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利用农业工业废弃物通过固态发酵由阿维链霉菌生产阿维菌素。

Production of avermectins by Streptomyces avermitilis through solid-state fermentation using agro-industrial waste.

作者信息

Du Guozhong, Dong Zhuoxu, Wang Zhengduo, Pan Minghui, Zhang Yanyan, Xiang Wensheng, Li Shanshan

机构信息

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, China; School of Life Science, Northeast Agricultural University, No. 59 Mucai Street, Xiangfang District, Harbin 150030, China.

出版信息

Bioresour Technol. 2025 Sep;431:132625. doi: 10.1016/j.biortech.2025.132625. Epub 2025 May 4.

Abstract

The natural products (NPs) avermectins from Streptomyces show exceptional insecticidal activity and become the most widely produced and used biopesticides in the world. Avermectins are produced by submerged fermentation (SmF), generating significant amount of effluent, exhaust gas and solid waste. We therefore endeavored to establish a green and sustainable alternative through solid-state fermentation (SSF) using agro-industrial waste. We determined the optimal culture medium composition and fermentation style through SSF. The maximum concentration of avermectin B (3.83 mg/gds) was obtained with a substrate mixture containing wheat bran, corn cob, earthworm cast, sugarcane bagasse, cane molasses, ammonium sulfate and CoCl in shallow trays cultivated for 14 days at 28 °C by repeated-batch SSF, and the initial moisture content and inoculum size was set as 78.5 % and 25 %, respectively. Economic analysis demonstrated that avermectin production cost generated from the fermentation process by SSF was 8.38 % lower than that by SmF. Moreover, avermectin SSF products could be directly used as microbial pesticides for biological control of underground pests and nematodes. This is the first report on avermectin production via SSF, demonstrating great potential in industrial and agricultural applications. Our work also provides guidance to produce other NPs through SSF in other Streptomyces species.

摘要

链霉菌产生的天然产物阿维菌素具有卓越的杀虫活性,成为全球生产和使用最为广泛的生物农药。阿维菌素通过深层发酵(SmF)生产,会产生大量废水、废气和固体废物。因此,我们致力于通过利用农业工业废弃物进行固态发酵(SSF)来建立一种绿色且可持续的替代方法。我们通过固态发酵确定了最佳培养基组成和发酵方式。通过重复批次固态发酵,在浅盘中于28°C培养14天,使用包含麦麸、玉米芯、蚯蚓粪、甘蔗渣、甘蔗糖蜜、硫酸铵和氯化钴的底物混合物,获得了阿维菌素B的最大浓度(3.83毫克/克干物质),初始水分含量和接种量分别设定为78.5%和25%。经济分析表明,固态发酵法生产阿维菌素的发酵成本比深层发酵法低8.38%。此外,固态发酵生产的阿维菌素产品可直接用作微生物农药,用于地下害虫和线虫的生物防治。这是关于通过固态发酵生产阿维菌素的首次报道,展示了其在工农业应用中的巨大潜力。我们的工作也为在其他链霉菌物种中通过固态发酵生产其他天然产物提供了指导。

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