Wang Xinyi, Feng Ziqiao, Li Chenhui, Cai Xiaoni, Long Hao, Zhang Xiang, Huang Aiyou, Zeng Yanhua, Ren Wei, Xie Zhenyu
State Key Laboratory of Marine Resource Utilization in the South China Sea, Hainan University, Haikou 570228, China.
Hainan Provincial Key Laboratory for Tropical Hydrobiology and Biotechnology, Hainan University, Haikou 570228, China.
Antioxidants (Basel). 2022 Oct 3;11(10):1977. doi: 10.3390/antiox11101977.
Agar accounts for ~60% of the dry weight of some red macroalgae, and the breakdown of this kind of polysaccharide releases high-value compounds; therefore, the resource utilization of agar is of great significance to improve the added value of these macroalgae. Herein, QZ9-9 isolated from tropical in Hainan Island was characterized as an agarolytic bacterium, which displayed a high agar-degrading activity. The highest diameters of the degradation zones of the QZ9-9 and its extracellular-agarase (12.16 U/mL) were 41.46 mm and 22.89 mm, respectively, and the first-order degradation rate constants of those were 0.02 h and 0.77 U, respectively. Importantly, the fermentation products of QZ9-9 exhibited antioxidant activity, and the peak of DPPH scavenging activity of 50 h fermentation products of this strain was up to 50.79% in the reaction for 1 h; the DPPH scavenging activity of low molecule metabolites (≤3 kDa) in particular was up to ~85.85%. A total of 766 metabolites were detected in the low molecule metabolites by metabolomics. The peptide-like metabolites, such as prolyl-histidine, isoleucyl-histidine, isoleucyl-proline and arginyl-proline, and the antioxidant maculosin were found in the top 20 metabolites with relatively high abundance. Additionally, the antioxidant activity of maculosin was further verified in this work. We concluded that the low molecule metabolites of QZ9-9 with relatively high antioxidant activity are interesting candidates for preparing desirable non-toxic antioxidants, thereby facilitating the high value-added utilization of macroalgae in the fields of cosmetic, food preservation, and pharmaceutical industries.
琼脂约占某些红藻干重的60%,这种多糖的分解会释放出高价值化合物;因此,琼脂的资源利用对于提高这些大型藻类的附加值具有重要意义。在此,从海南岛热带地区分离出的QZ9-9被鉴定为一种琼脂分解菌,其表现出较高的琼脂降解活性。QZ9-9及其胞外琼脂酶(12.16 U/mL)的降解区最大直径分别为41.46 mm和22.89 mm,其一级降解速率常数分别为0.02 h和0.77 U。重要的是,QZ9-9的发酵产物具有抗氧化活性,该菌株50 h发酵产物在1 h反应中的DPPH清除活性峰值高达50.79%;特别是低分子代谢产物(≤3 kDa)的DPPH清除活性高达约85.85%。通过代谢组学在低分子代谢产物中总共检测到766种代谢物。在丰度相对较高的前20种代谢物中发现了脯氨酰-组氨酸、异亮氨酰-组氨酸、异亮氨酰-脯氨酸和精氨酰-脯氨酸等类肽代谢物以及抗氧化剂斑脱土素。此外,在这项工作中进一步验证了斑脱土素的抗氧化活性。我们得出结论,具有较高抗氧化活性的QZ9-9低分子代谢产物是制备理想无毒抗氧化剂的有趣候选物,从而有助于大型藻类在化妆品、食品保鲜和制药行业领域的高附加值利用。