Association with vessel vectors

Actual evidence of being found in samples in a particular vector from any world region.

Anchor and anchor chains. Organisms found on anchors, anchor chain or within attached sediments, including anchor chain lockers.

Ballast water. Ballast water means water with its suspended matter taken on board a ship to control trim, list, draught, stability or stresses of the ship.

Biofouling. Biofouling means the accumulation of aquatic organisms such as micro-organisms, plants, and animals on surfaces and structures immersed in or exposed to the aquatic environment. Biofouling can include microfouling and macrofouling.

  • Macrofouling means large, distinct multicellular organisms visible to the human eye such as barnacles, tubeworms, or fronds of algae.
  • Microfouling means microscopic organisms including bacteria and diatoms and the slimy substances that they produce.
Biofouling comprised of only microfouling is commonly referred to as a slime layer.

Sea chest. The sea chests are cavities (an opening with protection grid) at the bottom side of the ships’ hull (an opening for pumping in and out water for, e.g., ballasting, firefighting) where aquatic organisms may settle and be transported.

Tank sediments. Matter settled out of ballast water within a ship.

Bioaccumulation association

Natural toxins. An organism that accumulates toxins naturally produced by other organisms, such as phytotoxins, in its tissues.

Anthropogenic chemical compounds. An organism that accumulates human-produced chemicals, such as pharmaceuticals, heavy metals, pesticides, dioxins, in its tissues.

Characteristic feeding method

Chemoautotroph. An organism that obtains metabolic energy by oxidation of inorganic substrates such as sulphur, nitrogen or iron.

Deposit feeder – Subsurface. Synonym: detritivore. An organism feeding on fragmented particulate organic matter in the substratum.

Deposit feeder – Surface. Synonym: detritivore. An organism feeding on fragmented particulate organic matter from the surface of the substratum.

Grazer. An organism feeding on plants (higher aquatic plants, benthic algae and phytoplankton) and/or sessile animals organisms.

Herbivore. An organism feeding on plants (higher aquatic plants, benthic algae and phytoplankton).

Mixotroph. An organism both autotrophic and heterotrophic.

Omnivore. An organism feeding on mixed diet of plant and animal material.

Parasite. Feeding on the tissues, blood or other substances of a host.

Photoautotroph. An organism that obtains metabolic energy from light by photosynthesis (e.g. seaweeds, phytoplankton).

Planktotroph. An organism feeding on plankton.

Predator. An organism that feeds by preying on other organisms, killing them for food.

Scavenger. An organism feeding on dead and decaying organic material.

Suspension feeder – Active. An organism feeding on particulate organic matter, including plankton, suspended in the water column, collecting it actively by sweeping or pumping (creating feeding currents).

Suspension feeder – Passive. An organism feeding on particulate organic matter, including plankton, suspended in the water column, utilizing the natural flow to bring particles in contact with feeding structures.

Symbiont contribution. Where some dietary component(s) are provided by symbiotic organisms (e.g. Anemonia with zooxanthellae).

Developmental trait

Brooding. The incubation of eggs either inside or outside the body. Eggs may be brooded to a variety of developmental stages. Males or females may be responsible for brooding.

Direct development. A life cycle lacking a larval stage.

Spawning. The release of gametes into the water.

Lecithotrophy. Development at the expense of internal resources (i.e. yolk) provided by the female.

Parental care. Any form of parental behaviour that is likely to increase the fitness of offspring.

Planktotrophy. Feeding on plankton.

Resting stages. The quiescent stage in the life cycle (dormancy, diapause).

Viviparous. Producing live offspring from within parental body.

Habitat modifying ability potential

Autogenic ecosystem engineers. Organisms which change the environment via their own physical structures (i.e. their living and dead tissues) such as corals, oysters, kelps, sea grasses, etc.

Allogenic ecosystem engineers. Organisms which modify the environment by causing physical state changes in biotic and abiotic materials that, directly or indirectly, modulate the availability of resources to other species (e.g. excavating deep burrows which other organisms co-occupy, damming the water flow, etc).

Keystone species. A keystone species is crucial in maintaining the organization and diversity of its ecological community, by determining the types and numbers of other species.

Life form

Neuston. Organisms that live on (epineuston) or under (hyponeuston) the surface film of water bodies.

Zoobenthos. Animals living on or in the seabed.

Phytobenthos. Algae and higher plants living on or in the seabed.

Zooplankton. Animals living in the water column, unable to maintain their position independent of water movements.

Phytoplankton. Microscopic plankton algae and cyanobacteria.

Benthopelagos. Synonyms: hyperbenthic, benthopelagic, nektobenthic, demersal. An organism living at, in or near the bottom of the sea, but having the ability to swim.

