Biology:Marbled crayfish

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Short description: Species of crayfish

Marbled crayfish
Procambarus fallax forma virginalis.jpg
Adult marmorkrebs
Scientific classification edit
Domain: Eukaryota
Kingdom: Animalia
Phylum: Arthropoda
Class: Malacostraca
Order: Decapoda
Suborder: Pleocyemata
Family: Cambaridae
Genus: Procambarus
Species:
P. virginalis
Binomial name
Procambarus virginalis
Lyko, 2017[1]
Marbled crayfish Marmorkrebs Procambarus fallax forma virginalis map countries Europe.png
Countries where the Marmorkrebs has been found in the wild. It has also been found in Belgium, Canada , Denmark , Japan , Madagascar , Taiwan, and China .[2][3]
Synonyms

Procambarus fallax forma virginalis Martin, Dorn, Kawai, van der Heiden & Scholtz, 2010

The marbled crayfish or Marmorkrebs (Procambarus virginalis) is a parthenogenetic crayfish that was discovered in the pet trade in Germany in 1995.[4][5] Marbled crayfish are closely related to the "slough crayfish", Procambarus fallax,[6] which is widely distributed across Florida.[7] No natural populations of marbled crayfish are known. Information provided by one of the original pet traders as to where the marbled crayfish originated was deemed "totally confusing and unreliable".[8] The informal name Marmorkrebs is German for "marbled crayfish".

Marbled Crayfish

Model organism

Marbled crayfish were the first known decapod crustaceans to reproduce by parthenogenesis.[4] All individuals are female, and the offspring are genetically identical to the parent.[5][9] Marbled crayfish are triploid animals[5][10] with 276 chromosomes,[11] which may be the main reason for their parthenogenetic reproduction. It is hypothesized that marbled crayfish originated from an error in meiosis resulting in a diploid gamete, which was then fertilized and created a viable triploid individual in a single generation.[5][12] Marbled crayfish are thus a model for the rapid generation of species.[5] Unlike other parthenogenetic organisms, the marbled crayfish is a relatively young species;[11] it was discovered in 1995.[5]

Because marbled crayfish are genetically identical, easy to care for,[13] and reproduce at high rates, they are a potential model organism, particularly for studying development.[14] A major drawback, however, is the long generation time (several months) compared to other research organisms.[15]

The marbled crayfish genome was sequenced in 2018, which provides an essential foundation for further research.[12]

Invasive species

Marbled crayfish have caused concern as a potential invasive species[4] because only a single individual is needed to establish a new population, and they can reproduce at high rates. Marbled crayfish are also a known carrier of a crayfish plague pathogen, Aphanomyces astaci.[16] Marbled crayfish inhabit freshwater environments, and have not successfully invaded ecosystems with higher salinity levels due to their reduced ability to reproduce and grow.[17] However, it has been proven that they can adjust to increasing saline environments, which may allow for their further expansion.[17]

They have since been introduced into natural ecosystems on five continents. They have been found in the wild in the following countries:

While initial reports of marbled crayfish in the wild in Europe consisted of only single individuals,[26] the number of European countries reporting populations of marbled crayfish is rising.[40]

In Europe, the marbled crayfish is included since 2016 in the list of Invasive Alien Species of Union concern.[41] This implies that this species cannot be imported, bred, transported, commercialized, or intentionally released into the environment in the whole of the European Union.[42]

The Madagascar population has grown rapidly[32][12] and is estimated to be in the millions, with their geographical distribution having increased 100-fold from 2007 to 2017,[11] causing concern among local authorities.[43]

Regulation

Marbled crayfish are one of the most widely distributed species of crayfish in the international pet trade[44][45][46] and release from aquariums has likely been the main source of unwanted introductions. Concerns about the potential damage from their introduction have prompted several jurisdictions to regulate ownership of marbled crayfish.

