Santhosh Anagha, Neuhauser Sigrid
Institute of Microbiology, Universität Innsbruck, Innsbruck, Austria.
Curr Res Microb Sci. 2024 Oct 24;7:100306. doi: 10.1016/j.crmicr.2024.100306. eCollection 2024.
Brown algae belong to the class Phaeophyceae which are mainly multicellular, photosynthetic organisms, however they evolved independently from terrestrial plants, green and red algae. In the past years marine aquaculture involving brown algae has gained enormous momentum. In both natural environments and aquaculture, brown algae are susceptible to infection by various prokaryotic and eukaryotic parasites. While our understanding of host-parasite interactions in brown algae is gaining recognition, our understanding of how brown algae react to biotic stress remains incomplete. The objective of this review is to address research gaps in the field by providing a summary of what is already known about the response of brown algae to abiotic and biotic stress. The biology of eukaryotic zoosporic pathogens is also discussed, as those parasites have been used in laboratory experiments to study diseases of brown algae. These studies often relied on parasites-infecting which has become a brown algal model organism to study host-pathogen interactions. Stress response in brown algae involves processes similar to hypersensitivity response, oxidative stress response, and activation of peroxidases, but also the production of blue fluorescent metabolites and deposition of β-1,3-glucan in the cell wall. Cell wall modification, expression of several defence related proteins, and secondary metabolite production also hold a crucial role in brown algal defence mechanism. Understanding host-pathogen interactions and the associated mechanisms is vital to discover strategies to control pathogens in the growing aquaculture sector.
褐藻属于褐藻纲,主要是多细胞光合生物,然而它们是从陆生植物、绿藻和红藻独立进化而来的。在过去几年中,涉及褐藻的海水养殖发展迅猛。在自然环境和水产养殖中,褐藻都易受各种原核和真核寄生虫的感染。虽然我们对褐藻中宿主 - 寄生虫相互作用的理解正在得到认可,但我们对褐藻如何应对生物胁迫的理解仍不完整。本综述的目的是通过总结关于褐藻对非生物和生物胁迫反应的已知情况来填补该领域的研究空白。还讨论了真核游动孢子病原体的生物学,因为这些寄生虫已被用于实验室实验来研究褐藻疾病。这些研究通常依赖于感染已成为研究宿主 - 病原体相互作用的褐藻模式生物的寄生虫。褐藻中的应激反应涉及类似于超敏反应、氧化应激反应和过氧化物酶激活的过程,还包括蓝色荧光代谢物的产生以及β - 1,3 - 葡聚糖在细胞壁中的沉积。细胞壁修饰、几种防御相关蛋白的表达以及次生代谢物的产生在褐藻防御机制中也起着关键作用。了解宿主 - 病原体相互作用及其相关机制对于发现控制不断发展的水产养殖部门中病原体的策略至关重要。