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首页> 外文期刊>Journal of Microbiological Methods >Survival and phosphate solubilisation activity of desiccated formulations of Penicillium bilaiae and Aspergillus niger influenced by water activity
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Survival and phosphate solubilisation activity of desiccated formulations of Penicillium bilaiae and Aspergillus niger influenced by water activity

机译:生存和磷酸盐溶解活性的青霉菌和曲霉(Aspergillus Niger受水活性)的溶解活性

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The impact of formulation and desiccation on the shelf life of phosphate (P)-solubilising microorganisms is often under-studied, particularly relating to their ability to recover P-solubilisation activity. Here, Penicilllium bilaiae and Aspergillus niger were formulated on vermiculite (V) alone, or with the addition of protectants (skimmed milk (V + SM) and trehalose (V + T)), and on sewage sludge ash with (A + N) and without nutrients (A), and dried in a convective air dryer. After drying, the spore viability of P. bilaiae was greater than that of A. niger. V formulations achieved the highest survival rates without being improved by the addition of protectants. P. bilaiae formulated on V was selected for desiccation in a fluidised bed dryer, in which several temperatures and final water activities (aw) were tested. The highest spore viability was achieved when the formulation was dried at 25 degrees C to a final aw & 0.3. During three months' storage, convective air dried formulations were stable for both strains, except in the presence of skimmed milk for P. bilaiae which saw a decrease in spore viability. In the fluidised bed-dried formulations, when aw & 0.3, the loss in viability was higher, especially when stored at 20 degrees C, than at aw & 0.1. P-solubilisation activity performed on ash was preserved in most of the formulations after desiccation and storage. Overall, a low drying temperature and high final aw positively affected P. bilaiae viability, however a trade-off between higher viability after desiccation and shelf life should be considered. Further research is needed to optimise viability over time and on more sustainable carriers.
机译:制剂和干燥对磷酸盐(P) - 溶解微生物的保质期的影响通常是研究,特别是与它们回收p-溶解活性的能力有关。在这里,单独的蛭石(V)或加入保护剂(脱脂牛奶(V + SM)和海藻糖(V + T)),以及(A + N)的污水污泥灰分(a + n),没有营养素(a),并在对流空气干燥器中干燥。干燥后,P.Bilaiae的孢子生存力大于A.尼日尔的孢子生存力。 V配方实现了最高的存活率,而不会通过添加保护剂改善。在v上配制的B.Bilaiae选择在流化床干燥器中干燥,其中测试了几种温度和最终水活(AW)。当将配方在25℃干燥至最终AW&amp时,实现了最高的孢子活力。 0.3。在三个月的储存期间,除了在Bileaia的脱脂乳的脱脂乳的存在外,两种菌株对两种菌株稳定的对流气体干燥制剂稳定。在流化床干燥的配方中,当AW& 0.3,活力损失较高,尤其是在20摄氏度时储存而不是在AW& LT; 0.1。在干燥和储存后,在大部分制剂中保存在灰分中进行的p-溶解活性。总体而言,低干燥温度和最终的最终AW积极影响的P. Bilaiae活力,但是在干燥后,应考虑在干燥和保质期后的更高的活力之间的权衡。需要进一步的研究来优化随着时间的推移和更可持续的运营商的可行性。

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