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蜂蜡废料可促进平菇的菌丝体生长、子实体产量和品质。

Beeswax waste improves the mycelial growth, fruiting body yield, and quality of oyster mushrooms ().

作者信息

Pan Chunlei, Sheng Chunge, Wang Kang, Zhang Yi, Liu Chunguang, Zhang Zhihao, Tao Liang, Lv Yang, Gao Fuchao

机构信息

Mudanjiang Branch, Heilongjiang Academy of Agricultural Sciences, Mudanjiang, Heilongjiang, China.

College of Animal Science and Technology, Yangzhou University, Yangzhou, Jiangsu, China.

出版信息

PeerJ. 2024 Dec 16;12:e18726. doi: 10.7717/peerj.18726. eCollection 2024.

Abstract

Heilongjiang Province has the third largest bee population in China, producing over 2,000 tons of beeswax waste (BW) each year. Most of this BW is discarded or burned. Therefore, we urgently need to find sustainable applications of BW. mushrooms, commonly referred to as oyster mushrooms, are cultivated for both food and medicine. The substrate used to grow mushrooms often contains wheat bran as a nitrogen source. The goal of this study was to explore the feasibility of substituting this wheat bran with BW to cultivate mushrooms. Five treatments were established, with BW making up 0%, 3%, 5%, 7%, and 9% of the total substrate, and the effects on the mycelial growth and development, biological efficiency (BE), and yield were evaluated along with changes in the chemical biomass composition of the fruiting bodies. Adding BW increased the number of days needed for primordia initiation and the number of days between flushes of mushrooms. With increasing BW, the total fresh weight of mushrooms first increased and then decreased. The 5% BW treatment resulted in the highest yield and biological efficiency (BE) of 1,478.96 ± 9.61 g bag and 92.43 ± 0.60%, respectively, which exceeded the values of the control by 4.14% (control: 1,420.15 ± 9.53 g bag and 88.76 ± 0.60%, respectively). The 5% BW treatment also resulted in the highest mushroom crude protein content (23.47 ± 0.18 g 100 g), which was 28.18% higher compared with the control (18.31 ± 0.05 g 100 g). The 9% BW treatment resulted in the highest crude polysaccharide content (10.33 ± 0.76 g 100 g), which was 2.42-fold that of the control (4.26 ± 0.30 g 100 g). This study suggests that BW could serve as an effective source of nitrogen to cultivate . BW is a promising, cost-effective, and efficient additive to mushroom substrate, improving the yield and quality of mushrooms while providing a sustainable use for an otherwise difficult to dispose of waste product.

摘要

黑龙江省是中国蜜蜂数量第三大省,每年产生超过2000吨蜂蜡废料(BW)。这些BW大多被丢弃或焚烧。因此,我们迫切需要找到BW的可持续应用方式。平菇,通常被称为蚝菇,可用于食用和药用栽培。用于种植平菇的基质通常含有麦麸作为氮源。本研究的目的是探索用BW替代这种麦麸来栽培平菇的可行性。设置了五个处理组,BW占总基质的0%、3%、5%、7%和9%,并评估了其对菌丝生长发育、生物学效率(BE)和产量的影响,以及子实体化学生物质组成的变化。添加BW增加了原基形成所需的天数和平菇出菇间隔的天数。随着BW含量的增加,平菇的总鲜重先增加后减少。5% BW处理组的产量和生物学效率最高,分别为1478.96±9.61克/袋和92.43±0.60%,比对照组分别高出4.14%(对照组:分别为1420.15±9.53克/袋和88.76±0.60%)。5% BW处理组的平菇粗蛋白含量也最高(23.47±0.18克/100克),比对照组(18.31±0.05克/100克)高28.18%。9% BW处理组的粗多糖含量最高(10.33±0.76克/100克),是对照组(4.26±0.30克/100克)的2.42倍。本研究表明,BW可作为栽培平菇的有效氮源。BW是平菇基质中有前景、经济高效的添加剂,可提高平菇的产量和品质,同时为原本难以处理的废品提供可持续利用途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a5e/11657188/092077e9aa6f/peerj-12-18726-g001.jpg

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