Javascript must be enabled to continue!
Alternative pathways into the deep sea: patterns in Bivalvia
View through CrossRef
Abstract
Relatively few clades have colonized the deep sea. Here, we analyse evolutionary pathways into this harsh environment, as a continuum defined by two potential endmembers—a ‘piecemeal model’, with exclusively deep-sea species (deep-sea endemics herein) derived from multiple, independent entries and an ‘in situ diversification model’ with one entry followed by species proliferation. We focus first on two ancient, distantly related subclades in Class Bivalvia, Mytilidae and Lucinidae, each with hundreds of species occurring globally from the intertidal to abyssal plains. Placing bathymetric ranges into newly inferred molecular phylogenies, we find that the deep-sea endemics within Lucinidae derive in piecemeal fashion, estimating up to 16 phylogenetically isolated entries and perhaps one modest in situ diversification. Mytilidae entered the deep sea just four times, with most endemics stemming from the prolific in situ diversification of Bathymodiolinae. We suggest that the contrasting phylogenetic patterns of entry and proliferation in these clades may be determined by differences in ancestral adult feeding modes. Across Bivalvia, we find that under half of extant families have deep-sea endemics, with the piecemeal model occurring more frequently. Taken together with other clades, we suggest that evolutionary pathways to deep-sea endemicity are more often shaped by multiple, independent events than by in situ diversification.
Title: Alternative pathways into the deep sea: patterns in Bivalvia
Description:
Abstract
Relatively few clades have colonized the deep sea.
Here, we analyse evolutionary pathways into this harsh environment, as a continuum defined by two potential endmembers—a ‘piecemeal model’, with exclusively deep-sea species (deep-sea endemics herein) derived from multiple, independent entries and an ‘in situ diversification model’ with one entry followed by species proliferation.
We focus first on two ancient, distantly related subclades in Class Bivalvia, Mytilidae and Lucinidae, each with hundreds of species occurring globally from the intertidal to abyssal plains.
Placing bathymetric ranges into newly inferred molecular phylogenies, we find that the deep-sea endemics within Lucinidae derive in piecemeal fashion, estimating up to 16 phylogenetically isolated entries and perhaps one modest in situ diversification.
Mytilidae entered the deep sea just four times, with most endemics stemming from the prolific in situ diversification of Bathymodiolinae.
We suggest that the contrasting phylogenetic patterns of entry and proliferation in these clades may be determined by differences in ancestral adult feeding modes.
Across Bivalvia, we find that under half of extant families have deep-sea endemics, with the piecemeal model occurring more frequently.
Taken together with other clades, we suggest that evolutionary pathways to deep-sea endemicity are more often shaped by multiple, independent events than by in situ diversification.
Related Results
Keanekaragaman Bivalvia Di Perairan Kabupaten Aceh Utara
Keanekaragaman Bivalvia Di Perairan Kabupaten Aceh Utara
Kabupaten Aceh Utara memiliki potensi sumberdaya hayati laut yang melimpah salah satunya adalah bivalvia. Sebagai langkah awal dalam pengelolaan dan pemanfaatan potensi bivalvia di...
On three types of sea breeze in Qingdao of East China: an observational analysis
On three types of sea breeze in Qingdao of East China: an observational analysis
Our knowledge of sea breeze remains poor in the coastal area of East China, due largely to the high terrain heterogeneity. Five–year (2016–2020) consecutive wind observations from ...
THE INFLUENCE OF ENVIRONMENTAL FACTORS TO MOLLUSCS DISTRIBUTION PATTERNS IN NATURAL AND REHABILITATED MANGROVE ECOSYSTEM
THE INFLUENCE OF ENVIRONMENTAL FACTORS TO MOLLUSCS DISTRIBUTION PATTERNS IN NATURAL AND REHABILITATED MANGROVE ECOSYSTEM
Mangrove ecosystem is a habitat of Molluscs (Gastropoda and Bivalvia). This ecosystem is always influenced by environmental factors. This study aims to determine the influence of e...
KEANEKARAGAMAN KELAS BIVALVIA DI HUTAN MANGROVE PANTAI BAMA TAMAN NASIONAL BALURAN
KEANEKARAGAMAN KELAS BIVALVIA DI HUTAN MANGROVE PANTAI BAMA TAMAN NASIONAL BALURAN
Bivalvia (kerang-kerangan) adalah biota yang biasa hidup menetap di dalam substrat dasar perairan. Bivalvia memiliki nilai penting di dalam ekosistem air laut. Secara ekologis Biva...
Diversitas dan Kerapatan Mangrove, Gastropoda, dan Bivalvia di Estuari Perancak, Bali
Diversitas dan Kerapatan Mangrove, Gastropoda, dan Bivalvia di Estuari Perancak, Bali
Penelitian ini bertujuan membandingkan diversitas dan kerapatan mangrove dengan kepadatan gastropoda dan bivalvia di mangrove alami dan rehabilitasi. Pengukuran ekosistem mangrove ...
Diversitas Dan Kerapatan Mangrove, Gastropoda, dan Bivalvia Di Estuari Perancak, Bali
Diversitas Dan Kerapatan Mangrove, Gastropoda, dan Bivalvia Di Estuari Perancak, Bali
Penelitian ini bertujuan membandingkan diversitas dan kerapatan mangrove dengan kepadatan gastropoda dan bivalvia di mangrove alami dan rehabilitasi. Pengukuran ekosistem mangrove ...
Caspian — Black Sea Connection During MIS 5 (Late Pleistocene): Evidences from Drilling Data
Caspian — Black Sea Connection During MIS 5 (Late Pleistocene): Evidences from Drilling Data
Abstract
The Caspian and Black Seas are adjacent inland bodies of water, each with its unique palaeogeographic history. The Black Sea has bee...
The sea ice in Young Sound: Implications for carbon cycling
The sea ice in Young Sound: Implications for carbon cycling
Most of the year, Young Sound is covered by c. 160 cm thick sea ice overlain by a 20-100 cm thick snow cover. During the last 50 years the sea-ice-free period has varied between 63...

