首页> 外文期刊>Advances in Microbiology >Production of Invertases by Anamorphic (Aspergillus nidulans) and Teleomorphic (Emericela nidulans) Fungi under Submerged Fermentation Using Rye Flour as Carbon Source
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Production of Invertases by Anamorphic (Aspergillus nidulans) and Teleomorphic (Emericela nidulans) Fungi under Submerged Fermentation Using Rye Flour as Carbon Source

机译:黑麦粉作为碳源的深层发酵下变形酵母和构形真菌的转化酶生产

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The production of invertases by anamorph (A. nidulans) and teleomorph (E. nidulans) was investigated. The best level of extracellular enzymatic production for anomorph was obtained in Khanna medium containing sucrose as carbon source, whereas for teleomorph the best production was archived using M5 medium containing inulin as carbon source. Despite this, rye flour was selected as carbon source. The extracellular enzyme production was higher for teleomorph than that observed for anomorph for all carbon sources used. The enzyme production was inhibited by the addition of fructose and glucose in the medium containing rye flour as carbon source. The best conditions to recover the higher enzymatic activity were temperature of 54℃ - 62℃ and pH of 4.8 5.6 for both enzymes determined by experimental design (CCRD). The stability of the temperatures at 40℃ and 50℃were similar for both enzymes. The invertases from the anomorph and teleomorph were activated by Mn2+, but the response of each one towards the presence of this cation was different with best activation observed for the anomorph enzyme (+80%). The extracellular enzymes were able to hydrolyze inulin, sucrose and raffinose. However, the affinity was higher for sucrose than inulin. In conclusion, the carbon source assimilation and the invertase production, as well as the enzymes properties, were different for the anomorph and teleomorph mycelia.
机译:研究了无性型(A. nidulans)和远形型(E. nidulans)产生的转化酶。在含有蔗糖作为碳源的Khanna培养基中获得了最佳的异型胞外酶生产水平,而对于远距变型,使用菊粉作为碳源的M5培养基获得了最佳产量。尽管如此,黑麦粉仍被选作碳源。在所有使用的碳源中,远晶型的细胞外酶产量均高于无形态型。通过在含有黑麦粉作为碳源的培养基中添加果糖和葡萄糖,抑制了酶的产生。通过实验设计(CCRD)确定的两种酶的最佳条件是恢复较高的酶活性,温度分别为54℃-62℃和pH值为4.8 5.6。两种酶在40℃和50℃的温度下的稳定性相似。 Mn2 +激活了无定型和远变型的转化酶,但每个阳离子对这种阳离子的反应都不同,其中对无定型酶的最佳活化作用为(80%)。细胞外酶能够水解菊粉,蔗糖和棉子糖。但是,蔗糖的亲和力高于菊粉。总之,碳源同化和转化酶的产生,以及酶的性质,对于无定型和远变型菌丝体都是不同的。

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