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Mangrove horseshoe crab

The mangrove horseshoe crab (Carcinoscorpius rotundicauda), also known as the round-tailed horseshoe crab,[2] is a species of horseshoe crab, a chelicerate arthropod found in tropical marine and brackish waters of India, Bangladesh, and Southeast Asia. It may also occur in Sri Lanka, Myanmar and the Philippines, but confirmed records are lacking.[3] It is the only species in the genus Carcinoscorpius.[4]

Mangrove horseshoe crab
Scientific classification
Domain: Eukaryota
Kingdom: Animalia
Phylum: Arthropoda
Subphylum: Chelicerata
Order: Xiphosura
Family: Limulidae
Genus: Carcinoscorpius
Pocock, 1902
Species:
C. rotundicauda
Binomial name
Carcinoscorpius rotundicauda
(Latreille, 1802)
Synonyms
  • Limulus rotundicauda Latreille, 1802

The biology, ecology and breeding patterns of C. rotundicauda and the two other Asian horseshoe crab species, Tachypleus gigas and Tachypleus tridentatus, have not been as well documented as those of the North American species Limulus polyphemus. All four extant species of horseshoe crabs are anatomically very similar, but C. rotundicauda is considerably smaller than the others and the only species where the cross section of the tail (telson) is rounded instead of essentially triangular.[5]

Evolutionary history edit

Horseshoe crabs are commonly known by biologists around the world as a living fossil because they have remained practically unchanged in terms of shape and size for millions of years. Although their physiology has changed over the years, their typical three piece exoskeleton, consisting of a prosoma, opisthosoma, and telson, has remained since the mid-Paleozoic era.[6] Fossils of horseshoe crabs that have been dated to over 400 million years ago look almost identical to those species that are still alive today.[7] The long existence of this body plan suggests its success. The three Asian species of horseshoe crabs form their own clade, and it is estimated that they diverged from the American species between 135 million years ago to 436 million years ago. [8][6]

Anatomy edit

 
Mangrove horseshoe crab in Bako National Park, Malaysia

The basic body plan of a horseshoe crab consists of three parts: the prosoma, the opisthosoma and the tail (telson). The prosoma is the large, dome-shaped frontal part at the carapace. The smaller rear carapace with spines on the edge is the opisthosoma. The rear extension that looks like a spike is the telson, which is commonly described as the tail.[9] Uniquely among the horseshoe crabs, the cross section of the tail of the mangrove horseshoe crab is rounded. It is essentially triangular in the other species.[5][10] The tail is used to turn itself right side up when overturned.[7]

The mangrove horseshoe crab is the smallest of the four living species of horseshoe crabs.[5] Like the other species, females grow larger than males. On average in Peninsular Malaysia, females are about 30.5–31.5 cm (12.0–12.4 in) long, including a tail that is about 16.5–19 cm (6.5–7.5 in), and their carapace (prosoma) is about 16–17.5 cm (6.3–6.9 in) wide. In comparison, the average for males is about 28–30.5 cm (11.0–12.0 in) long, including a tail that is about 15–17.5 cm (5.9–6.9 in), and their carapace is about 14.5–15 cm (5.7–5.9 in) wide.[11] There are significant geographic variations in the size, but this does not follow a clear north–south or east–west pattern. Those from West Bengal in India average somewhat smaller than those from Peninsular Malaysia, with a carapace width of about 16 cm (6.3 in) and 14 cm (5.5 in) in females and males respectively. Elsewhere it averages even smaller, with the smallest reported from the Balikpapan and Belawan regions in Indonesia where the carapace width of females is about 13 cm (5.1 in) and in males 11 cm (4.3 in).[10] The largest females of the species may reach up to 40 cm (16 in) in length, including the tail.[5]

