School of Biology and Biological Engineering, South China University of Technology, Guangzhou Higher Education Mega Center, Panyu District, Guangzhou, Guangdong 510006, China.
Institute of Animal Sciences, Guangdong Academy of Agricultural Sciences, Guangzhou, 510640, China.
Waste Manag. 2024 Feb 15;174:528-538. doi: 10.1016/j.wasman.2023.12.015. Epub 2023 Dec 21.
Feather waste, a rich source of proteins, has traditionally been processed through high-temperature puffing and acid-base hydrolysis, contributing to generation of greenhouse gases and HS. To address this issue, we employed circular economy techniques to recover the nutritional value of feather waste. Streptomyces sp. SCUT-3, an efficient proteolytic and chitinolytic bacterium, was isolated for feather degradation previously. This study aimed to valorize feather waste for feed purposes by enhancing its feather transformation ability through promoter optimization. Seven promoters were identified through omics analysis and compared to a common Streptomyces promoter ermE*p. The strongest promoter, p24880, effectively enhanced the expression of three candidate keratinases (Sep39, Sep40, and Sep53). The expression efficiency of double-, triple-p24880 and sandwich p24880-sep39-p24880 promoters were further verified. The co-overexpression strain SCUT-3-p24880-sep39-p24880-sep40 exhibited a 16.21-fold increase in keratinase activity compared to the wild-type. Using this strain, a solid-state fermentation process was established that increased the feather/water ratio (w/w) to 1:1.5, shortened the fermentation time to 2.5 days, and increased soluble peptide and free amino acid yields to 0.41 g/g and 0.14 g/g, respectively. The resulting has high protein content (90.49 %), with high in vitro digestibility (94.20 %). This method has the potential to revolutionize the feather waste processing industry.
羽毛废料是一种富含蛋白质的资源,传统上经过高温膨化和酸碱水解处理,导致温室气体和 HS 的产生。为了解决这个问题,我们采用循环经济技术来回收羽毛废料的营养价值。先前已经分离到一种高效的蛋白水解和几丁质水解细菌——链霉菌属 SCUT-3,用于羽毛降解。本研究旨在通过优化启动子来提高其羽毛转化能力,从而将羽毛废料增值为饲料。通过组学分析鉴定了七个启动子,并与常见的链霉菌启动子 ermE*p 进行了比较。最强的启动子 p24880 有效地增强了三种候选角蛋白酶(Sep39、Sep40 和 Sep53)的表达。进一步验证了双、三 p24880 和 sandwich p24880-sep39-p24880 启动子的表达效率。与野生型相比,共表达菌株 SCUT-3-p24880-sep39-p24880-sep40 的角蛋白酶活性提高了 16.21 倍。利用该菌株,建立了固态发酵工艺,将羽毛/水的比例(w/w)提高到 1:1.5,发酵时间缩短至 2.5 天,并分别将可溶性肽和游离氨基酸的产量提高到 0.41g/g 和 0.14g/g。所得产物具有高蛋白含量(90.49%)和高体外消化率(94.20%)。这种方法有可能彻底改变羽毛废料处理行业。