scholarly journals 100% endemism in mesophotic reef fish assemblages at Kure Atoll, Hawaiian Islands

2016 ◽  
Vol 47 (3) ◽  
pp. 783-784 ◽  
Author(s):  
Randall K. Kosaki ◽  
Richard L. Pyle ◽  
Jason C. Leonard ◽  
Brian B. Hauk ◽  
Robert K. Whitton ◽  
...  
PLoS ONE ◽  
2016 ◽  
Vol 11 (7) ◽  
pp. e0157861 ◽  
Author(s):  
Atsuko Fukunaga ◽  
Randall K. Kosaki ◽  
Daniel Wagner ◽  
Corinne Kane

2014 ◽  
Vol 90 (2) ◽  
pp. 693-703 ◽  
Author(s):  
Corinne Kane ◽  
Randall K Kosaki ◽  
Daniel Wagner

2022 ◽  
Vol 8 ◽  
Author(s):  
Raymond C. Boland ◽  
K. David Hyrenbach ◽  
Edward E. DeMartini ◽  
Frank A. Parrish ◽  
John J. Rooney

Mesophotic reefs (30–150 m) occur in the tropics and subtropics at depths beyond most scientific diving, thereby making conventional surveys challenging. Towed cameras, submersibles, and mixed-gas divers were used to survey the mesophotic reef fish assemblages and benthic substrates of the Au‘au Channel, between the Hawaiian Islands of Maui and Lāna‘i. Non-parametric multivariate analysis: Non-metric Multidimensional Scaling (NMDS), Hierarchical Cluster Analysis (HCA), Multi-Response Permutation Procedure (MRPP), and Indicator Species Analysis (ISA) were used to determine the association of mesophotic reef fish species with benthic substrates and depth. Between 53 and 115-m depths, 82 species and 10 genera of fish were observed together with 10 types of benthic substrate. Eight species of fish (Apolemichthys arcuatus, Centropyge potteri, Chaetodon kleinii, Chromis leucura, Chromis verater, Forcipiger sp., Naso hexacanthus, and Parupeneus multifasciatus) were positively associated with increasing depth, Leptoseris sp. coral cover, and hard-bottom cover, and one species (Oxycheilinus bimaculatus) of fish was positively associated with increasing Halimeda sp. algae cover. Fish assemblages associated with rubble were not significantly different from those associated with sand, Montipora coral beds and Leptoseris coral beds, but were distinct from fish assemblages associated with hard bottom. The patterns in the data suggested two depth assemblages, one “upper mesophotic” between 53 and 95 m and the other deeper, possibly part of a “lower mesophotic” assemblage between 96 and 115 m at the edge of the rariphotic and bottomfish complex.


Coral Reefs ◽  
2015 ◽  
Vol 35 (1) ◽  
pp. 113-123 ◽  
Author(s):  
Marcos Rogerio Rosa ◽  
Aline Cristina Alves ◽  
Diego Valverde Medeiros ◽  
Ericka Oliveira Cavalcanti Coni ◽  
Camilo Moitinho Ferreira ◽  
...  

2020 ◽  
Vol 649 ◽  
pp. 125-140
Author(s):  
DS Goldsworthy ◽  
BJ Saunders ◽  
JRC Parker ◽  
ES Harvey

Bioregional categorisation of the Australian marine environment is essential to conserve and manage entire ecosystems, including the biota and associated habitats. It is important that these regions are optimally positioned to effectively plan for the protection of distinct assemblages. Recent climatic variation and changes to the marine environment in Southwest Australia (SWA) have resulted in shifts in species ranges and changes to the composition of marine assemblages. The goal of this study was to determine if the current bioregionalisation of SWA accurately represents the present distribution of shallow-water reef fishes across 2000 km of its subtropical and temperate coastline. Data was collected in 2015 using diver-operated underwater stereo-video surveys from 7 regions between Port Gregory (north of Geraldton) to the east of Esperance. This study indicated that (1) the shallow-water reef fish of SWA formed 4 distinct assemblages along the coast: one Midwestern, one Central and 2 Southern Assemblages; (2) differences between these fish assemblages were primarily driven by sea surface temperature, Ecklonia radiata cover, non-E. radiata (canopy) cover, understorey algae cover, reef type and reef height; and (3) each of the 4 assemblages were characterised by a high number of short-range Australian and Western Australian endemic species. The findings from this study suggest that 4, rather than the existing 3 bioregions would more effectively capture the shallow-water reef fish assemblage patterns, with boundaries having shifted southwards likely associated with ocean warming.


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