Uncommon for chelicerates, horseshoe crabs have two compound eyes. The main function of these compound eyes is to find a mate. In addition, they have two median eyes, two rudimentary lateral eyes, and an endoparietal eye on their carapace and two ventral eyes located on the underside by the mouth. Scientists believe the two ventral eyes aid in the orientation of the horseshoe crab when swimming.[5] Each individual has six pairs of appendages. The first pair, the chelicerae, are relatively small and placed in front of the mouth. They are used to place food in it. The remaining five pairs of legs are placed on either side of the mouth and are used for walking/pushing. These are the pedipalps (first pair) and the pusher legs (remaining four pairs).[5][10] Most of the appendages have straight, scissor-like claws, but in males the first and second pair of walking legs have strongly hooked "scissors", which are used for grasping the female during mating.[10] Located behind their legs are book gills. These gills are used for propulsion to swim and to exchange respiratory gases.[5]

Distribution and habitat edit

This species occurs only in Asia around the Indo-West Pacific region where the climate is tropical or subtropical.[12] These horseshoe crabs can be found to exist throughout southeast Asia in shallow waters with soft, sandy bottoms or extensive mud flats. The mangrove horseshoe crab is benthopelagic, spending most of its life close to or at the bottom of a body of their brackish, swampy water habitat, such as mangroves.[12] This is the habitat for which it gains its common name: mangrove horseshoe crab. Scientists have studied the distribution of mangrove horseshoe crabs in Hong Kong specifically. The researchers noted their abundance on the beaches of Hong Kong before the sharp decline in population over the past ten years. In the study, they found an uneven distribution of the horseshoe crabs throughout Hong Kong, with a greater abundance found in the western waters. They predict this unevenness is due to the estuarine hydrography in the western waters, influenced by the Pearl River. They also found that T. tridentatus can coexist in the same habitat as the mangrove horseshoe crab.[13]

Diet edit

Mangrove horseshoe crabs are selective benthic feeders, feeding mainly on insect larvae, small fish, oligochaetes, small crabs and thin-shelled bivalves.[14] Lacking jaws, it grinds up the food with bristles on its legs and places it in its mouth using its chelicerae. The ingested food then enters the cuticle-lined oesophagus and then the proventriculus. The proventriculus is made up of a crop and a gizzard. The crop can expand to fit the ingested food, while the gizzard grinds the food into a pulp.[5] Studies have found that mangrove horseshoe crabs have a strong preference for insect larvae over the other organisms on which it also feeds.[14]

Mating biology edit

In the spring, horseshoe crabs migrate from the deeper water to the shallow, muddy areas. Nesting usually follows the cycle of the high tide of the full and new moons. During the mating period, the males will follow and cling to the backs of their potential mates using modified prosomal appendages for long periods of time before the egg-laying has occurred. Horseshoe crab species with low spawning densities and 1:1 sex ratios, such as the mangrove horseshoe crab, are found to be monogamous. In addition, the female does not choose her mate. Males find their female mates with the use of visual and chemoreceptive signals.[15] Once a mate is found, the female digs a hole and lays the eggs while the male externally fertilizes them. Once the eggs are laid, the male and female go back to the ocean, and the eggs develop on their own.[15] Their eggs are large, and after a couple weeks, the eggs hatch into miniature versions of the adults. The females lay about 3500 of them.[citation needed]

Mangrove horseshoe crabs in Singapore breed from August to April. Juveniles grow about 33% bigger each time they molt, and it takes the juveniles about five molts to grow from 2 centimetres (0.79 in) to adult size.[16]

Use by humans edit

 
Mangrove horseshoe crabs caught in Chonburi, Thailand

Thousands of the horseshoe crabs are caught by local fishermen.[17] While the crabs have very little flesh, their roe is prized as a delicacy, in Thailand most commonly served as a salad called yam khai maeng da (ยำไข่แมงดา).[18]

There have occasionally been cases of food poisonings or even deaths after consuming the crabs as they were misidentified as another horseshoe crab species, Tachypleus gigas. Unlike larger T. gigas, C. rotundicauda is known to often contain lethal tetrodotoxin.[19]