Nekton. Actively swimming aquatic organisms able to move independently of water currents.

Parasite. An organism intimately associated with and metabolically dependent on another living organism (host) for completion of its life cycle.

Symbiont (nonparasitic). An organism living mutually with another species without harming it. Association of two species (symbionts) may be mutually beneficial.

Mobility

Boring. An organism capable of penetrating a solid substrate by mechanical scraping or chemical dissolution.

Burrowing. An organism capable of digging in sediment.

Crawling. An organism moving slowly along on the substrate.

Drifting. An organism whose movement is dependent on wind or water currents.

Permanent attachment. Non-motile; permanently attached at the base. Also includes permanent attachment to a host.

Swimming. An organism capable of moving through the water by means of fins, limbs or appendages.

Temporary attachment. Temporary / sporadic attachment. Attached to a substratum but capable of movement across (or through) it (e.g. Actinia). Also includes temporary attachment to a host.

Native origin

The region the species originates from.

References



References should follow the standard of Biological invasions:


Journal article
Gamelin FX, Baquet G, Berthoin S, Thevenet D, Nourry C, Nottin S, Bosquet L (2009) Effect of high intensity intermittent training on heart rate variability in prepubescent children. Eur J Appl Physiol 105:731-738. doi: 10.1007/s00421-008-0955-8
Ideally, the names of all authors should be provided, but the usage of “et al” in long author lists will also be accepted:
Smith J, Jones M Jr, Houghton L et al (1999) Future of health insurance. N Engl J Med 965:325–329


Article by DOI


Slifka MK, Whitton JL (2000) Clinical implications of dysregulated cytokine production. J Mol Med. doi:10.1007/s001090000086


Book
South J, Blass B (2001) The future of modern genomics. Blackwell, London


Book chapter
Brown B, Aaron M (2001) The politics of nature. In: Smith J (ed) The rise of modern genomics, 3rd edn. Wiley, New York, pp 230-257


Online document
Cartwright J (2007) Big stars have weather too. IOP Publishing PhysicsWeb. http://physicsweb.org/articles/news/11/6/16/1. Accessed 26 June 2007


Dissertation
Trent JW (1975) Experimental acute renal failure. Dissertation, University of California

Reproductive frequency

Iteroparous. Organisms breeding more than once in their lifetime.

Semelparous. Organisms breeding once in their lifetime.

Reproductive type

Asexual. Budding, Fission, Fragmentaion, including parthenogenesis. A form of asexual multiplication in which:
a) a new individual begins life as an outgrowth from the body of the parent. It may then separate to lead an independent existence or remain connected or otherwise associated to form a colonial organism;
b) the ovum develops into a new individual without fertilization;
c) division of the body into two or more parts each or all of which can grow into new individuals is involved.

Self-fertilization. Selfing or autogamy. The union of a male and female gamete produced by the same individual.

Sexual. Permanent hermaphrodite, Protandrous hermaphrodite, Protogynous hermaphrodite, Gonochoristic.
Capable of producing both ova and spermatozoa either at the same time. A condition of hermaphroditism in plants and animals where male gametes mature and are shed before female gametes mature or vice versa.
Having separate sexes.

Salinity

The exact salinity range if known (psu), else salinity zone(s) according to the Venice system:
1. Limnetic [<0.5psu]
2. β-Oligohaline [0.5-3psu]
3. α-Oligohaline [3-5psu]
4. β-Mesohaline [5-10psu]
5. α-Mesohaline [10-18psu]
6. Polymixohaline [18-30psu]
7. Euhaline [30-40psu]
8. Hypersaline [>40psu]

Sociability

Colonial. Descriptive of organisms produced asexually which remain associated with each other; in many animals, retaining tissue contact with other polyps or zooids as a result of incomplete budding.

Gregarious. Organisms living in groups or communities, growing in clusters.

Solitary. Living alone, not gregarious.

Sub-species level

A geographical subset of a species showing discrete differences in morphology, coloration or other features when compared with other members of the species. Subspecies may also differ in their habitat or behavior, but they can interbreed. Often the lowest taxonomic level within a classification system.

Synonym

Valid synonyms of a species (not all of them).

Toxicity

Poisonous. An organism capable of producing poison that gains entry to another organism body via the gastrointestinal tract, the respiratory tract, or via absorption through intact body layers.

Venomous. An organism capable of producing poison, usually injected through another organism intact skin by bite or sting.

Not relevant. Neither poisonous nor venomous.

