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Optimization of starch isolation from taro using combination of enzymes and comparison of properties of starches isolated by enzymatic and conventional methods

机译:使用酶组合优化芋头淀粉的分离并比较酶法和常规方法分离的淀粉的性质

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摘要

The optimization of enzymatic starch isolation process from taro tubers using cellulase and xylanase was carried out. The functional properties of starch isolated by optimized enzymatic process were compared with starch isolated by conventional method without the use of enzymes. A central composite rotatable design (CCRD) with four numerical factors was employed to design the experiments. The numerical factors were cellulase concentration (0–100 U/100 g tuber), xylanase concentration (0–100 U/100 g tuber), temperature of incubation (30–50 °C) and incubation time (1–5 h). Statistical analysis showed that the main effects of all the factors were significant on starch yield and effect of cellulase was more significant compared to xylanase. The effectiveness of xylanase in increasing the yield of starch from taro tubers confirmed that xylan is an important component of the cell walls of taro tubers. The optimized condition with maximum starch yield (17.22 %) was obtained when cellulase and xylanase concentration were 299.86 and 300 U/100 g tuber, temperature was 35 °C and incubation time was 2 h. The swelling of the starch granules increased whereas solubility decreased for enzymatic method. The clarity of the starch paste isolated by enzymatic method was found to be better compared to the clarity of starch paste isolated by conventional method. The pasting temperature of the starch paste was slightly higher and viscosity was lower for the starch isolated by enzymatic method. Freeze-thaw stability of the starch paste was also found to be better for the enzymatically isolated starch.
机译:利用纤维素酶和木聚糖酶对芋头块茎中酶法淀粉的分离工艺进行了优化。将通过优化酶法分离的淀粉的功能特性与不使用酶的常规方法分离的淀粉进行了比较。采用具有四个数值因子的中央复合可旋转设计(CCRD)来设计实验。数值因素是纤维素酶浓度(0–100 U / 100 g块茎),木聚糖酶浓度(0–100 U / 100 g块茎),孵育温度(30–50°C)和孵育时间(1–5 h)。统计分析表明,与木聚糖酶相比,所有因素对淀粉产量的主要影响均显着,而纤维素酶的影响更为显着。木聚糖酶在提高芋头块茎淀粉产量中的有效性证实了木聚糖是芋头块茎细胞壁的重要组成部分。当纤维素酶和木聚糖酶的浓度为299.86和300 U / 100 g块茎,温度为35°C,孵育时间为2小时时,可获得最佳的淀粉收率(17.22%)。对于酶法,淀粉颗粒的溶胀增加而溶解度降低。发现与通过常规方法分离的淀粉糊的澄清度相比,通过酶法分离的淀粉糊的澄清度更好。对于通过酶法分离的淀粉,淀粉糊的糊化温度略高,而粘度较低。对于酶分离的淀粉,还发现淀粉糊的冻融稳定性更好。

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