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Systematic investigation of germination responses of Bacillus subtilis spores in different high-salinity environments

机译:不同高盐度环境中枯草芽孢杆菌孢子孢子菌萌发应答的系统研究

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High-salinity environments play an increasingly important role in ecology regarding soil salinization due to human-induced processes, but also need to be considered in terms of natural soil desiccation and extreme habitats. It has been shown previously that spore germination of the ubiquitous soil bacterium Bacillus subtilis is detrimentally affected by the presence of high NaCl concentrations, but the underlying mechanisms and effects of other salts remained obscure. To address these two points, we performed a systematic analysis with 32 different salts using spectrophotometric and microscopic methods. It could be shown that inhibitory strength varies considerably among different salts. Although osmotic effects seem to play an important role, ionic composition and concentration (especially of the anion) as well as chemical properties seem to be decisive for the extent of germination inhibition. At the current state of knowledge, fluxes of ions, Ca2+-DPA and water are likely affected by all salts, whereas the exact inhibition mechanism of each salt might further depend on the respective properties of the involved ions. Hence, the observed inhibition likely is a result of several phenomena interacting with each other. Altogether this study highlights the complex impact of ionic environments on the life cycle of spore formers.
机译:高盐度环境在生态学中发挥着越来越重要的作用,由于人类诱导的过程,还需要在天然土壤干燥和极端栖息地方面考虑。先前已被证明,孢子萌发的普罗米特土壤枯草芽孢杆菌枯草芽孢杆菌受到高NaCl浓度存在的不利影响,但其他盐的潜在机制和效果仍然模糊不清。为了解决这两点,我们使用分光光度法和微观方法对32种不同的盐进行了系统分析。可以表明,抑制强度在不同的盐之间变化很大。虽然渗透效应似乎发挥着重要作用,但离子组成和浓度(特别是阴离子)以及化学性质似乎对发芽抑制的程度具有决定性。在当前的知识状态下,所有盐可能影响离子,Ca2 + -DPa和水的助熔剂,而每种盐的确切抑制机制可能进一步取决于所涉及的离子的各自性质。因此,观察到的抑制可能是彼此相互作用的几种现象的结果。这项研究突出了离子环境对孢子成型器生命周期的复杂影响。

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