纤维素酶
水解
化学
酶
裂解酶
生物化学
纤维素
生物技术
生物
作者
Xiyue Zhang,Yongqi Tang,Feng Gao,Xiaodong Xu,Guanjun Chen,Y. Li,Lushan Wang
标识
DOI:10.1016/j.biortech.2024.130481
摘要
Brown algae are rich in biostimulants that not only stimulate the overall development and growth of plants but also have great beneficial effects on the whole soil–plant system. However, alginate, the major component of brown algae, is comparatively difficult to degrade. The cost of preparing alginate oligosaccharides (AOSs) is still too high to produce seaweed fertilizer. In this work, the marine bacterium Vibrio sp. B1Z05 is found to be capable of efficient alginate depolymerization and harbors an extended pathway for alginate metabolism. The B1Z05 extracellular cell-free supernatant exhibited great potential for AOS production at low cost, which, together with cellulase, can efficiently hydrolyze seaweed. The brown algal hydrolysis rates were significantly greater than those of the commercial alginate lyase product CE201, and the obtained seaweed extracts were rich in phytohormones. This work provides a low-cost but efficient strategy for the sustainable production of desirable AOSs and seaweed fertilizer.
科研通智能强力驱动
Strongly Powered by AbleSci AI