Public domain: Species account

Species Dasya baillouviana [WoRMS]
Authority (S.G.Gmelin) Montagne, 1841
Family Dasyaceae  
Order Ceramiales  
Class Florideophyceae  
Phylum Rhodophyta  
Synonym (?) Baillouviana pedicellata (Agardh C) (Kuntze, 1891)
Dasya pedicellata
Sphaerococcus pedicellatus (Agardh C,1822)

References (not structured):
Dixon PS (1970) Miscellaneous notes on algal taxonomy and nomenclature
Wolff WJ (2005) Non-indigenous marine and estuarine species in The Netherlands. Zoologische Mededelingen 79
Sub-species level (?) Not entered
Native origin (?) LME: 8. Scotian Shelf
LME: 26. Mediterranean Sea

References (not structured):
Den Hartog C (1964) Ecology of Dasya pedicellata in the Netherlands
Dixon PS (1970) Miscellaneous notes on algal taxonomy and nomenclature
Richardson JP (1981) Persistence and development of Dasya baillouvianu (Gmelin) Montagne (Rhodophyceae, Dasyaceae) in North Carolina. Phycologia 20:385-391

Comments:
The specie seems to be native to both Mediterranean and North East Atlantic (Nova Scotia) regions
Life form / Life stage (?)
 AdultJuvenileLarvaeEggsResting stage
Neuston
Zoobenthos
PhytobenthosXX
Zooplankton
Phytoplankton
Benthopelagos
Nekton
Ectoparasite
Endoparasite
Symbiont (non parasitic)


References (not structured):
Den Hartog C (1964) Ecology of Dasya pedicellata in the Netherlands
Novaczek I, Bird C, McLachlan J (1987) Phenology and temperature tolerance of the red algae Chondria baileyana, Lomentaria baileyana, Griffithsia globifera, and Dasya baillouviana in Nova Scotia. Canadian journal of botany 65:57-62

Comments:
The larvae is considered here as a thalli, which can be moved due to currents or water movements.
Sociability / Life stage (?)
 AdultJuvenileLarvaeEggsResting stage
SolitaryXXX
Gregarious
Colonial


References (not structured):
Novaczek I, Bird C, McLachlan J (1987) Phenology and temperature tolerance of the red algae Chondria baileyana, Lomentaria baileyana, Griffithsia globifera, and Dasya baillouviana in Nova Scotia. Canadian journal of botany 65:57-62

Comments:
There is no litterature that D.baillouviana (D.pedicellata) would form gregarious or colonial structures.
Reproductive frequency (?) Iteroparous

References (not structured):
Novaczek I, Bird C, McLachlan J (1987) Phenology and temperature tolerance of the red algae Chondria baileyana, Lomentaria baileyana, Griffithsia globifera, and Dasya baillouviana in Nova Scotia. Canadian journal of botany 65:57-62
Richardson JP (1981) Persistence and development of Dasya baillouvianu (Gmelin) Montagne (Rhodophyceae, Dasyaceae) in North Carolina. Phycologia 20:385-391.

Comments:
The macroalgae is an summer-annual (Novarczek et al 1987), though it is mention that the plant dies back until more sufficient conditions appear.
Reproductive type (?) Asexual
Sexual

References:
Novaczek I, Bird C, McLachlan J (1987) Phenology and temperature tolerance of the red algae Chondria baileyana, Lomentaria baileyana, Griffithsia globifera, and Dasya baillouviana in Nova Scotia. Canadian journal of botany 65:57-62
Richardson JP (1981) Persistence and development of Dasya baillouvianu (Gmelin) Montagne (Rhodophyceae, Dasyaceae) in North Carolina. Phycologia 20:385-391.
Ritzmann NF, Salles JP, Bouzon ZL et al (2010) Dasya rigidula (Ceramiales, Rhodophyta) in the south and southeastern brazillan coast Dasya rigidula (Ceramiales, Rhodophyta) no litoral sul e sudeste do Brasil. INSULA Revista de Botânica 36:07

Comments:
There can be also observed vegetative reproduction (Ritzmann et al 2010). Tn the reproduction phase D.baillouvian forms tetrasporphyte and gametophyte (Novaczek et al 1987).
Developmental trait (?) Direct development

References:
Novaczek I, Bird C, McLachlan J (1987) Phenology and temperature tolerance of the red algae Chondria baileyana, Lomentaria baileyana, Griffithsia globifera, and Dasya baillouviana in Nova Scotia. Canadian journal of botany 65:57-62
Richardson JP (1981) Persistence and development of Dasya baillouvianu (Gmelin) Montagne (Rhodophyceae, Dasyaceae) in North Carolina. Phycologia 20:385-391

