首页> 外文期刊>Journal of Animal Science and Technology >Effects of Gamma Irradiation on Nutrient Composition, Anti-nutritional Factors, In vitro Digestibility and Ruminal Degradation of Whole Cotton Seed
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Effects of Gamma Irradiation on Nutrient Composition, Anti-nutritional Factors, In vitro Digestibility and Ruminal Degradation of Whole Cotton Seed

机译:γ射线辐照对全棉种子营养成分,抗营养因子,体外消化率和瘤胃降解的影响

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Whole cotton seed (WCS) has become one of the major feed ingredients in TMR for dairy cattle in Korea, and WCS for feed use is mostly imported from abroad. Since this genetically modified oil seed is usually fed to the animal in raw state, its germination ability, if last long, often causes concerns about ecological disturbances. In the process of looking for effective conditions to remove germination ability of WCS this study had the objectives to evaluate the nutritional effects of gamma irradiation at doses of 8, 10 and 12 kGy on changes in nutrient contents, anti-nutritional factors, in vitro digestibility and ruminal degradability. No significant differences were found in proximate analysis of nutrients between raw WCS and gamma irradiated one.Glycine and threonine contents significantly increased when the WCS was exposed to gamma ray as compared to untreated WCS (p<0.05). As for fatty acid composition, no significant differences were observed with the irradiation treatment. Free gossypol inWCS was decreased (p<0.05) by gamma irradiation treatment. Of the 3 different levels of gamma irradiation, a dose of 12 kGy was found to be the most effective in reducing free gossypol concentration. Results obtained from in situ experiment indicated that gamma irradiation at a dose of 10 kGy significantly (p<0.05) lowered rumen degradability of both dry matter and crude protein as compared with raw WCS. However, there were no significant differences in rapidly degradable and potentially degradable fractions of etude protein due to 10 kGy gamma irradiation. Overall, this study show that gamma irradiation at a dose of 10 kGy is the optimum condition for removing germination ability of WCS, and could improve nutritive value for the ruminant with respectto the decrease in both ruminal protein degradability and gossypol content of WCS.
机译:全棉种子(WCS)已成为韩国奶牛TMR中主要的饲料成分之一,用于饲料的WCS主要从国外进口。由于这种转基因油料种子通常以原始状态喂给动物,因此其发芽能力(如果持续很长时间)通常会引起人们对生态干扰的担忧。在寻找消除WCS发芽能力的有效条件的过程中,本研究的目的是评估8、10和12 kGy剂量的γ辐照对营养成分,抗营养因子,体外消化率变化的营养作用。和瘤胃降解性。未处理的WCS和经γ辐照的WCS之间在营养成分的近期分析中没有显着差异。与未经处理的WCS相比,当WCS暴露于γ射线时,甘氨酸和苏氨酸含量显着增加(p <0.05)。至于脂肪酸组成,在辐照处理中未观察到显着差异。通过γ射线处理,WCS中的游离棉酚减少了(p <0.05)。在3种不同的伽马射线辐射水平中,发现12 kGy的剂量对降低游离棉酚的浓度最有效。从原位实验获得的结果表明,与未加工的WCS相比,以10 kGy的剂量进行γ射线辐照可显着降低干物质和粗蛋白的瘤胃降解能力(p <0.05)。但是,由于10 kGyγ射线照射,练习曲蛋白的可快速降解和可能降解的级分没有显着差异。总体而言,这项研究表明,以10 kGy的剂量进行伽马射线辐照是去除WCS发芽能力的最佳条件,并且可以降低反刍动物的营养价值,同时降低WCS的瘤胃蛋白质降解能力和棉酚含量。

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