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首页> 外文期刊>World Journal of Microbiology and Biotechnology >Molecular identification of a novel inulinolytic fungus isolated from and grown on tubers of Helianthus tuberosus and statistical screening of medium components
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Molecular identification of a novel inulinolytic fungus isolated from and grown on tubers of Helianthus tuberosus and statistical screening of medium components

机译:从菊芋块茎上分离和生长的一种新型溶菌真菌的分子鉴定和培养基成分的统计筛选

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摘要

Of 24 fungi belonging to more than five genera isolated from tubers of rotten Helianthus tuberosus, 11-inulinolytic active isolates were able to develop halo zones around their fungal colonies, indicating inulinase activity. Alternaria, Aspergillus, Fusarium, Pencillium and Trichoderma were the most common inulinolytic genera, representing more than 90 % of the total positive inulinolytic fungi. Aspergillus tamarii and Pencillium citrinum quantitatively recorded better growth (5.5 and 4.7 mg ml?1) and inulinase production (21.53 and 20.15 U ml?1) in submerged culture. The enzyme preparation showed also invertase activity. Aspergillus tamarii, as the most potent producer of inulinase, was identified using the Inter Transcribed Spacer marker. The sequence comparisons showed that our molecularly identified strain (GU295949) is related more closely to A. tamarii strains of the gene bank. Statistical screening using the fractional factorial Plackett-Burman design with 12 run was applied for screening ten variables, the low levels of pH (4.8), inoculum size (103 spore g?1), NH4NO3 (1.0 mg g?1) and MgSO4 (0.12 mg g?1), were the most significant variables on A. tamarii inulinase production. The high inulinase/invertase ratio (1.841–4.293) classified the enzyme preparation as inulinases, which can be used efficiently in production of fructose syrup from tubers of H. tuberosus.
机译:从腐烂的向日葵块茎中分离出的超过五个属的24种真菌中,有11种可分解胰岛素的活性分离物能够在其真菌菌落周围形成晕圈区,表明菊粉酶活性。交替链霉菌,曲霉,镰刀菌,青霉菌和木霉菌是最常见的inulinolytic属,占阳性inulinolytic真菌总数的90%以上。在水下培养中,塔马里曲霉和柑桔青霉在生长上分别表现出更好的生长(5.5和4.7 mg ml?1 )和菊粉酶的产生(21.53和20.15 U ml?1 )。酶制剂也显示出转化酶活性。使用Inter Transcribed Spacer标记物鉴定出塔玛利曲霉是菊粉酶最有效的生产者。序列比较表明,我们的分子鉴定菌株(GU295949)与基因库中的塔玛曲霉菌株更紧密相关。采用分数阶乘Plackett-Burman设计进行12次统计筛选,筛选出10个变量,包括低pH(4.8),接种量(103 孢子g?1 ),NH4 。 sub> NO3 (1.0 mg g?1 )和MgSO4 (0.12 mg g?1 )是塔玛利菊粉菊粉酶生产中最重要的变量。菊粉/转化酶比率高(1.841–4.293),因此将该酶制剂归为菊粉酶,可以有效地用于从马铃薯块茎中生产果糖糖浆。

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