Arid
DOI10.3390/biology12111446
Comparing Seamounts and Coral Reefs with eDNA and BRUVS Reveals Oases and Refuges on Shallow Seamounts
Baletaud, Florian; Lecellier, Gael; Gilbert, Antoine; Mathon, Laetitia; Come, Jean-Marie; Dejean, Tony; Dumas, Mahe; Fiat, Sylvie; Vigliola, Laurent
通讯作者Vigliola, L
来源期刊BIOLOGY-BASEL
EISSN2079-7737
出版年2023
卷号12期号:11
英文摘要Simple Summary Underwater mountains, or seamounts, are deep-sea habitats collectively forming an area as large as Europe. Yet, they are one of the least studied ecosystems on earth. Known for supporting rich marine life compared to surrounding deep-sea environments, we have no information on how seamounts truly compare to other iconic biodiversity hotspots like shallow coral reefs. To assess the effective ecological value of seamounts, we compared fish communities in coral reefs and seamounts up to 500 m deep using two techniques: environmental DNA to detect the presence of species by filtering fragments of DNA lost by organisms in seawater, and underwater cameras to directly measure fish abundance and size. We found that the deepest seamounts had almost 10 times fewer fish species than coral reefs. However, the shallowest seamounts had larger fish species, including sharks, than coral reefs. We conclude that while seamounts are important and unique ecosystems, they may not be as diverse for fish species as previously thought (diversity hotspots) but rather biomass oases and refuges for endangered species. This study therefore calls for protecting the shallowest seamounts, as they are critical areas for marine life.Abstract Seamounts are the least known ocean biome. Considered biodiversity hotspots, biomass oases, and refuges for megafauna, large gaps exist in their real diversity relative to other ecosystems like coral reefs. Using environmental DNA metabarcoding (eDNA) and baited video (BRUVS), we compared fish assemblages across five environments of different depths: coral reefs (15 m), shallow seamounts (50 m), continental slopes (150 m), intermediate seamounts (250 m), and deep seamounts (500 m). We modeled assemblages using 12 environmental variables and found depth to be the main driver of fish diversity and biomass, although other variables like human accessibility were important. Boosted Regression Trees (BRT) revealed a strong negative effect of depth on species richness, segregating coral reefs from deep-sea environments. Surprisingly, BRT showed a hump-shaped effect of depth on fish biomass, with significantly lower biomass on coral reefs than in shallowest deep-sea environments. Biomass of large predators like sharks was three times higher on shallow seamounts (50 m) than on coral reefs. The five studied environments showed quite distinct assemblages. However, species shared between coral reefs and deeper-sea environments were dominated by highly mobile large predators. Our results suggest that seamounts are no diversity hotspots for fish. However, we show that shallower seamounts form biomass oases and refuges for threatened megafauna, suggesting that priority should be given to their protection.
英文关键词conservation biomass biodiversity hotspot coral reefs mesophotic slope
类型Article
语种英语
开放获取类型gold, Green Published
收录类别SCI-E
WOS记录号WOS:001107846500001
WOS关键词BIODIVERSITY HOTSPOTS ; MARINE BIODIVERSITY ; ENVIRONMENTAL DNA ; FISH BIODIVERSITY ; GLOBAL ASSESSMENT ; DEEP ; ASSEMBLAGES ; PATTERNS ; OCEAN ; EXTRAPOLATION
WOS类目Biology
WOS研究方向Life Sciences & Biomedicine - Other Topics
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/395568
推荐引用方式
GB/T 7714
Baletaud, Florian,Lecellier, Gael,Gilbert, Antoine,et al. Comparing Seamounts and Coral Reefs with eDNA and BRUVS Reveals Oases and Refuges on Shallow Seamounts[J],2023,12(11).
APA Baletaud, Florian.,Lecellier, Gael.,Gilbert, Antoine.,Mathon, Laetitia.,Come, Jean-Marie.,...&Vigliola, Laurent.(2023).Comparing Seamounts and Coral Reefs with eDNA and BRUVS Reveals Oases and Refuges on Shallow Seamounts.BIOLOGY-BASEL,12(11).
MLA Baletaud, Florian,et al."Comparing Seamounts and Coral Reefs with eDNA and BRUVS Reveals Oases and Refuges on Shallow Seamounts".BIOLOGY-BASEL 12.11(2023).
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