Lopes Clara, Obando Johana Marcela Concha, Santos Thalisia Cunha Dos, Cavalcanti Diana Negrão, Teixeira Valéria Laneuville
Laboratory of Natural Products from Seaweeds (ALGAMAR), Department of Marine Biology, Institute of Biology, Federal Fluminense University, Niterói 24210-201, RJ, Brazil.
Ideas Aquarium, Scientific and Technological Base Incubator of the Ribeira Valley and South Coast of São Paulo, São Paulo State University "Júlio de Mesquita Filho", Registro 11900-000, SP, Brazil.
Mar Drugs. 2024 Dec 2;22(12):544. doi: 10.3390/md22120544.
Brown algae are vital structural elements and contributors to biodiversity in marine ecosystems. These organisms adapt to various environmental challenges by producing primary and secondary metabolites crucial for their survival, defense, and resilience. Besides their ecological role, these diverse metabolites have potential for biotechnological applications in industries including pharmaceuticals, cosmetics, and food. A literature review was conducted encompassing studies from 2014-2024, evaluating the effects of hydrodynamics, temperature, light, nutrients, seasonality, and salinity on the chemical profiles of various Phaeophyceae algae species. Thirty original articles spanning 69 species from the Sargassaceae, Dictyotaceae, Fucaceae, and Scytosiphonaceae families were analyzed and systematically arranged, with a focus on methodologies and key findings. This review furthers ecological discussions on each environmental factor and explores the biotechnological potential of metabolites such as polysaccharides, fatty acids, phenolics, diterpenes, and pigments. The information in this work is beneficial for metabolite bioprospecting and in vitro cultivation models as well as indoor and outdoor cultivation studies.
褐藻是海洋生态系统中重要的结构元素和生物多样性的贡献者。这些生物体通过产生对其生存、防御和恢复力至关重要的初级和次级代谢产物来适应各种环境挑战。除了它们的生态作用外,这些多样的代谢产物在制药、化妆品和食品等行业具有生物技术应用潜力。进行了一项文献综述,涵盖2014年至2024年的研究,评估了流体动力学、温度、光照、营养、季节性和盐度对各种褐藻藻种化学特征的影响。分析并系统整理了30篇原始文章,涉及来自马尾藻科、网地藻科、墨角藻科和丝藻科的69个物种,重点关注方法和主要发现。本综述进一步推动了关于每个环境因素的生态学讨论,并探索了多糖、脂肪酸、酚类、二萜和色素等代谢产物的生物技术潜力。这项工作中的信息有利于代谢产物生物勘探和体外培养模型以及室内和室外培养研究。