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An Improved Method for Establishing Accurate Water Potential Levels at Different Temperatures in Growth Media

机译:建立生长介质中不同温度下准确水势水平的一种改进方法

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摘要

NaCl, KCl, or PEG (polyethylene glycol)-amended potato dextrose broth (PDB), and potato dextrose agar (PDA) are essential for pure culture studies of water stress on fungi. Direct information on the actual water potential (WP) of this salt-amended PDB and PDA is lacking. Much fungal research in the past calculated WP of these salt-amended growth media by adding the WP of their constituents taken from individual salt dilution studies. But the WP of any complex solution will be modified by the level of synergism between its solutes. This study presents evidence of change in NaCl concentration due to synergism for attaining the same level of WP in NaCl solution, and NaCl amended PDB and PDA. The relation between WP and temperature and WP and salt concentration is also modified depending on the number of solutes in a growth medium. The WP of PEG-amended PDB increases with rising temperature, while that of NaCl/KCl amended PDB and PDA decreases with the increase of temperature. These results can be useful for doing pure culture studies on the biology and modeling the growth of air, water, and soil-borne fungi important in the food and agriculture industry and in terrestrial and aquatic ecosystems.
机译:NaCl,KCl或PEG(聚乙二醇)改良的马铃薯葡萄糖肉汤(PDB)和马铃薯葡萄糖琼脂(PDA)对于水分对真菌的纯培养研究至关重要。缺少有关此盐改良PDB和PDA的实际水势(WP)的直接信息。过去,许多真菌研究都通过添加从各个盐稀释研究中提取的其组成成分的WP来计算这些盐改良生长培养基的WP。但是,任何复杂溶液的WP都会因其溶质之间的协同作用水平而改变。这项研究提供了证据表明,由于协同作用,NaCl溶液中的WP达到相同水平,NaCl浓度发生了变化,NaCl修改了PDB和PDA。 WP和温度之间的关系以及WP和盐浓度之间的关系也根据生长培养基中溶质的数量进行了修改。 PEG修饰的PDB的WP随着温度的升高而增加,而NaCl / KCl修饰的PDB的WP随着温度的升高而降低。这些结果对于进行生物学上的纯培养研究以及对空气,水和土壤传播的真菌的生长建模非常有用,该空气对粮食和农业产业以及陆地和水生生态系统都很重要。

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