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首页> 外文期刊>International Journal of Food and Fermentation Technology >Isolation, Morphological & Molecular Characterization of Aspergillus Species producing a-L-Rhamnosidase from Agro-Industrial Waste
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Isolation, Morphological & Molecular Characterization of Aspergillus Species producing a-L-Rhamnosidase from Agro-Industrial Waste

机译:农业工业废弃物产生A-L-r氨基氨基酚酶A-L-r-Rhamnosid酶的分离,形态学和分子特征

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An a-L-rhamnosidase enzyme [E.C.3.2.1.40] has potential application in food and pharmaceutical industry. Naringin is the dominant flavanoid bitter compound found in citrus fruit juices of the objective of present study was to isolate a-L-rhamnosidase producing fungus, study their morphological and molecular characteristics. A total twelve fungal strains were isolated from agro-industrial waste of lemon and sweet lemon peels for a-L-rhamnosidase enzyme production. Of these, only 4 isolates were capable of producing the a-L-rhamnosidase enzyme to hydrolyze naringin for removal of bitter taste from juices. Fungal isolates were selected according to their higher a-L-rhamnosidase enzyme activities (3.481 1U mL"'). For morphological studies, macroscopic features like colony colour, texture, elevation, growth and margins as well as microscopic characteristics such as the size of conidia and conidiophores, and their arrangements were examined for species differentiation. DNA was isolated from the best a-L-rhamnosidase producing fungal strain, and amplification of 18S rRNA gene, using specific primers ITS-1 and ITS-4 was done. This gene was subsequently sequenced and phylogenetic affiliations was accordingly assigned. Fungal isolate was identified as Aspergillus flavus.
机译:A-L- rhamnosidase酶[E.C.3.2.1.40]具有潜在的食品和制药行业应用。 Naringin是在柑橘类果汁中发现的主要类黄蛋白苦味的化合物目前的目的是分离出A-L-酚膦酸酶产生真菌,研究它们的形态和分子特性。从农业工业废弃物的柠檬和甜柠檬果皮中分离出总12种真菌菌株,用于A-L-rhamnosidase酶生产。其中,只有4个分离物能够生产A-L- rhamnosidase酶以水解柚皮蛋白,以除去果汁的苦味。根据其较高的Al-rhamnosidase酶活性(3.481 1U ml“)选择真菌分离物。对于形态学研究,宏观特征如殖民地颜色,质地,升高,生长和边缘以及微观特征,如分类的大小和检查分枝体,并检查物种分化的安排。使用特异性引物产生真菌菌株的最佳Al-rhamnosidase,并使用特异性引物和其-1的扩增分离18S rRNA基因的DNA。随后测序该基因并进行该基因相应地分配了系统发育隶属关系。真菌分离物被鉴定为曲霉属植物。

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