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首页> 外文期刊>African Journal of Biotechnology >Diversity of Aspergillus isolates and selection of an isolate with high -fructofuranosidase activity that is native to the Peruvian coast
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Diversity of Aspergillus isolates and selection of an isolate with high -fructofuranosidase activity that is native to the Peruvian coast

机译:秘鲁海岸原生曲霉菌株的多样性和高果糖呋喃糖苷酶活性菌株的选择

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摘要

In order to obtain a native isolate with high β-fructofuranosidase activity (FFase), a preliminary selection of 44 isolates, predominantly formed by Aspergillus niger (72%), was performed among ?167 isolates of Aspergillus native to the Peruvian coast (Casa grande, Cartavio, Paramonga and Tacama). In addition, genetic diversity was studied using molecular markers, Inter Simple Sequence Repeats (ISSR). The FFase activity of these 44 isolates was compared and the isolate which showed the highest fructosyltransferase (FTase) activity was identified molecularly at the species level by DNA sequencing. Cluster analysis indicated 16 sub-genetic groups of which 11 of them were morphologically identified as Aspergillus niger. Samples from Paramonga showed the highest genetic diversity as explained by the Shannon diversity index (I= 0.21). No positive association was found between the genetic diversity of populations and FFase activity. Isolates PR-151, PR-144 and PR-142 showed the highest FFase activity in 5 consecutive evaluation generations, PR-142 being the most active with a total FFase activity of 11,248 (U.L-1) and 6.17 g/L of biomass indicating a great biotechnological potential for the synthesis of prebiotics. The molecular identification at the species level confirmed that PR-142 belongs to A. niger lineage.
机译:为了获得具有高β-果糖呋喃糖苷酶活性(FFase)的天然分离株,初步选择了秘鲁沿海地区的约167种曲霉分离株中主要由黑曲霉(72%)形成的44种分离株(Casa grande)。 ,卡塔维奥,帕拉蒙加和塔卡玛)。另外,使用分子标记间简单序列重复(ISSR)研究了遗传多样性。比较了这44个分离株的FFase活性,并通过DNA测序在物种水平上鉴定了显示最高果糖基转移酶(FTase)活性的分离株。聚类分析表明16个亚基因组,其中11个在形态上被鉴定为黑曲霉。如香农多样性指数(I = 0.21)所解释,帕拉门加的样品显示最高的遗传多样性。在种群的遗传多样性和FFase活性之间没有发现正相关。分离株PR-151,PR-144和PR-142在5个连续的评估世代中显示出最高的FFase活性,PR-142活性最高,总FFase活性为11,248(UL-1),生物量为6.17 g / L合成益生元的巨大生物技术潜力。在物种水平上的分子鉴定证实PR-142属于黑曲霉谱系。

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