The European Union instituted "a total ban on the possession, trade, transport, production and release of these species [including the marbled crayfish] in the wild" in 2016.[47][48][49][50]

Japan banned most North American crayfish species, including marbled crayfish, in 2020.[51]

Marbled crayfish are prohibited in the American states of Idaho,[52] Missouri,[53] Tennessee ,[54][55] Michigan,[56][57] Maryland,[58] and in the Canadian provinces of Saskatchewan[59] and Ontario.[60]

As food

Marbled crayfish are eaten in Madagascar.[61] Human interest in consuming them may contribute to their spread.[61] Protein isolates from whole-body homogenate (including chitinous exoskeleton) of Procambarus virginalis are hypothesized to be dense in branched-chain amino acids (BCAA) and leucine (Leu). For potential use in biomedical research or as additives in supplements for BCAA and Leu. The mentioned crayfish species could offer 6.36–7.39 g Leu 100 g−1 dry matter (at 43–48% protein only). Crayfish whole-body protein isolates exhibit a Leu coefficient (18.41±2.51% of total amino acids) and a BCAA coefficient (28.76±2.39% of total amino acids), which is comparable to or higher than that of an industrial gold standard such as casein (Leu coefficient 8.65±0.08%; BCAA coefficient 20.03±0.73%).[62]

