Korea Institute of Ocean Science and Technology, 2670, Iljudong-ro, Gujwa-eup, Jeju, Republic of Korea; University of Science and Technology, 217, Gajeong-ro, Yuseong-gu, Daejeon, Republic of Korea.
Korea Institute of Ocean Science and Technology, 2670, Iljudong-ro, Gujwa-eup, Jeju, Republic of Korea.
Sci Total Environ. 2024 Oct 20;948:174780. doi: 10.1016/j.scitotenv.2024.174780. Epub 2024 Jul 14.
The fish processing industry generates a significant amount of waste, and the recycling of this waste is an issue of global concern. We sought to utilize the heads of cutlassfish (Trichiurus lepturus), which are typically discarded during processing, to produce peptone, which is an important source of amino acids for microbial growth and recombinant protein production. Cutlassfish head muscle (CHM) were isolated, and the optimal protease and reaction conditions for peptone production were determined. The resulting peptone contained 12.22 % total nitrogen and 3.19 % amino nitrogen, with an average molecular weight of 609 Da, indicating efficient hydrolysis of CHM. Growth assays using Escherichia coli have shown that cutlassfish head peptone (CP) supports similar or superior growth compared to other commercial peptones. In addition, when recombinant chitosanase from Bacillus subtilis and human superoxide dismutase were produced in E. coli, CP gave the highest expression levels among six commercial peptones tested. In addition, the expression levels of chitosanase and superoxide dismutase were 20 % and 32 % higher, respectively, in CP medium compared to the commonly used Luria-Bertani (LB) medium. This study demonstrates the potential of using cuttlassfish waste in the production of microbial media, thereby adding significant value to fish waste. The results contribute to sustainable waste management practices and open avenues for innovative uses of fish processing by-products in biotechnological applications.
鱼类加工产业产生了大量的废弃物,而这些废弃物的回收利用是一个全球性关注的问题。我们试图利用刀鲚鱼头(Trichiurus lepturus)来生产蛋白胨,这是微生物生长和重组蛋白生产中氨基酸的重要来源。我们从刀鲚鱼头肌肉(CHM)中分离出蛋白胨,并确定了生产蛋白胨的最佳蛋白酶和反应条件。所得蛋白胨含有 12.22%的总氮和 3.19%的氨基酸氮,平均分子量为 609Da,表明 CHM 得到了有效的水解。使用大肠杆菌进行的生长实验表明,刀鲚鱼头蛋白胨(CP)支持类似或优于其他商业蛋白胨的生长。此外,当枯草芽孢杆菌来源的壳聚糖酶和人超氧化物歧化酶在大肠杆菌中生产时,CP 在六种测试的商业蛋白胨中表现出最高的表达水平。此外,与常用的 LB 培养基相比,CP 培养基中壳聚糖酶和超氧化物歧化酶的表达水平分别提高了 20%和 32%。本研究证明了利用刀鲚鱼废弃物生产微生物培养基的潜力,从而为鱼类废弃物增加了显著的价值。研究结果有助于可持续的废物管理实践,并为利用鱼类加工副产物进行生物技术应用开辟了新的途径。