The Effect Of Cellulase Content On Phytoestrogens Formation (Genistein) Materials On Fermented Soybean Waste Aspergillus niger

Vara Tassa Sutari, N. Nurliana, S. Sugito, D. Darmawi, R. Rinidar
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Abstract

The activity of the cellulase enzyme and the content of phytoestrogen (genistein) forming is determined during the fermentation of soybean waste with Aspergullus niger. The analysis is performed at fermentation incubation time of 0, 48, 96, 144 and 192 hours and treatment with addition of micro nutrient (V2) and without micro nutrient (V1). Data analysis on cellulase enzyme activity on phytoestrogen forming material is performed using T test. The average of cellulase content of fermented soybean waste increases from 0.032-0.139 IU / ml (V1) and 0.061-0.158 IU / ml (V2) after 48 hours into 0.238 IU / ml (V1) and 0.245 IU / ml (V2) after 192 hours The average of genestein levels in the fermented soybean waste increases as well from 0.101 - 0.573 mg / g (V1) and 0.114 - 0.587 mg / g (V2) after 48 hours and increase into 0.722 mg / g (V1) and 0.699 mg / g (V2) after 192 hours. Statistical analysis indicates that the treatment of V1 and V2 has an effect on the increase of cellulase enzyme content and genistein level (P <0.05). The correlation between enzyme activity of cellulase and genistein on soybean waste fermented with Aspergillus niger is significant (R2 = 0,949). The relationship between the enzyme performance and its formation material is running synergistic, cellulase enzyme activity and genistein level experience significant increase during the fermentation process.
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纤维素酶含量对发酵大豆废料中植物雌激素形成物质(染料木素)的影响
测定了黑曲霉发酵大豆废渣过程中纤维素酶活性和植物雌激素(染料木素)含量。分别在发酵0、48、96、144和192小时,添加微量营养物质(V2)和不添加微量营养物质(V1)的条件下进行分析。植物雌激素形成材料纤维素酶活性数据分析采用T检验。纤维素酶含量的平均值豆酱浪费增加从0.032 - -0.139 IU /毫升(V1)和0.061 - -0.158 IU /毫升(V2) 48小时后到0.238国际单位/毫升(V1)和0.245 IU /毫升(V2)后192小时的平均genestein水平在豆酱浪费增加从0.101 - 0.573毫克/克(V1)和0.114 - 0.587毫克/克(V2) 48小时后,增加到0.722毫克/克(V1)和0.699毫克/克(V2)后192小时。统计分析表明,V1和V2处理对纤维素酶含量和染料木素水平的升高有影响(P <0.05)。黑曲霉发酵后的大豆渣中纤维素酶活性与染料木素活性呈显著相关(R2 = 0.949)。发酵过程中,纤维素酶活性和染料木素水平显著升高,酶的性能与其形成材料呈协同增效关系。
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