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兼性珊瑚,Oculina arbuscula 中的共生关系维持依赖于氮循环、细胞周期调控和免疫。

Symbiosis maintenance in the facultative coral, Oculina arbuscula, relies on nitrogen cycling, cell cycle modulation, and immunity.

机构信息

Department of Biology, Boston University, Boston, MA, USA.

出版信息

Sci Rep. 2021 Oct 27;11(1):21226. doi: 10.1038/s41598-021-00697-6.

DOI:10.1038/s41598-021-00697-6
PMID:34707162
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8551165/
Abstract

Symbiosis with unicellular algae in the family Symbiodiniaceae is common across tropical marine invertebrates. Reef-building corals offer a clear example of cellular dysfunction leading to a dysbiosis that disrupts entire ecosystems in a process termed coral bleaching. Due to their obligate symbiotic relationship, understanding the molecular underpinnings that sustain this symbiosis in tropical reef-building corals is challenging, as any aposymbiotic state is inherently coupled with severe physiological stress. Here, we leverage the subtropical, facultatively symbiotic and calcifying coral Oculina arbuscula to investigate gene expression differences between aposymbiotic and symbiotic branches within the same colonies under baseline conditions. We further compare gene ontology (GO) and KOG enrichment in gene expression patterns from O. arbuscula with prior work in the sea anemone Exaiptasia pallida (Aiptasia) and the salamander Ambystoma maculatum-both of which exhibit endophotosymbiosis with unicellular algae. We identify nitrogen cycling, cell cycle control, and immune responses as key pathways involved in the maintenance of symbiosis under baseline conditions. Understanding the mechanisms that sustain a healthy symbiosis between corals and Symbiodiniaceae algae is of urgent importance given the vulnerability of these partnerships to changing environmental conditions and their role in the continued functioning of critical and highly diverse marine ecosystems.

摘要

共生藻家族中的单细胞藻类共生在热带海洋无脊椎动物中很常见。造礁珊瑚就是一个明显的例子,细胞功能障碍导致的微生态失调破坏了整个生态系统,这一过程被称为珊瑚白化。由于珊瑚与其共生藻之间存在专性共生关系,因此理解维持热带造礁珊瑚共生关系的分子基础具有挑战性,因为任何无共生状态都必然伴随着严重的生理压力。在这里,我们利用亚热带、兼性共生和钙化珊瑚 Oculina arbuscula,在基线条件下,研究同一珊瑚虫无性繁殖枝和共生枝之间的基因表达差异。我们还比较了 O. arbuscula 与海葵 Exaiptasia pallida(海葵)和蝾螈 Ambystoma maculatum 之间基因表达模式的基因本体论(GO)和 KO 富集,这两者都与单细胞藻类有内共生关系。我们确定氮循环、细胞周期控制和免疫反应是维持基线条件下共生关系的关键途径。鉴于这些共生关系对环境变化的脆弱性及其在维持关键和高度多样化的海洋生态系统方面的作用,了解珊瑚和共生藻之间健康共生关系的维持机制具有紧迫的重要性。

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