Marine Science and Fisheries Department, College of Agricultural and Marine Sciences, Sultan Qaboos University , Sultanate of Oman.
Centre of Excellence in Marine Biotechnology, Sultan Qaboos University , Sultanate of Oman.
Biofouling. 2019 May;35(5):585-595. doi: 10.1080/08927014.2019.1624727. Epub 2019 Jul 8.
Climate change (CC) is driving modification of the chemical and physical properties of estuaries and oceans with profound consequences for species and ecosystems. Numerous studies investigate CC effects from species to ecosystem levels, but little is known of the impacts on biofilm communities and on bioactive molecules such as cues, adhesives and enzymes. CC is induced by anthropogenic activity increasing greenhouse emissions leading to rises in air and water temperatures, ocean acidification, sea level rise and changes in ocean gyres and rainfall patterns. These environmental changes are resulting in alterations within marine communities and changes in species ranges and composition. This review provides insights and synthesis of knowledge about the effect of elevated temperature and ocean acidification on microfouling communities and bioactive molecules. The existing studies suggest that CC will impact production of bioactive compounds as well as the growth and composition of biofouling communities. Undoubtedly, with CC fouling management will became an even greater challenge.
气候变化(CC)正在改变河口和海洋的化学和物理特性,对物种和生态系统产生了深远的影响。许多研究从物种到生态系统水平调查 CC 效应,但对生物膜群落和生物活性分子(如信号、粘合剂和酶)的影响知之甚少。CC 是由人为活动引起的,温室气体排放增加导致空气和水温上升、海洋酸化、海平面上升以及海洋漩涡和降雨模式的变化。这些环境变化导致海洋生物群落内部发生变化,物种范围和组成发生变化。本综述提供了关于高温和海洋酸化对微生境群落和生物活性分子影响的见解和综合知识。现有研究表明,CC 将影响生物活性化合物的产生以及生物膜群落的生长和组成。毫无疑问,随着 CC 的出现,生物污损管理将成为更大的挑战。