乎在营养物发芽期间影响活化的GRs /孢子的水平。 (v)以上结论导致一个简单的预测,即引起芽孢杆菌芽孢异质性的一个主要因素是单个孢子中功能性GR的数量,该数量在种群中的孢子之间可能有很大差异。

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