首页> 外文期刊>International Journal of Horticulture & Crop Science Research >In Situ Degradation of Cocoa (Theobroma Cacao) Pod Husktheobromine by Candida Krusei
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In Situ Degradation of Cocoa (Theobroma Cacao) Pod Husktheobromine by Candida Krusei

机译:原位降解Cocoa(Theobroma Cacao)Pod Husktheobromine通过Candida Krusei

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About 70% of the world's cocoa is produced in West Africa. As a consequence,massive amounts of cocoa pod husk(6.7 mmt) are generated in the sub-region annually. The elimination of theobromine and polyphenols, which negatively affect animal reproduction, digestion and feed intake, from cocoa pod husk is critical to the use of the pod husk as affordable animal feed by livestock farmers in West Africa. We have investigated the effectiveness of C. krusei fermentation in reducing the theobromine and totalphenolic content of cocoa pod husk. Milled cocoa pod husk samples were moistened and inoculated with C. krusei and incubated at ambient temperature for up to 4 weeks. Theobromine was determined using reversed-phase high performance liquid chromatography and total phenolic content was monitored spectrophotometrically. Quantitative extraction of C. krusei-treated pod husk followed by LC-MS analysis of dichloromethane extracts revealed C. krusei-mediated degradation of cocoa husk as well as biosynthesis of new molecules. Treatment of cocoa pod husk with C. krusei for 4 weeks resulted in a 62.5% and 4.1.5% reduction in theobromine and total phenolic content (p<0.05) respectively. A drastic reduction of 84.3% in condensed tannin content (p<0.05) was recorded after 7 days. Results revealed that the macronutrient profile of cocoa pod husk was altered after four weeks of treatment. Available carbohydrate and gross energy values decreased by 20.5% and 18.7% respectively. There was significant increased in the crude fibre content by 25.9% (p<0.05). The observations suggest that C. krusei fermentation mightbe a useful procedure for detoxifying cocoa pod husk and improving its digestibility.
机译:大约70%的世界可可在西非生产。因此,每年在次区域产生大量的可可荚壳(6.7mmt)。从Cocoa Pod Husk中消除了对动物繁殖,消化和饲料摄入量负面影响动物繁殖,消化和饲料摄入的多苯酚对使用Pod Herk作为西非牲畜农民的实惠的动物饲料至关重要。我们研究了C.Krusei发酵在减少可可荚壳的Thisobromine和全酚含量的有效性。将碾磨的可可荚壳样品润湿并用C.Krusei接种,并在环境温度下孵育长达4周。使用反相高效液相色谱法测定溴胺,并将总酚含量进行分光光度法监测。 C. krusei治疗的荚壳的定量萃取,然后LC-MS分析二氯甲烷提取物揭示了Cocoa壳的krusei介导的可可壳的降解以及新分子的生物合成。用C.Krusei治疗4周的Cocoa Pod稻壳导致Theobromine和总酚类含量减少62.5%和4.1.5%(P <0.05)。 7天后,记录凝结的单宁含量急剧减少84.3%(P <0.05)。结果表明,可可荚稻壳的MACRONURRIGE谱系在治疗四周后改变。可用的碳水化合物和总能量值分别下降20.5%和18.7%。粗纤维含量显着增加25.9%(P <0.05)。该观察结果表明,C.Krusei发酵可能是解毒可可荚稻壳并提高其消化率的有用程序。

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