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Culture Age Temperature and pH Affect the Polyol and Trehalose Contents of Fungal Propagules

机译:培养年龄温度和pH影响真菌繁殖体的多元醇和海藻糖含量

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摘要

The growth and conidial physiology of the entomopathogenic fungi Beauveria bassiana, Metarhizium anisopliae, and Paecilomyces farinosus were studied under different conditions. The effects of culture age (up to 120 days), temperature (5 to 35(deg)C), and pH (2.9 to 11.1) were determined. Growth was optimal at pH 5 to 8 for each isolate and between 20 and 35(deg)C, depending on the isolate. The predominant polyol in conidia was mannitol, with up to 39, 134, and 61 mg g of conidia(sup-1) for B. bassiana, M. anisopliae, and P. farinosus, respectively. Conidia of M. anisopliae contained relatively small amounts of lower-molecular-weight polyols and trehalose (less than 25 mg g(sup-1) in total) in all treatments. Conidia of B. bassiana and P. farinosus contained up to 30, 32, and 25 mg of glycerol, erythritol, and trehalose, respectively, g(sup-1), depending on the treatment. Conidia of P. farinosus contained unusually high amounts of glycerol and erythritol at pH 2.9. The apparent effect of pH on gene expression is discussed in relation to the induction of a water stress response. To our knowledge, this is the first report of polyols and trehalose in fungal propagules produced over a range of temperature or pH. Some conditions and harvesting times were associated with an apparent inhibition of synthesis or accumulation of polyols and trehalose. This shows that culture age and environmental conditions affect the physiological quality of inoculum and can thereby determine its potential for biocontrol.
机译:在不同条件下研究了昆虫病原性球孢白僵菌,南方僵菌和粉状拟青霉的生长和分生孢子生理。确定了培养年龄(长达120天),温度(5至35℃)和pH(2.9至11.1)的影响。对于每种分离物,在pH 5至8以及20至35℃之间的最佳生长情况,具体取决于分离物。分生孢子中主要的多元醇是甘露醇,对于球孢白僵菌(B. bassiana),分枝杆菌分枝杆菌(M. anisopliae)和粉饰假单胞菌(P. farinosus)分别具有最高39、134和61 mg g分生孢子(sup-1)。在所有处理中,M。anisopliae的分生孢子均包含相对少量的低分子量多元醇和海藻糖(总计少于25 mg g(sup-1))。根据治疗的不同,球孢杆菌和粉状孢霉的分生孢子分别含有多达30、32和25 mg甘油,赤藓糖醇和海藻糖g(sup-1)。在pH 2.9时,粉状疟原虫的分生孢子中含有异常大量的甘油和赤藓糖醇。关于诱导水分胁迫反应,讨论了pH对基因表达的明显影响。据我们所知,这是在一定温度或pH范围内生产的真菌繁殖体中多元醇和海藻糖的首次报道。一些条件和收获时间与多元醇和海藻糖的合成或积累的明显抑制有关。这表明培养年龄和环境条件影响接种物的生理质量,从而可以确定其生物防治潜力。

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