References

  1. Lyko, Frank (2017). "The marbled crayfish (Decapoda: Cambaridae) represents an independent new species". Zootaxa 4363 (4): 544–552. doi:10.11646/zootaxa.4363.4.6. PMID 29245391. 
  2. 2.00 2.01 2.02 2.03 2.04 2.05 2.06 2.07 2.08 2.09 2.10 2.11 Pârvulescu, Lucian; Togor, Andrei; Lele, Sandra-Florina; Scheu, Sebastian; Șinca, Daniel; Panteleit, Jörn (2017). "First established population of marbled crayfish Procambarus fallax (Hagen, 1870) f. virginalis (Decapoda, Cambaridae) in Romania". BioInvasions Records 6 (4): 357–362. doi:10.3391/bir.2017.6.4.09. http://www.reabic.net/journals/bir/2017/4/BIR_2017_Parvulescu_etal.pdf. Retrieved 2018-02-09. 
  3. 3.0 3.1 D. M. Holdich; M. Pöckl (2007). "Invasive crustaceans in European inland waters". in Francesca Gherardi. Biological invaders in inland waters: Profiles, distribution, and threats. Invading Nature - Springer Series in Invasion Ecology. 2. Dordrecht, Netherlands: Springer. pp. 29–75. doi:10.1007/978-1-4020-6029-8_2. ISBN 978-1-4020-6029-8. 
  4. 4.0 4.1 4.2 Gerhard Scholtz; Anke Braband; Laura Tolley; André Reimann; Beate Mittmann; Chris Lukhaup; Frank Steuerwald; Günter Vogt (2003). "Parthenogenesis in an outsider crayfish". Nature 421 (6925): 806. doi:10.1038/421806a. PMID 12594502. Bibcode2003Natur.421..806S. 
  5. 5.0 5.1 5.2 5.3 5.4 5.5 Vogt, Günter; Falckenhayn, Cassandra; Schrimpf, Anne; Schmid, Katharina; Hanna, Katharina; Panteleit, Jörn; Helm, Mark; Schulz, Ralf et al. (2015). "The marbled crayfish as a paradigm for saltational speciation by autopolyploidy and parthenogenesis in animals". Biology Open 4 (11): 1583–1594. doi:10.1242/bio.014241. PMID 26519519. 
  6. Peer Martin; Nathan J. Dorn; Tadashi Kawai; Craig van der Heiden; Gerhard Scholtz (2010). "The enigmatic Marmorkrebs (marbled crayfish) is the parthenogenetic form of Procambarus fallax (Hagen, 1870)" (PDF). Contributions to Zoology 79 (3): 107–118. doi:10.1163/18759866-07903003. http://dpc.uba.uva.nl/cgi/t/text/get-pdf?c=ctz;idno=7903a03. Retrieved 2012-02-12. 
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  9. Peer Martin, Klaus Kohlmann; Gerhard Scholtz (2007). "The parthenogenetic Marmorkrebs (marbled crayfish) produces genetically uniform offspring". Naturwissenschaften 94 (10): 843–846. doi:10.1007/s00114-007-0260-0. PMID 17541537. Bibcode2007NW.....94..843M. 
  10. "The parthenogenetic Marmorkrebs (Malacostraca: Decapoda: Cambaridae) are triploid organisms". Journal of Zoological Systematics and Evolutionary Research 54: 13–21. 2015. doi:10.1111/jzs.12114. 
  11. 11.0 11.1 11.2 Gutekunst, Julian; Andriantsoa, Ranja; Falckenhayn, Cassandra; Hanna, Katharina; Stein, Wolfgang; Rasamy, Jeanne; Lyko, Frank (March 2018). "Clonal genome evolution and rapid invasive spread of the marbled crayfish" (in en). Nature Ecology & Evolution 2 (3): 567–573. doi:10.1038/s41559-018-0467-9. ISSN 2397-334X. PMID 29403072. 
  12. 12.0 12.1 12.2 Gutekunst, Julian; Andriantsoa, Ranja; Falckenhayn, Cassandra; Hanna, Katharina; Stein, Wolfgang; Rasamy, Jeanne; Lyko, Frank (2018-02-05). "Clonal genome evolution and rapid invasive spread of the marbled crayfish". Nature Ecology & Evolution 2 (3): 567–573. doi:10.1038/s41559-018-0467-9. ISSN 2397-334X. PMID 29403072. 
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  15. Günter Vogt (2010). "Suitability of the clonal marbled crayfish for biogerontological research: A review and perspective, with remarks on some further crustaceans". Biogerontology 11 (6): 643–669. doi:10.1007/s10522-010-9291-6. PMID 20582627. 
  16. Lipták, Boris; Mrugała, Agata; Pekárik, Ladislav; Mutkovič, Anton; Gruľa, Daniel; Petrusek, Adam; Kouba, Antonín (2016-01-26). "Expansion of the marbled crayfish in Slovakia: beginning of an invasion in the Danube catchment?" (in en). Journal of Limnology 75 (2). doi:10.4081/jlimnol.2016.1313. ISSN 1723-8633. https://www.jlimnol.it/index.php/jlimnol/article/view/jlimnol.2016.1313. 
  17. 17.0 17.1 Veselý, Lukáš; Hrbek, Vladimír; Kozák, Pavel; Buřič, Miloš; Sousa, Ronaldo; Kouba, Antonín (2017). "Salinity tolerance of marbled crayfish Procambarus fallax f. virginalis" (in en). Knowledge & Management of Aquatic Ecosystems (418): 21. doi:10.1051/kmae/2017014. ISSN 1961-9502. https://www.kmae-journal.org/articles/kmae/abs/2017/01/kmae170023/kmae170023.html. 
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  19. Alan Hope (2020-10-22). "Hundreds of self-cloning crayfish invade Antwerp cemetery". The Brussels Times. https://www.brusselstimes.com/news/belgium-all-news/137013/hundreds-of-self-cloning-crayfish-invade-antwerp-cemetery/. 
  20. "'Capable of cloning': Invasive crayfish found in Burlington pond". 2023-08-04. https://www.insidehalton.com/news/capable-of-cloning-invasive-crayfish-found-in-burlington-pond/article_e47a21a9-a71c-50bf-b3a8-1aaf9dccbb7d.html. 
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  33. Deidun, Alan; Sciberras, Arnold; Formosa, Justin; Zava, Bruno; Insacco, Gianni; Corsini-Foka, Maria; Crandall, Keith A. (2018). "Invasion by non-indigenous freshwater decapods of Malta and Sicily, central Mediterranean Sea". Journal of Crustacean Biology 38 (6): 748–753. doi:10.1093/jcbiol/ruy076. 
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  62. Roy, Koushik; Das, Koushik; Petraskova, Eva; Kouba, Antonin (2023). "Protein from whole-body crayfish homogenate may be a high supplier of leucine or branched-chain amino acids – A call for validation on genus Procambarus sp". Food Chemistry 427. doi:10.1016/j.foodchem.2023.136728. PMID 37393634. https://doi.org/10.1016/j.foodchem.2023.136728. 

External links

Wikidata ☰ Q458568 entry