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首页> 外文期刊>Industrial Crops and Products >Carbohydrate degrading enzyme production by plant pathogenic mycelia and microsclerotia isolates of Macrophomina phaseolina through koji fermentation.
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Carbohydrate degrading enzyme production by plant pathogenic mycelia and microsclerotia isolates of Macrophomina phaseolina through koji fermentation.

机译:麦曲霉的植物致病菌丝体和微核菌分离株通过曲发酵产生的碳水化合物降解酶。

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The ability of hydrolytic enzyme production by two different isolates of Macrophomina phaseolina was studied on apple pomace as a substrate for solid state fermentation (SSF). Initial moisture level, temperature and fermentation period was optimized so as to achieve higher output. Among the two different isolates, microsclerotial (MphP) and mycelial (MphM), MphP was observed as a potential source of different hydrolytic enzymes as compared to MphM. MphP gave higher enzyme activities (IU/gram dry substrate (gds): filter paper cellulase (FPase) activity 196.21 +or- 16.3 (120 h), carboxymethyl cellulase (CMCase) 279.34 +or- 28.25 (72 h), beta-glucosidase (BGL) 129.82 +or- 12.41 (96 h), xylanase 2527.88 +or- 46.15 (120 h), and amylase 2780.72 +or- 38.13 (96 h)), respectively at 70% (v/w) IML. The incubation temperature was also found to have impact on the enzyme production ability of Macrophomina strains. The higher enzyme activities were achieved (IU/gds) as follows FPase 276.13 +or- 25.02 (40 degrees C, 120 h), CMCase 278.11 +or- 24.47 (35 degrees C, 144 h), BGL 189.47 +or- 15.05 (30 degrees C, 144 h), xylanase 3845.77 +or- 43.38 (35 degrees C, 144 h) and amylase activity of 3309.45 +or- 29.22 (35 degrees C, 120 h), respectively using MphP at 70% (v/w) IML. This study reports for the first time the potential of carbohydrate degrading enzyme bioproduction by different isolates of M. phaseolina. All rights reserved, Elsevier.
机译:以苹果渣为固态发酵底物(SSF),研究了两种 Macrophomina phaseolina 的分离菌株生产水解酶的能力。优化了初始水分含量,温度和发酵时间,以实现更高的产量。与MphM相比,在微菌落(MphP)和菌丝体(MphM)这两种不同的分离物中,MphP被认为是不同水解酶的潜在来源。 MphP具有更高的酶活性(IU /克干底物(gds):滤纸纤维素酶(FPase)活性196.21 +或16.3(120 h),羧甲基纤维素酶(CMCase)279.34 +或28.25(72 h),β-葡萄糖苷酶(BGL)IML为70%(v / w)的129.82 +或12.41(96 h),木聚糖酶2527.88 +或46.15(120 h)和淀粉酶2780.72 +或38.13(96 h))。还发现孵育温度对 Macrophomina 菌株的酶生产能力有影响。 FPase 276.13 +或-25.02(40°C,120 h),CMCase 278.11 +或-24.47(35°C,144 h),BGL 189.47 +或15.05( 30%C,144 h),木聚糖酶3845.77 +或-43.38(35°C,144 h)和淀粉酶活性3309.45 +或-29.22(35°C,120 h),分别使用70%(v / w)的MphP )IML。该研究首次报道了通过不同的iM分离株产生的碳水化合物降解酶生物生产的潜力。菜豆。保留所有权利,Elsevier。

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