Whale-Fall Ecosystems: Recent Insights into Ecology, Paleoecology, and Evolution
Экосистемы китовых падений: современные представления об экологии, палеоэкологии и эволюции
2014-09-24
SCID: 54.1/kwymya6h
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adaptive radiationbone-eating wormschemosynthetic microbial assemblagesdeep-sea metazoan successionwhale-fall ecosystems
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Abstract (AI)
Whale falls produce remarkable organic- and sulfide-rich habitat islands at the seafloor. The past decade has seen a dramatic increase in studies of modern and fossil whale remains, yielding exciting new insights into whale-fall ecosystems. Giant body sizes and especially high bone-lipid content allow great-whale carcasses to support a sequence of heterotrophic and chemosynthetic microbial assemblages in the energy-poor deep sea. Deep-sea metazoan communities at whale falls pass through a series of overlapping successional stages that vary with carcass size, water depth, and environmental conditions. These metazoan communities contain many new species and evolutionary novelties, including bone-eating worms and snails and a diversity of grazers on sulfur bacteria. Molecular and paleoecological studies suggest that whale falls have served as hot spots of adaptive radiation for a specialized fauna; they have also provided evolutionary stepping stones for vent and seep mussels and could have facilitated speciation in other vent/seep taxa.
Key Findings
1
Large body size and high bone-lipid content enable great-whale carcasses to sustain sequential heterotrophic and chemosynthetic microbial communities.
2
Metazoan communities undergo overlapping successional stages influenced by carcass size, water depth, and environmental conditions.
3
Whale falls create organic- and sulfide-rich habitat islands that support diverse deep-sea ecosystems.
4
Whale falls likely acted as hotspots for adaptive radiation and evolutionary stepping stones for vent and seep mussels, potentially facilitating speciation in other vent and seep taxa.
5
Whale-fall communities include numerous new species and evolutionary novelties, including bone-eating worms, bone-eating snails, and sulfur-bacteria grazers.
Research Object
Modern and fossil whale-fall ecosystems at the deep-seafloor
Research Subject
Ecological succession, community composition, evolutionary novelty, and adaptive radiation associated with whale-fall habitats across ecological and geological timescales
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2014-09-24
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