Physicochemical properties and storage stability of mushrooms (Pleurotus ostreatus) cultivated on single (sawdust) and mixed substrates (sawdust and oil palm fibre)

G. Ogundele, O. Bamidele
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Abstract

Oyster mushroom nutrientshave been rated side by side with proteinsin meat and eggs. Oyster mushroomsarehigh in vitamins and essential amino acids, but theircultivation is poor. Oil palm fibre is being used in making material strength in mechanical engineering with little or no use in the cultivation of food products. This study determined the physicochemical properties and storage stability of mushroomscultivated on single and mixed substrates (sawdust and oil palm fibre). Oil palm fibremixed with sawdust at different ratios (95:5, 90:10 and 85:15) was used to grow oyster mushroomsin other to turn waste to wealth. The oyster mushroomscultivated on both single and mixed substratesweresubjected to proximate composition analysis (22.99, 4.54, 6.93,and 6.98%, for crude protein, fat, fibre, and ash),mineral content (5.92 mg/100g for sodium and 25.76 mg/100g for potassium), amino acid profile (155.85 mg/g for a total essential amino acid), fatty acid profile (43.82% for linoleic acid), anti-nutritional factor, and storage stability for three months. The mushroomscultivated on the mixed substrate (oil palm fibre + sawdust) havea higher proximate composition, mineral content, amino acid profile,and fatty acid profiles than mushroomscultivated on a single substrate (sawdust). Although the peroxide value of the oyster mushroom samples from the mixed substrates increased with storage time, the peroxide value was lower than 10 meq/kg of fat throughout the storage period,which means the samples could still be considered stable during storage. Cultivation of oyster mushroomson mixed substrates of oil palm fibreand sawdust should be encouraged for highly nutritious oyster mushroom production. Oil palm fibre can also serve as a raw material in mushroom cultivation.
在单一(木屑)和混合基质(木屑和油棕纤维)上培养的蘑菇(平菇)的理化性质和储存稳定性
牡蛎蘑菇营养素与肉和蛋中的蛋白质并列。牡蛎蘑菇富含维生素和必需氨基酸,但养殖条件较差。油棕纤维被用于制造机械工程中的材料强度,而在食品种植中几乎没有或根本没有用途。本研究测定了蘑菇在单一和混合基质(木屑和油棕纤维)上的理化性质和储存稳定性。将油棕纤维与锯末以不同的比例(95:5、90:10和85:15)混合,在其他地方种植牡蛎蘑菇,以变废为富。对在单一和混合基质上培养的牡蛎蘑菇进行了成分分析(粗蛋白、脂肪、纤维和灰分分别为22.99%、4.54%、6.93%和6.98%)、矿物质含量(钠5.92mg/100g,钾25.76mg/100g)、氨基酸谱(总必需氨基酸155.85mg/g)、脂肪酸谱(亚油酸43.82%)、抗营养因子,以及三个月的储存稳定性。在混合基质(油棕纤维+木屑)上活化的蘑菇比在单一基质(木屑)上活性的蘑菇具有更高的接近成分、矿物质含量、氨基酸和脂肪酸组成。尽管来自混合基质的牡蛎蘑菇样品的过氧化值随着储存时间的增加而增加,但在整个储存期内,过氧化值低于10meq/kg脂肪,这意味着样品在储存期间仍然可以被认为是稳定的。应鼓励在油棕榈纤维和木屑的混合基质上种植牡蛎蘑菇,以生产营养丰富的牡蛎蘑菇。油棕纤维也可以作为蘑菇种植的原料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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