References edit

  1. ^ World Conservation Monitoring Centre (1996). "Carcinoscorpius rotundicauda". IUCN Red List of Threatened Species. 1996: e.T3856A10123044. doi:10.2305/IUCN.UK.1996.RLTS.T3856A10123044.en. Retrieved 15 November 2021.
  2. ^ "Identification guide". Horseshoe Crab monitoring site. Retrieved 27 June 2018.
  3. ^ Vestbo, Stine; Obst, Matthias; Fernandez, Francisco J. Quevedo; Intanai, Itsara; Funch, Peter (May 2018). "Present and Potential Future Distributions of Asian Horseshoe Crabs Determine Areas for Conservation". Frontiers in Marine Science. 5 (164): 1–16. doi:10.3389/fmars.2018.00164.
  4. ^ Myers, P.; Espinosa, R.; Parr, C. S.; Jones, T.; Hammond, G. S.; Dewey, T. A., eds. (2023). "Carcinoscorpius". Animal Diversity Web. University of Michigan Museum of Zoology. Retrieved 21 January 2023.
  5. ^ a b c d e f g h "About the Species". The Horseshoe Crab. Retrieved 26 June 2018.
  6. ^ a b Rudkin, D. M.; Young, G. A. (2009). "Horseshoe Crabs – an Ancient Ancestry Revealed". In Tanacredi, John T.; Botton, Mark L.; Smith, David (eds.). Biology and Conservation of Horseshoe Crabs. pp. 25–44. doi:10.1007/978-0-387-89959-6_2. ISBN 978-0-387-89958-9.
  7. ^ a b Kelvin K. P. Lim; Dennis H. Murphy; T. Morgany; N. Sivasothi; Peter K. L. Ng; B. C. Soong; Hugh T. W. Tan; K. S. Tan & T. K. Tan (2001). Peter K. L. Ng & N. Sivasothi (eds.). "Mangrove horseshoe crab, Carcinoscorpius rotundicauda, family Limulidae". A Guide to Mangroves of Singapore 1. Guide to the Mangroves of Singapore. Singapore Science Centre.
  8. ^ Prashant Shingate; Vydianathan Ravi; Aravind Prasad; Boon Hui Tay & Byrappa Venkatesh (2020). "Chromosome-level genome assembly of the coastal Horseshoe Crab (Tachypleus gigas)". Molecular Ecology Resources. 20 (6). Wiley Online: 1748–1760. doi:10.1111/1755-0998.13233. PMID 32725950. S2CID 220853600.
  9. ^ Helen M. C. Chiu & Brian Morton (2003). "The morphological differentiation of two horseshoe crab species, Tachypleus tridentatus and Carcinoscorpius rotundicauda (Xiphosura), in Hong Kong with a regional Asian comparison". Journal of Natural History. 37 (19): 2369–2382. doi:10.1080/00222930210149753. S2CID 84286729.
  10. ^ a b c d Koichi Sekiguchi; Carl N. Shuster Jr (2009). "Limits on the Global Distribution of Horseshoe Crabs (Limulacea): Lessons Learned from Two Lifetimes of Observations: Asia and America". In Tanacredi, John T.; Botton, Mark L.; Smith, David (eds.). Biology and Conservation of Horseshoe Crabs. Springer. pp. 5–24. ISBN 978-0-387-89959-6.
  11. ^ T.C. Srijaya; P.J. Pradeep; S. Mithun; A. Hassan; F. Shaharom; A. Chatterji (2010). "A New Record on the Morphometric Variations in the Populations of Horseshoe Crab (Carcinoscorpius rotundicauda Latreille) Obtained from Two Different Ecological Habitats of Peninsular Malaysia". Our Nature. 8 (1): 204–211. doi:10.3126/on.v8i1.4329.
  12. ^ a b "Carcinoscorpius rotundicauda, mangrove horseshoe crab". SeaLifeBase. 2010. Retrieved April 23, 2011.
  13. ^ Helen M. C. Chiu & Brian Morton (1999). "The distribution of horseshoe crabs (Tachypleus tridentatus and Carcinoscorpius rotundicauda) in Hong Kong". In Brian Morton (ed.). Asian Marine Biology. Vol. 16. Hong Kong University Press. pp. 185–196. ISBN 978-962-209-520-5.
  14. ^ a b H. Zhou & Brian Morton (2004). "The diets of juvenile horseshoe crabs, Tachypleus tridentatus and Carcinoscorpius rotundicauda (Xiphosura), from nursery beaches proposed for conservation in Hong Kong". Journal of Natural History. 38 (15): 1915–1925. doi:10.1080/0022293031000155377. S2CID 84518612.
  15. ^ a b Jennifer H. Mattei; Mark A. Beekey; Adam Rudman & Alyssa Woronik (2010). (PDF). Current Zoology. 56 (5): 634–642. doi:10.1093/czoolo/56.5.634. Archived from the original (PDF) on 2011-09-27. Retrieved 2011-06-01.
  16. ^ Lesley Cartwright-Taylor; Julian Lee & Chia Chi Hsu (2019). "Population structure and breeding pattern of the mangrove horseshoe crab Carcinoscorpius rotundicauda in Singapore". Aquatic Biology. 8: 61–69. doi:10.3354/ab00206.
  17. ^ Bibhuti Pati (June 24, 2008). . Merinews. Archived from the original on October 5, 2012. Retrieved June 1, 2011.
  18. ^ "~Horseshoe Crab Egg Salad Recipe, ยำไข่แมงดา~". 2013-01-28.
  19. ^ Kanchanapongkul, J.; Krittayapoositpot, P. (June 1995). "An epidemic of tetrodotoxin poisoning following ingestion of the horseshoe crab Carcinoscorpius rotundicauda". The Southeast Asian Journal of Tropical Medicine and Public Health. 26 (2): 364–367. ISSN 0125-1562. PMID 8629077.

