Single-cell transcriptome sequencing reveals the cell populations and functions associated with stony coral Pocillopora damicornis

IF 3 2区 生物学 Q1 MARINE & FRESHWATER BIOLOGY Frontiers in Marine Science Pub Date : 2025-02-28 DOI:10.3389/fmars.2025.1551763
Wenguang Diao, Shengyao Zhang, Xueying Zhu, Peiqi Wu, Bingyan Du, Zhe Han, Yunqing Liu, Chunpeng He, Zuhong Lu
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Abstract

IntroductionPocillopora damicornis, a key species of stony corals, has been the subject of considerable scientific study. However, the cellular composition of P. damicornis and the roles of these cells in endosymbiosis and biomineralization remain elusive. The development of single-cell technology has provided new opportunities for researching the cellular and molecular mechanisms underlying symbiosis and mineralization. Nevertheless, the stringent environmental requirements, the complexity of the cellular components, and the paucity of high-quality reference genomes of P. damicornis have posed significant challenges for single-cell transcriptome research.MethodsIn this study, we quantified the transcriptomic expression of P. damicornis by aligning its single-cell transcriptome (scRNA-seq) data to multiple species, including Stylophora pistillata, P. damicornis, and Pocillopora verrucosa. We determined the cell types of P. damicornis by comparing its cluster-specific genes with the published cell type-specific genes of S.pistillata and conducted gene function and enrichment analyses.ResultsUnsupervised clustering analysis yielded the identification of ten distinct cell populations, including epidermis cells, gastrodermis cells, algae-hosting cells, calicoblast, cnidocytes, and immune cells. In addition, we identified 53 genes that were highly similar to known sequences in the symbiotic zooxanthellae. These genes were mainly expressed in four different cell populations, corresponding to active symbiotic populations.ConclusionThis study identified cell types closely associated with symbiosis and calcification in P. damicornis, along with their marker genes, which are consistent with the findings in S. pistillata. These results offer insights into the cellular functions and symbiotic mechanisms of P. damicornis.
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单细胞转录组测序揭示了与石珊瑚poillopora damicornis相关的细胞群和功能
damicornis是一种重要的石珊瑚,一直是科学研究的主题。然而,damicornis的细胞组成以及这些细胞在内共生和生物矿化中的作用仍然是未知的。单细胞技术的发展为研究共生和矿化的细胞分子机制提供了新的契机。然而,严格的环境要求、细胞成分的复杂性以及高质量参考基因组的缺乏,给damicornis单细胞转录组研究带来了重大挑战。方法在本研究中,我们将其单细胞转录组(scRNA-seq)数据与多个物种(包括Stylophora pisttillata, P. damicornis和Pocillopora verrucosa)进行比对,从而量化了P. damicornis的转录组表达。我们通过将P. damicornis的集群特异性基因与已发表的s. pisttillata的细胞类型特异性基因进行比较,确定了P. damicornis的细胞类型,并进行了基因功能和富集分析。结果监督聚类分析鉴定出10个不同的细胞群,包括表皮细胞、胃真皮细胞、藻类寄主细胞、成钙细胞、刺胞细胞和免疫细胞。此外,我们还鉴定出53个与共生虫黄藻中已知序列高度相似的基因。这些基因主要在4个不同的细胞群体中表达,对应于活跃的共生群体。结论本研究确定了damicornis中与共生和钙化密切相关的细胞类型及其标记基因,这与雌蕊花的研究结果一致。这些结果为达摩角藻的细胞功能和共生机制提供了新的认识。
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来源期刊
Frontiers in Marine Science
Frontiers in Marine Science Agricultural and Biological Sciences-Aquatic Science
CiteScore
5.10
自引率
16.20%
发文量
2443
审稿时长
14 weeks
期刊介绍: Frontiers in Marine Science publishes rigorously peer-reviewed research that advances our understanding of all aspects of the environment, biology, ecosystem functioning and human interactions with the oceans. Field Chief Editor Carlos M. Duarte at King Abdullah University of Science and Technology Thuwal is supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, policy makers and the public worldwide. With the human population predicted to reach 9 billion people by 2050, it is clear that traditional land resources will not suffice to meet the demand for food or energy, required to support high-quality livelihoods. As a result, the oceans are emerging as a source of untapped assets, with new innovative industries, such as aquaculture, marine biotechnology, marine energy and deep-sea mining growing rapidly under a new era characterized by rapid growth of a blue, ocean-based economy. The sustainability of the blue economy is closely dependent on our knowledge about how to mitigate the impacts of the multiple pressures on the ocean ecosystem associated with the increased scale and diversification of industry operations in the ocean and global human pressures on the environment. Therefore, Frontiers in Marine Science particularly welcomes the communication of research outcomes addressing ocean-based solutions for the emerging challenges, including improved forecasting and observational capacities, understanding biodiversity and ecosystem problems, locally and globally, effective management strategies to maintain ocean health, and an improved capacity to sustainably derive resources from the oceans.
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