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首页> 外文期刊>Annals of microbiology >The influence of inherent properties of building limestones on their bioreceptivity to phototrophic microorganisms
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The influence of inherent properties of building limestones on their bioreceptivity to phototrophic microorganisms

机译:建筑石灰石的固有性质对其对光养微生物的生物接受度的影响

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摘要

The influence of open porosity, water absorption capillarity, water vapour permeability, surface roughness, stone pH and chemical composition on stone bioreceptivity to phototrophic microorganisms was assessed by means of a thorough stone characterisation with subsequent artificially inoculation of limestone samples with a multi-species phototrophic culture and placing them inside a growth chamber for 90 days. A principal component analysis and an analysis of variance (ANOVA) were carried out in order to evaluate the direct relationships between stone bioreceptivity and petrophysical properties. From the principal component analysis, two main components were obtained and assigned a petrophysical/photosynthetic biomass meaning. Stone bioreceptivity, quantified by the amount of chlorophyll a and intensity of chlorophyll a fluorescence present on the stone samples after 90 days-incubation, was included in both principal components. The first component was linked to the amount of chlorophyll a and was highly and linearly associated to capillarity and roughness, and less associated with open porosity and water vapour permeability. The second component, linked to the intensity of chlorophyll a fluorescence measured on the stone surfaces, was not linearly associated with the petrophysycal properties, showing the fallibility of this in vivo chlorophyll quantification technique on the estimation of photosynthetic biomass growing on stone materials, particularly when endolithic growth occurs.
机译:通过彻底的石材表征,然后人工接种多物种具有光养性的石灰石样品,评估了开孔率,吸水率,水蒸气透过率,表面粗糙度,石材的pH值和化学成分对石材对光养微生物的生物接受度的影响。培养并将其放在生长室内90天。为了评估石材生物接受度与岩石物理特性之间的直接关系,进行了主成分分析和方差分析(ANOVA)。从主成分分析中,获得了两个主要成分并赋予了岩石物理/光合生物质含义。在两个主要成分中均包含了石材的生物接受度,该指标由叶绿素a的数量和叶绿素a荧光强度(经过90天温育后存在于石材上)量化。第一个成分与叶绿素a的数量有关,并且与毛细作用和粗糙度高度线性相关,而与开放孔隙度和水蒸气渗透性较少相关。第二个成分与石材表面上测得的叶绿素a荧光强度有关,与岩石的叶绿素特性没有线性关系,显示出这种体内叶绿素定量技术在估算石材上生长的光合生物量时的可行性。发生内生石块生长。

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