Bove Colleen B, Ingersoll Maria Valadez, Davies Sarah W
Department of Biology, Boston University, Boston, MA 02215, USA.
Integr Comp Biol. 2022 Dec 30;62(6):1756-1769. doi: 10.1093/icb/icac141.
Tropical corals construct the three-dimensional framework for one of the most diverse ecosystems on the planet, providing habitat to a plethora of species across taxa. However, these ecosystem engineers are facing unprecedented challenges, such as increasing disease prevalence and marine heatwaves associated with anthropogenic global change. As a result, major declines in coral cover and health are being observed across the world's oceans, often due to the breakdown of coral-associated symbioses. Here, we review the interactions between the major symbiotic partners of the coral holobiont-the cnidarian host, algae in the family Symbiodiniaceae, and the microbiome-that influence trait variation, including the molecular mechanisms that underlie symbiosis and the resulting physiological benefits of different microbial partnerships. In doing so, we highlight the current framework for the formation and maintenance of cnidarian-Symbiodiniaceae symbiosis, and the role that immunity pathways play in this relationship. We emphasize that understanding these complex interactions is challenging when you consider the vast genetic variation of the cnidarian host and algal symbiont, as well as their highly diverse microbiome, which is also an important player in coral holobiont health. Given the complex interactions between and among symbiotic partners, we propose several research directions and approaches focused on symbiosis model systems and emerging technologies that will broaden our understanding of how these partner interactions may facilitate the prediction of coral holobiont phenotype, especially under rapid environmental change.
热带珊瑚构建了地球上最多样化的生态系统之一的三维框架,为众多不同分类群的物种提供了栖息地。然而,这些生态系统工程师正面临前所未有的挑战,例如疾病流行率上升以及与人为全球变化相关的海洋热浪。因此,全球海洋中都观察到珊瑚覆盖率和健康状况大幅下降,这往往是由于与珊瑚相关的共生关系破裂所致。在这里,我们综述了珊瑚共生体的主要共生伙伴——刺胞动物宿主、共生藻科的藻类和微生物群之间的相互作用,这些相互作用影响性状变异,包括共生的分子机制以及不同微生物伙伴关系所带来的生理益处。在此过程中,我们强调了刺胞动物 - 共生藻科共生关系形成和维持的当前框架,以及免疫途径在这种关系中所起的作用。我们强调,考虑到刺胞动物宿主和藻类共生体的巨大遗传变异,以及它们高度多样的微生物群(这也是珊瑚共生体健康的重要参与者),理解这些复杂的相互作用具有挑战性。鉴于共生伙伴之间复杂的相互作用,我们提出了几个研究方向和方法,重点是共生模型系统和新兴技术,这将拓宽我们对这些伙伴相互作用如何有助于预测珊瑚共生体表型的理解,特别是在快速环境变化的情况下。