Comments:
D.baillouviana has somatic and cytological phases in succession. The new individuals start developement from the thalli which is shed as filaments or single cells, that act as propagule (Novaczek et al 1987).
Characteristic feeding method / Life stage (?)
 AdultJuvenileLarvaeEggsResting stage
PhotoautotrophX
Mixotroph
Suspension feeder – Active
Suspension feeder – Passive
Deposit feeder – Surface
Deposit feeder – Sub-surface
Omnivore
Herbivore
Scavenger
Symbiont contribution
Planktotroph
Chemoautotroph
Predator
Grazer


References (not structured):
Novaczek I, Bird C, McLachlan J (1987) Phenology and temperature tolerance of the red algae Chondria baileyana, Lomentaria baileyana, Griffithsia globifera, and Dasya baillouviana in Nova Scotia. Canadian journal of botany 65:57-62

Comments:
The individuals are photoautotrophs and no literature about different life stages is not found, considering the reproduction stage.
Mobility / Life stage (?)
 AdultJuvenileLarvaeEggsResting stage
Swimmer
Crawler
Burrower
Drifter
Temporary attachment
Permanent attachmentXX
Borer


References (not structured):
Novaczek I, Bird C, McLachlan J (1987) Phenology and temperature tolerance of the red algae Chondria baileyana, Lomentaria baileyana, Griffithsia globifera, and Dasya baillouviana in Nova Scotia. Canadian journal of botany 65:57-62

Comments:
The thalli (propagule) as the germinated structure already forms small filamentous holdfasts to able to attach the surface (Novaczek et al 1987).
Salinity tolerance range (?) Venice system:
6. Polymixohaline [18-30psu]

References:
Paavola M, Olenin S, Leppäkoski E (2005) Are invasive species most successful in habitats of low native species richness across European brackish water seas? Estuarine, Coastal and Shelf Science 64 (2005) 738-750
Munro ALS, Utting SD, Wallentinus I (1999) Status of introductions of non-indigenous marine Species to North Atlantic Waters 1981-1991. ICES Cooperative Research Report, 231: pp.121
Snoeijs P (1999) Marine and brackish waters. In: Rydin H., Snoeijs P., Diekmann M. (eds.) Swedish Plant Geography 1999: 187-212
Habitat modifying ability potential (?) OLD VALUE

References:
Novaczek I, Bird C, McLachlan J (1987) Phenology and temperature tolerance of the red algae Chondria baileyana, Lomentaria baileyana, Griffithsia globifera, and Dasya baillouviana in Nova Scotia. Canadian journal of botany 65:57-62
Richardson JP (1981) Persistence and development of Dasya baillouvianu (Gmelin) Montagne (Rhodophyceae, Dasyaceae) in North Carolina. Phycologia 20:385-391

Comments:
--/OLD VALUE/--
Seasonal habitat former

At low temperatures the adult plants, which can grow up to 1.75 m tall, die back, or do not survive the prolonged winter (Novaczek et al 1987). In the case noticeable structures of the plant disappears making the resources available.
Toxicity / Life stage (?) Not relevant

Comments:
No records found about the harmful features for the animal/human health of D.baillouviana specie.
Bioaccumulation association (?) Unknown
Known human health impact? Not known

Comments:
Not available.
Known economic impact? Not known

Comments:
Not available.
Known measurable environmental impact? Known

References:
Maggs, C. A., Stegenga, H. 1998. Red algal exotics on North Sea coasts. Helgoländer Meeresuntersuchungen, 52, pp. 243-258.

Comments:
D. baiflouviana failed to colonize the east coast of England, because intolerance of wave action.
Included in the Target Species list? No

References:
HELCOM, 2009. Alien Species and Ballast Water [PDF]. Available at: (https://archive.iwlearn.net/helcom.fi/stc/files/shipping/Table_2_Alienspecies_%20lists_2009.pdf)
Association with vessel vectors (?) Ballast waters
Biofouling

References:
Gollasch S, Haydar D, Minchin D et al (2009) Introduced aquatic species of the North Sea coasts and adjacent brackish waters. Biological Invasions in Marine Ecosystems:507-528

Zaiko A., Martinez J.L., Schmidt-Petersen J., Ribicic D., Samuiloviene A. & Garcia-Vazquez E. (2015) Metabarcoding approach for the ballast water surveillance – an advantageous solution or an awkward challenge? Marine Pollution Bulletin, in press.

Comments:
Attached specie or life stages of the specie can be found in hull fouling.

presence of Dasya sp. was detected in ballast water by metabarcoding
Molecular information Available

http://www.ncbi.nlm.nih.gov/nuccore?term=Dasya baillouviana

Comments:
Genetic information of DNA sequance, mRNA and rRNA genes can be found in GenBank.
Last update bySandra Gečaitė, 2024-07-11