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Production of lipopeptides by Bacillus subtilis in solid status fermentation and their application in antifungal and heavy metal remove

机译:枯草芽孢杆菌在固体地位发酵中生产脂肽及其在抗真菌和重金属中的应用

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Lipopeptides have many useful applications in antifungal activity, biomedical and pharmaceutical applications. Due to their unique structure, they have the potential to be a substitute for many antibiotics. At present, the main way to produce lipopeptides is at the laboratory level, and the yield is not very optimistic. In this study, under the premise of selecting agricultural and sideline products as fermentation substrates, the fermentation was carried out by Bacillus subtilis CCTCCM207209, and a series of conditions ranging from medium composition to fermentation conditions were optimized. Results revealed that the optimal conditions for maximum lipopeptides production and total antifungal activity were 3 g soybean flour, 2 g rice straw and 3g wheat bran as the solid substrate in 250ml erlenmeyer with initial pH 7.0, moisture content 60% and a 10% inoculum level at 32°C for 5 days. Under these conditions, the experimental yield of lipopeptides reached 70.98 mg/gds and the total antifungal activity reached 659.03 U/gds. In addition, this study also found the application of lipopeptides in the removal of heavy metal ions. Under suitable conditions, it has excellent removal effect on heavy metal ions Cd~(2+) and Pb~(2+). Through this research, firstly, we can use cheaper agricultural by products to produce lipopeptides, and secondly, we can use the fermentation products to remove heavy metal pollution, which adds a new way for the removal of heavy metals.
机译:脂肽在抗真菌活性,生物医学和药物应用中具有许多有用的应用。由于它们独特的结构,它们有可能成为许多抗生素的替代品。目前,生产脂肽的主要途径在实验室水平,产量不是很乐观。在这项研究中,在选择农业和缺水型产品作为发酵底物的前提下,通过枯草芽孢杆菌CCTCCM207209进行发酵,并优化了从培养基组合物到发酵条件的一系列条件进行了优化。结果表明,最大脂肽生产和总抗真菌活性的最佳条件为3g大豆面粉,2克稻草和3g小麦麸皮,在250ml Erlenmeyer中,初始pH 7.0,含水量60%和10%的接种水平在32℃下5天。在这些条件下,脂肽的实验产率达到70.98mg / gds,并且总抗真菌活性达到659.03u / gds。此外,本研究还发现脂肪肽在除去重金属离子中的应用。在合适的条件下,对重金属离子Cd〜(2+)和Pb〜(2+)具有优异的去除效果。通过这项研究,首先,我们可以通过产品使用更便宜的农业生产脂肪肽,其次,我们可以使用发酵产物去除重金属污染,这为去除重金属增加了一种新的方式。

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