{"title":"朝鲜绿僵菌mn031 - mt46的优化:营养补充提高固态发酵分生孢子和角质层降解酶产量","authors":"Suleiman Abba Muazu, Payorm Cobelli, Teerada Wangsomboondee","doi":"10.4014/jmb.2412.12079","DOIUrl":null,"url":null,"abstract":"<p><p>This study aimed to evaluate five different mixed agricultural wastes as potential substrates for solid-state fermentation (SSF) to produce conidia of <i>Metarhizium koreanum</i> MN031-Mt 46. Single-factor experiments and a Box-Behnken design (BBD) were employed to optimize the fermentation conditions for enhanced conidia yield. Results indicated that a mixed substrate comprising broken rice and rice bran significantly enhanced the optimal production of aerial conidia of MN031-Mt 46. Optimal fermentation conditions established through response surface methodology (RSM) revealed that with the addition of shrimp shell waste to the mixed substrate, conidia production increased to 8.45 × 10<sup>8</sup> conidia per gram of dry substrate at 26.19°C temperature, 39.76% moisture, and 1.45% of shrimp shell waste after 301.87 h of incubation. Enhanced conidia performance indices were observed, including higher conidia weight, increased water content, and reduced residue post-harvest. The optimized fermentation conditions resulted in enhanced cuticle-degrading enzymatic activities, with maximum activities of 58.78 ± 2.29 U g<sup>-1</sup> ds for protease, 126.57 ± 6.47 U g<sup>-1</sup> ds for lipase, and 58.32 ± 0.78 U g<sup>-1</sup> ds for chitinase. These findings highlight the potential and versatility of mixed SSF using cost-effective agricultural waste for biopesticide and hydrolytic enzyme production, while promoting sustainable waste management and environmental pollution control, aligning with circular economy principles.</p>","PeriodicalId":16481,"journal":{"name":"Journal of microbiology and biotechnology","volume":"35 ","pages":"e2412079"},"PeriodicalIF":2.5000,"publicationDate":"2025-04-27","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC12089957/pdf/","citationCount":"0","resultStr":"{\"title\":\"Optimization of <i>Metarhizium koreanum</i> MN031-Mt 46: Nutritional Supplementation to Improve Conidia and Cuticle-Degrading Enzyme Production by Solid-State Fermentation.\",\"authors\":\"Suleiman Abba Muazu, Payorm Cobelli, Teerada Wangsomboondee\",\"doi\":\"10.4014/jmb.2412.12079\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>This study aimed to evaluate five different mixed agricultural wastes as potential substrates for solid-state fermentation (SSF) to produce conidia of <i>Metarhizium koreanum</i> MN031-Mt 46. Single-factor experiments and a Box-Behnken design (BBD) were employed to optimize the fermentation conditions for enhanced conidia yield. Results indicated that a mixed substrate comprising broken rice and rice bran significantly enhanced the optimal production of aerial conidia of MN031-Mt 46. Optimal fermentation conditions established through response surface methodology (RSM) revealed that with the addition of shrimp shell waste to the mixed substrate, conidia production increased to 8.45 × 10<sup>8</sup> conidia per gram of dry substrate at 26.19°C temperature, 39.76% moisture, and 1.45% of shrimp shell waste after 301.87 h of incubation. Enhanced conidia performance indices were observed, including higher conidia weight, increased water content, and reduced residue post-harvest. The optimized fermentation conditions resulted in enhanced cuticle-degrading enzymatic activities, with maximum activities of 58.78 ± 2.29 U g<sup>-1</sup> ds for protease, 126.57 ± 6.47 U g<sup>-1</sup> ds for lipase, and 58.32 ± 0.78 U g<sup>-1</sup> ds for chitinase. 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引用次数: 0
摘要
本研究旨在评价5种不同的混合农业废弃物作为固体发酵(SSF)生产韩国绿僵菌MN031-Mt 46分生孢子的潜在底物。采用单因素实验和Box-Behnken设计(BBD)优化发酵条件,提高分生孢子产量。结果表明,以碎米和米糠为混合基质,可显著提高mn031 - mt46气生孢子的最佳产量。通过响应面法(RSM)确定的最佳发酵条件表明,在温度26.19℃、湿度39.76%、虾壳废物含量1.45%的条件下,发酵301.87 h后,混合底物中添加虾壳废物可使分生孢子产量增加到8.45 × 108个/ g。分生孢子的各项性能指标均有所提高,包括分生孢子重量增加、含水量增加、采后残渣减少等。优化后的发酵条件提高了表皮降解酶的活性,蛋白酶活性最高为58.78±2.29 U g-1 ds,脂肪酶活性最高为126.57±6.47 U g-1 ds,几丁质酶活性最高为58.32±0.78 U g-1 ds。这些发现突出了混合固体燃料的潜力和多功能性,利用具有成本效益的农业废物生产生物农药和水解酶,同时促进可持续的废物管理和环境污染控制,符合循环经济原则。
Optimization of Metarhizium koreanum MN031-Mt 46: Nutritional Supplementation to Improve Conidia and Cuticle-Degrading Enzyme Production by Solid-State Fermentation.
This study aimed to evaluate five different mixed agricultural wastes as potential substrates for solid-state fermentation (SSF) to produce conidia of Metarhizium koreanum MN031-Mt 46. Single-factor experiments and a Box-Behnken design (BBD) were employed to optimize the fermentation conditions for enhanced conidia yield. Results indicated that a mixed substrate comprising broken rice and rice bran significantly enhanced the optimal production of aerial conidia of MN031-Mt 46. Optimal fermentation conditions established through response surface methodology (RSM) revealed that with the addition of shrimp shell waste to the mixed substrate, conidia production increased to 8.45 × 108 conidia per gram of dry substrate at 26.19°C temperature, 39.76% moisture, and 1.45% of shrimp shell waste after 301.87 h of incubation. Enhanced conidia performance indices were observed, including higher conidia weight, increased water content, and reduced residue post-harvest. The optimized fermentation conditions resulted in enhanced cuticle-degrading enzymatic activities, with maximum activities of 58.78 ± 2.29 U g-1 ds for protease, 126.57 ± 6.47 U g-1 ds for lipase, and 58.32 ± 0.78 U g-1 ds for chitinase. These findings highlight the potential and versatility of mixed SSF using cost-effective agricultural waste for biopesticide and hydrolytic enzyme production, while promoting sustainable waste management and environmental pollution control, aligning with circular economy principles.
期刊介绍:
The Journal of Microbiology and Biotechnology (JMB) is a monthly international journal devoted to the advancement and dissemination of scientific knowledge pertaining to microbiology, biotechnology, and related academic disciplines. It covers various scientific and technological aspects of Molecular and Cellular Microbiology, Environmental Microbiology and Biotechnology, Food Biotechnology, and Biotechnology and Bioengineering (subcategories are listed below). Launched in March 1991, the JMB is published by the Korean Society for Microbiology and Biotechnology (KMB) and distributed worldwide.