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Surimi gels from striped mullet (Mugil cePhalus) employing microbial transglutaminase

机译:利用微生物转谷氨酰胺酶从条纹鱼(Mugil cePhalus)制成的鱼糜凝胶

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摘要

Striped mullet (Mngil cephalus) is an abundant marine coastal fish of tropical waters and has a low commercial value. This work deals with the assessment of striped mullet as a resource for surimi gels. To improve the gels obtained, the addition of microbial transglutaminase was evaluated. Optimal conditions for setting were determined using mathematical models. Concentration of microbial transglutaminase (MTGase), temperature and time were studied to improve the mechanical properties of surimi gels from striped mullet. Shear stress was strongly affected by the variabIes studied whi1e shear strain was moderately affected. Maximum shear stress (l56 kPa) was obtained by employing the following setting conditions: a concentration of MTGase of 9.3 g/kg of surimi, a temperature of 37 deg C and a time of 3.9 h. Under these conditions the shear strain was l.34. Maximum shear strain (l.57) was obtained by employing the following conditions: a concentration of MTGase of 5 g/kg of surimi, a temperature of 34.5 deg C and a time of l h. Under these conditions the shear stress was l23 kPa.
机译:鱼(Mngil cephalus)是热带水域的丰富海洋沿海鱼类,商业价值低。这项工作涉及条纹鱼作为鱼糜凝胶资源的评估。为了改善获得的凝胶,评估了微生物转谷氨酰胺酶的添加。使用数学模型确定最佳设置条件。研究了微生物转谷氨酰胺酶(MTGase)的浓度,温度和时间,以改善鱼鱼糜凝胶的机械性能。剪切应力受到中等程度的影响,剪切应力受到研究变量的强烈影响。通过采用以下设定条件获得最大剪切应力(156 kPa):MTGase的浓度为9.3 g / kg鱼糜,温度为37℃,时间为3.9 h。在这些条件下,剪切应变为1.34。通过采用以下条件获得最大剪切应变(1.57):MTGase的浓度为5 g / kg鱼糜,温度为34.5℃,时间为1 h。在这些条件下,剪切应力为123 kPa。

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