Species richness and generalists–specialists mosaicism of symbiodiniacean symbionts in corals from Hong Kong revealed by high-throughput ITS sequencing

被引:0
作者
Osama S. Saad
Xin Lin
Tsz Yan Ng
Ling Li
Put Ang
Senjie Lin
机构
[1] Xiamen University,State Key Laboratory of Marine Environmental Science, Xiamen Key Laboratory of Urban Sea Ecological Conservation and Restoration, College of Ocean and Earth Sciences
[2] Red Sea University,Department of Biological Oceanography, Faculty of Marine Sciences and Fisheries
[3] The Chinese University of Hong Kong,Marine Science Laboratory, School of Life Sciences
[4] The Chinese University of Hong Kong,Institute of Space and Earth Information Science
[5] University of Connecticut,Department of Marine Sciences
来源
Coral Reefs | 2022年 / 41卷
关键词
Symbiodiniaceae; Diversity; Generalist/specialist symbionts; rRNA gene, ITS2; Marginal coral;
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摘要
Hong Kong is considered to be a marginal area for coral growth due to its subtropical geography with relatively low winter sea temperatures. Corals can only form non-reefal communities and are believed to host only a low diversity of symbionts with limited flexibility in their symbiont changes. Whether these previously predicted low symbiont diversity is true or is simply a technical artifact and whether these symbionts are generalists or specialists have not fully resolved. To address these issues, we investigated symbiodiniacean diversity and community structure of 30 species of Hong Kong corals using high-throughput sequencing of the nuclear ribosomal RNA gene ITS2. We found high Symbiodiniaceae species richness, with each coral hosting multiple distinct ITS2 symbiont types. Using SymPortal pipeline to alleviate effects of intraspecific ITS polymorphism, the 4662 Symbiodiniaceae ITS2 sequence variants (DIVs) found in our samples were collapsed into 13 distinct ITS2-type profiles, covering Symbiodinium, Breviolum, Cladocopium, and Durusdinium genera, seven of which were coral specific. Cladocopium goreaui was the most diversified (six profiles) and prevalent lineage, dominating the symbiont communities in 29 of the 30 corals species examined. The stress-tolerant Oulastrea crispata was exceptional as its symbionts were dominated by Durusdinium eurythalpos (D13-D13b-D12-D13c profile). Interestingly, Cladocopium C15 was diversified into two ITS2-type profiles, one being Porites lobata specific, while the other was associated with both P. aranetai and P. lutea. Overall, most corals harbor a single dominant generalist symbiont, while some corals host both generalist and specialist symbionts. This work lays the foundation for future research to understand how the generalist and specialist as well as dominant and rare symbionts contribute to the responses and resilience of their host corals against environmental fluctuations in a marginal coral ecosystem, like that in Hong Kong.
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页码:1 / 12
页数:11
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共 327 条
[1]  
Arif C(2014)Assessing Mol Ecol 23 4418-4433
[2]  
Daniels C(2003) diversity in scleractinian corals via next-generation sequencing-based genotyping of the ITS2 rDNA region Annu Rev Ecol Evol Syst 34 661-689
[3]  
Bayer T(2007)Flexibility and specificity in coral-algal symbiosis: diversity, ecology, and biogeography of Mar Ecol Prog Ser 335 237-242
[4]  
Banguera-Hinestroza E(2004)Multiple symbiotic partnerships are common in scleractinian corals, but not in octocorals: Comment on Goulet (2006) Nature 430 741-507
[5]  
Barbrook A(2020)Corals’ adaptive response to climate change: Shifting to new algal symbionts may safeguard devastated reefs from extinction Coral Reefs 39 495-414
[6]  
Howe CJ(2018)Insights from extreme coral reefs in a changing world Front Mar Sci 5 4-2491
[7]  
Lajeunesse TC(2009)The Future of coral reefs subject to rapid climate change: lessons from natural extreme environments Coral Reefs 28 405-34
[8]  
Voolstra CR(2019)Juvenile corals can acquire more carbon from high-performance algal symbionts Front Microbiol 10 1078-2411
[9]  
Baker AC(2020)Latitudinal variation in the molecular diversity and community composition of Symbiodiniaceae in coral from the South China Sea Mol Ecol 29 2477-3633
[10]  
Baker AC(2005)Increased diversity and concordant shifts in community structure of coral-associated Symbiodiniaceae and bacteria subjected to chronic human disturbance Protist 156 19-142