Research Center of Harmful Algae and Marine Biology, and Key Laboratory of Eutrophication and Red Tide Prevention of Guangdong Higher Education Institutes, Jinan University, 510632 Guangzhou, PR China.
Research Center of Harmful Algae and Marine Biology, and Key Laboratory of Eutrophication and Red Tide Prevention of Guangdong Higher Education Institutes, Jinan University, 510632 Guangzhou, PR China.
Mar Pollut Bull. 2020 Jun;155:111200. doi: 10.1016/j.marpolbul.2020.111200. Epub 2020 Apr 24.
The nitrogen uptake kinetics and physiological growth of Karenia mikimotoi and Skeletonema costatum sensu lato grown on different N substrates and concentrations were compared in the laboratory. In the presence of three N substrates, both species preferred to take up NH. K. mikimotoi and S. costatum s.l. showed the highest substrate affinities for urea and NO, respectively. Both species grew well on three N substrates, and the growth parameters were comparable among the different N substrates. However, K. mikimotoi assimilated urea more efficiently than it assimilated either NO or NH. Different with S. costatum s.l., K. mikimotoi grew slowly and steady and the physiological and growth activities in N-depleted conditions were higher than those in N-replete conditions. Our results suggested that K. mikimotoi shows a greater readiness for uptake and assimilation of urea, and that this species is more competitive in an N-depleted environment when compared with S. costatum s.l.
实验室比较了不同氮源和浓度下米氏凯伦藻和广义中肋骨条藻的氮吸收动力学和生理生长。在三种氮源存在的情况下,两种生物都更倾向于吸收 NH。米氏凯伦藻和广义中肋骨条藻对尿素和 NO 的亲和力最高。两种生物在三种氮源上均生长良好,不同氮源之间的生长参数相当。然而,米氏凯伦藻对尿素的同化效率高于对 NO 或 NH 的同化效率。与广义中肋骨条藻不同,米氏凯伦藻生长缓慢而稳定,在氮匮乏条件下的生理和生长活性高于氮充足条件下的活性。我们的结果表明,米氏凯伦藻对尿素的吸收和同化具有更高的准备性,与广义中肋骨条藻相比,该物种在氮匮乏环境中更具竞争力。