在农用工业残留物上培养的高等真菌的生化、功能和抗氧化潜力。第二部分:废蘑菇基质和蘑菇种植副产品混合物上的培养物

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引用次数: 0

摘要

新型基质包括不同的新鲜农业工业残留物、与之相对应的商业废蘑菇基质(即来自实验室规模实验的 SMS 和来自 Green Zin S.A. - SMS GZ 工业规模实验的 SMS)以及 Pleurotus 废物(PW;刺菇/金针菇),这些基质被混合使用,用于新一轮的袋栽培 Pleurotus ostreatus 和 P. eryngii 蘑菇。研究了它们对第一和第二轮出菇的整菇、蘑菇伞和托叶的生化特性(细胞内多糖 - IPSs、蛋白质、脂质、总酚类化合物 - TPCs、IPSs 中的单个碳水化合物成分)以及脂肪酸成分、抗氧化活性(第一轮出菇部分)和托叶中葡聚糖含量的影响。这两种蘑菇在所有基质中都产生了令人满意的 IPSs 数量(28.69-46.38%,w/w)和大量蛋白质(18.37-26.80%,w/w)。在栽培基质中进一步添加 SMS(80 %,w/w,而不是 40 %,w/w)会对蘑菇的 IPSs 值产生积极影响,而在由新鲜农用工业残渣组成的基质上栽培的蘑菇部分蛋白质含量最高。蘑菇的脂肪含量受不同基质组合的影响不同,SMS 的存在导致蘑菇的脂肪含量低于添加了 PW 的基质所生产的蘑菇。含有 PW 和咖啡残渣的新鲜基质最有利于生产 TPCs。就生产冲次而言,蘑菇的营养价值不相上下,仅发现第二冲次蘑菇的 TPCs 略有增加。在生产的 IPSs 中,葡萄糖是最主要的单糖,同时还大量生产总葡聚糖和 β 葡聚糖。添加 SMSs 和 PW 对抗氧化活性也有积极影响。在所有绒毛藻中检测到的脂质、TPCs 数量和抗氧化活性均高于托叶藻,而后者的 IPSs 含量更高。绒毛和托叶都含有大量蛋白质。因此,本研究获得的数据支持了不同类型的 SMS 和蘑菇废料对褶菇和刺五加营养价值的积极影响。
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Biochemical, functional and antioxidant potential of higher fungi cultivated on agro-industrial residues. Part II: Cultures on mixtures of spent mushroom substrates and mushroom cropping by-products

Novel substrates consisted of different fresh agro-industrial residues, their corresponding and commercial spent mushroom substrates (i.e. SMS deriving from laboratory-scale experiments and SMS deriving from industrial-scale experiments by Green Zin S.A. - SMS GZ) and Pleurotus waste (PW; stipes/mishappen mushrooms) were used in blends for a new cultivation cycle of Pleurotus ostreatus and P. eryngii mushrooms in bags. Their impact on the biochemical properties (intra-cellular polysaccharides - IPSs, protein, lipid, total phenolic compounds - TPCs, individual carbohydrates composition of the IPSs) in the first- and second-flush whole mushrooms, pilei and stipes, as well as the fatty acids composition, the antioxidant activity (in the first-flush mushroom parts) and glucan content of stipes were examined. Both species produced satisfactory IPSs quantities in all substrates (28.69–46.38 %, w/w) and significant protein amounts (18.37–26.80 %, w/w). The further SMS addition (80 %, w/w instead of 40 %, w/w) in the cultivation substrates affected positively the mushroom IPSs values, whereas the highest protein content was detected in mushroom's parts cultivated on substrates consisted of fresh agro-industrial residues. Mushroom's lipid content was affected differently by the various substrate combinations, with SMS presence resulting in mushrooms with a lower fat content than those produced in substrates with PW addition. Fresh substrates with PW and those with coffee residue were the most favorable for TPCs production. Regarding production flushes, the nutritional value of mushrooms was comparable between them, only a slight increase in TPCs of second-flush carposomes was detected. Glucose was the predominant monosaccharide of the produced IPSs, combined with a significant production of total and β- glucans. SMSs and PW addition had a positive impact on antioxidant activity, too. A higher quantity of lipids, TPCs and significant antioxidant activity were detected in all Pleurotus pilei than stipes, whereas the latter were richer in IPSs. Both pilei and stipes had a significant protein amount. Hence, the data obtained by this study support the positive effect of different types of SMS and mushroom waste on P. ostreatus and P. eryngii nutritional value.

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