This is simply an alphabetical list of all taxa for which trait information is available in the database. The bar on the right side indicates the information coverage for each taxon and trait. When hovering over the bar with the mouse cursor, a tooltip with the trait name is shown. Blue colour indicates that information is present for this trait.

Chirimia biceps (M. Sars, 1861)
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Chone Krøyer, 1856
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Chone acustica (Claparède, 1869)
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Chone arenicola Langerhans, 1881
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Chone collaris Langerhans, 1881
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Chone duneri Malmgren, 1867
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Chone filicaudata Southern, 1914 (objective synonym of Paradialychone filicaudata)
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Chone longiseta Giangrande, 1992
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Chone mollis (Bush in Moore, 1904)
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Chrysopetalidae Ehlers, 1864
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Chrysopetalum debile (Grube, 1855)
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirratulidae
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirratulus Lamarck, 1801
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirratulus atrocollaris Grube, 1877 (subjective synonym of Cirriformia tentaculata according to http://www.marinespecies.org )
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirratulus australis Blanchard in Gay, 1849 (subjective synonym of Cirriformia filigera according to http://www.marinespecies.org )
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirratulus borealis Rathke, 1843 (subjective synonym of Cirriformia tentaculata according to Hartmann-Schröder, G. (1996) )
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirratulus chiajei Marenzeller, 1887 (subjective synonym of Cirriformia filigera according to http://www.marinespecies.org )
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirratulus chrysoderma Claparède, 1869 (objective synonym of Cirriformia chrysoderma)
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirratulus cincinnatus Bobretzky, 1870 (subjective synonym of Cirriformia filigera according to http://www.marinespecies.org )
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirratulus cirratus (O. F. Müller, 1776)
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirratulus comosus Marenzeller, 1879 (subjective synonym of Cirriformia tentaculata according to http://www.marinespecies.org )
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirratulus lamarckii Audouin & Milne Edwards, 1834 (subjective synonym of Cirriformia tentaculata according to http://www.marinespecies.org )
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirratulus longisetis Möbius, 1874 (subjective synonym of Chaetozone setosa according to Hartmann-Schröder, G. (1996) )
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirratulus norvegicus Southern, 1914 (subjective synonym of Cirriformia tentaculata according to Hartmann-Schröder, G. (1996) )
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirratulus pallidus Treadwell, 1931 (subjective synonym of Cirriformia tentaculata according to http://www.marinespecies.org )
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirratulus tentaculus McIntosh, 1913 (objective synonym of Cirriformia tentaculata)
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirrhatulus lamarckii Audouin & Milne Edwards, 1834 (subjective synonym of Cirriformia tentaculata according to http://www.marinespecies.org )
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirriformia
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirriformia chrysoderma (Claparède, 1869)
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
Cirriformia filigera (Delle Chiaje, 1828)
Body size (max)
Complex species
Depth zonation (benthos)
Depth zonation (pelagic)
Developmental mechanism
Egg size
Factors triggering reproduction
Fecundity
Feeding type
Fertilization type
Age at first reproduction
Habitat type
Habitat type of settlement/ early development
Intra- and interspecific competition
Juvenile mobility
Larval development
Larval feeding type
Larval mode of development
Lifespan
Location of parental care
Tube/ burrow material
Metamorphosis type
Migrations of adult
Mobility of adult
Mode of reproduction
Parental care/ Brood protection
Pattern of oogenesis
Population sex ratio
Predated by
Reproduction strategy of the individual
Reproduction temperature
Resorption of eggs
Ecosystem engineering
Substrate type of settlement
Sexual metamorphosis
Sociability
Spawning frequency of the population
Sperm type
Survival salinity
Survival temperature
Epitoky
Synchronization of spawning
Tolerance (AMBI index)
Typically feeds on
Physiographic feature
Substrate type
Feeding structure
Environmental position
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