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与珊瑚相关的全生物共生体范式的概念化

Conceptualization of the Holobiont Paradigm as It Pertains to Corals.

作者信息

Goulet Tamar L, Erill Ivan, Ascunce Marina S, Finley Sheree J, Javan Gulnaz T

机构信息

Department of Biology, University of Mississippi, University, MS, United States.

Department of Biological Sciences, University of Maryland Baltimore County, Baltimore, MD, United States.

出版信息

Front Physiol. 2020 Sep 23;11:566968. doi: 10.3389/fphys.2020.566968. eCollection 2020.

Abstract

Corals' obligate association with unicellular dinoflagellates, family Symbiodiniaceae form the foundation of coral reefs. For nearly a century, researchers have delved into understanding the coral-algal mutualism from multiple levels of resolution and perspectives, and the questions and scope have evolved with each iteration of new techniques. Advances in genetic technologies not only aided in distinguishing between the multitude of Symbiodiniaceae but also illuminated the existence and diversity of other organisms constituting the coral microbiome. The coral therefore is a meta-organism, often referred to as the coral holobiont. In this review, we address the importance of including a holistic perspective to understanding the coral holobiont. We also discuss the ramifications of how different genotypic combinations of the coral consortium affect the holobiont entity. We highlight the paucity of data on most of the coral microbiome. Using Symbiodiniaceae data, we present evidence that the holobiont properties are not necessarily the sum of its parts. We then discuss the consequences of the holobiont attributes to the fitness of the holobiont and the myriad of organisms that contribute to it. Considering the complexity of host-symbiont genotypic combinations will aid in our understanding of coral resilience, robustness, acclimation, and/or adaptation in the face of environmental change and increasing perturbations.

摘要

珊瑚与单细胞双鞭毛藻(共生藻科)的专性共生关系构成了珊瑚礁的基础。近一个世纪以来,研究人员从多个分辨率层次和视角深入探究珊瑚 - 藻类共生关系,随着新技术的每一次迭代,问题和研究范围都在不断演变。基因技术的进步不仅有助于区分众多的共生藻科,还揭示了构成珊瑚微生物组的其他生物的存在和多样性。因此,珊瑚是一种超生物体,通常被称为珊瑚全生物。在这篇综述中,我们阐述了从整体角度理解珊瑚全生物的重要性。我们还讨论了珊瑚共生体不同基因型组合如何影响全生物实体的后果。我们强调了关于大多数珊瑚微生物组的数据匮乏。利用共生藻科的数据,我们提供证据表明全生物的特性不一定是其各部分的总和。然后我们讨论全生物属性对全生物适应性以及构成它的众多生物的影响。考虑宿主 - 共生体基因型组合的复杂性将有助于我们理解珊瑚在面对环境变化和日益增加的干扰时的恢复力、稳健性、适应和/或适应性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec33/7538806/6205cf910730/fphys-11-566968-g001.jpg

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