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首页> 外文期刊>International Journal Of Recycling of Organic Waste in Agriculture >Biological fungal treatment of olive cake for better utilization in ruminants nutrition in Egypt
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Biological fungal treatment of olive cake for better utilization in ruminants nutrition in Egypt

机译:橄榄饼的生物真菌处理可更好地利用埃及的反刍动物营养

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Background Crop residues and agro-industrial by-products, available in appreciable quantities, can play a significant role in the nutrition of ruminants. The appropriate utilization of by-products in animal nutrition can improve the economy and the efficiency of agricultural, industrial and animal production. The present work investigates the bio-conversion of olive cake (OC), generated by the olive oil industries in Egypt, using locally isolated filamentous fungi in solid state fermentation, so as to upgrade its nutritional values and digestibility for its use as ruminants feed. Methods Seven non-mycotoxin producing fungal strains namely Trichoderma reesei F-418, T. harzianum F-416, T. virdi e F-520, T. koningii F-322, Aspergillus oryzae FK-923, A. fumigatus F-993, and A. awamori F-524 were cultured on OC for 7?days at 36?°C. Subsequently, the chemical composition and lignocellulolytic enzyme activities of the resultant substrate were determined. Results The most promising result was obtained by A. oryzae FK-923, whereas, an increase in crude protein content ranging from 9.5?% (untreated) to 17.4?% (treated) was detected, while phenols were decreased from 3.1 to 0.92?% and fibers declined from 33 to 22.2?%. A reduction in the values of neutral detergent fiber (NDF) and acid detergent fiber (ADF) were reported. The addition of sugar cane molasses at 2?% showed an increase in crude protein to 18.9?% with a reduction in phenols and fibers to 0.69 and 21.8?%, respectively. Furthermore, the addition of active dry yeast ( Saccharomyces cerevisiae ) at 1.5?% to the fermentation medium raised the crude protein to 20.2?% (w/w), while phenols and fibers were declined to 0.55 and 19.2?%, respectively. Conclusions Therefore, the present findings revealed A. oryzae FK-923 to be an efficient organism for lignocellulolytic enzymes production and simultaneous enhancement in crude protein and in vitro digestibility of OC.
机译:背景技术大量的农作物残留物和农用工业副产品在反刍动物的营养中起着重要作用。在动物营养中适当利用副产品可以改善经济,并提高农业,工业和动物生产的效率。本工作研究了埃及橄榄油行业在固态发酵中使用局部分离的丝状真菌对橄榄饼(OC)进行的生物转化,以提高其营养价值和可消化性,以用作反刍动物饲料。方法七种产生非真菌毒素的真菌菌株,分别为里氏木霉F-418,哈茨木霉F-416,维尔德木霉F-520,康宁木霉F-322,米曲霉FK-923,烟曲霉F-993,泡盛曲霉和泡盛曲霉F-524在OC上于36°C培养7天。随后,测定所得底物的化学组成和木质纤维素分解酶活性。结果米曲霉FK-923获得了最有希望的结果,而粗蛋白含量从9.5%(未处理)增加到17.4%(处理),而酚从3.1%降至0.92%。 %和纤维从33下降到22.2%。据报道,中性洗涤剂纤维(NDF)和酸性洗涤剂纤维(ADF)值降低。加入2%的甘蔗糖蜜表明粗蛋白增加到18.9%,酚和纤维的减少分别减少到0.69和21.8%。此外,向发酵培养基中添加1.5%的活性干酵母(酿酒酵母)可使粗蛋白升至20.2%(w / w),而酚和纤维分别降至0.55和19.2%。结论因此,目前的发现揭示了米曲霉FK-923是木质纤维素分解酶生产,同时增强粗蛋白和OC体外消化率的有效生物。

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