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首页> 外文期刊>LWT-Food Science & Technology >Free radicals in velvet bean seeds (Mucuna pruriens L. DC.) and their status after gamma -irradiation and conventional processing.
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Free radicals in velvet bean seeds (Mucuna pruriens L. DC.) and their status after gamma -irradiation and conventional processing.

机译:天鹅绒豆种子(Mucuna pruriens L. DC。)中的自由基及其在γ射线辐照和常规加工后的状态。

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Free radicals in velvet bean seeds, a nutarceutically valued legume were examined by electron spin resonance (ESR) spectroscopy. The status of free radicals present naturally, after irradiation and conventional processing were recorded by entrapping small quantities of seed samples in potassium chloride powder in ESR quartz tubes. The ESR signal at g=2.0055(+or-0.0001) were more prominent in seed coat than cotyledon portion. Gamma irradiation of seeds (for hygienization and quarantine purposes) at different doses (0, 2.5, 5, 7.5, 10, 15 and 30 kGy) resulted in a dose-dependent increase of signal intensity at g=2.0055 in seed coat as well as in cotyledon. In seed coat, a weak triplet (satellite peak) accompanied the central line. This satellite peak (left line 'g') can be used as an authentic indication of radiation treatment of Mucuna seeds and can be employed as one of the detection methods for similarly irradiated legume seeds possessing prominent seed coat. In cotyledon, irradiation at high doses (15 and 30 kGy) showed a significant reduction of the ESR signals (P<0.05), which has been attributed to possible increase in free radical scavengers (particularly polyphenols). Some of the common processing practices such as microwave roasting, flame heating and pounding also generated free radicals similar to irradiation treatments. Results of the present study substantiate the suitability of employing ESR technique for detection of free radicals present naturally or produced after radiation and conventional processing. The results of this study might also be feasible for successful application of gamma irradiation of Mucuna seeds for quarantine purposes..
机译:通过电子自旋共振(ESR)光谱检查了天鹅绒豆种子(一种具有营养价值的豆类)中的自由基。通过在ESR石英管中的氯化钾粉末中截留少量种子样品,记录了辐照和常规处理后自然存在的自由基的状态。 g = 2.0055(+或-0.0001)处的ESR信号在种皮中比子叶部分更明显。 γ剂量(0、2.5、5、7.5、10、15和30 kGy)的伽马射线辐照(用于卫生和检疫目的)会导致种皮中g = 2.0055时信号强度的剂量依赖性增加,以及在子叶。在种皮中,中心线伴随着弱的三重态(卫星峰)。该卫星峰(左线“ g”)可以用作对Mucuna种子进行放射处理的真实指示,并且可以用作具有突出种皮的类似辐照豆类种子的检测方法之一。在子叶中,高剂量(15和30 kGy)照射显示ESR信号显着降低(P <0.05),这归因于自由基清除剂(尤其是多酚)的可能增加。一些常见的加工方法,例如微波烘烤,火焰加热和捣打,也产生类似于辐射处理的自由基。本研究结果证实了采用ESR技术检测天然存在或在辐射和常规加工后产生的自由基的适用性。这项研究的结果对于将Mucuna种子的伽马射线辐射成功用于检疫目的也是可行的。

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