External links edit

  •   Media related to Carcinoscorpius rotundicauda at Wikimedia Commons

mangrove, horseshoe, crab, mangrove, horseshoe, crab, carcinoscorpius, rotundicauda, also, known, round, tailed, horseshoe, crab, species, horseshoe, crab, chelicerate, arthropod, found, tropical, marine, brackish, waters, india, bangladesh, southeast, asia, a. The mangrove horseshoe crab Carcinoscorpius rotundicauda also known as the round tailed horseshoe crab 2 is a species of horseshoe crab a chelicerate arthropod found in tropical marine and brackish waters of India Bangladesh and Southeast Asia It may also occur in Sri Lanka Myanmar and the Philippines but confirmed records are lacking 3 It is the only species in the genus Carcinoscorpius 4 Mangrove horseshoe crab Conservation status Data Deficient IUCN 2 3 1 Scientific classification Domain Eukaryota Kingdom Animalia Phylum Arthropoda Subphylum Chelicerata Order Xiphosura Family Limulidae Genus CarcinoscorpiusPocock 1902 Species C rotundicauda Binomial name Carcinoscorpius rotundicauda Latreille 1802 Synonyms Limulus rotundicauda Latreille 1802 The biology ecology and breeding patterns of C rotundicauda and the two other Asian horseshoe crab species Tachypleus gigas and Tachypleus tridentatus have not been as well documented as those of the North American species Limulus polyphemus All four extant species of horseshoe crabs are anatomically very similar but C rotundicauda is considerably smaller than the others and the only species where the cross section of the tail telson is rounded instead of essentially triangular 5 Contents 1 Evolutionary history 2 Anatomy 3 Distribution and habitat 4 Diet 5 Mating biology 6 Use by humans 7 References 8 External linksEvolutionary history editHorseshoe crabs are commonly known by biologists around the world as a living fossil because they have remained practically unchanged in terms of shape and size for millions of years Although their physiology has changed over the years their typical three piece exoskeleton consisting of a prosoma opisthosoma and telson has remained since the mid Paleozoic era 6 Fossils of horseshoe crabs that have been dated to over 400 million years ago look almost identical to those species that are still alive today 7 The long existence of this body plan suggests its success The three Asian species of horseshoe crabs form their own clade and it is estimated that they diverged from the American species between 135 million years ago to 436 million years ago 8 6 Anatomy edit nbsp Mangrove horseshoe crab in Bako National Park Malaysia The basic body plan of a horseshoe crab consists of three parts the prosoma the opisthosoma and the tail telson The prosoma is the large dome shaped frontal part at the carapace The smaller rear carapace with spines on the edge is the opisthosoma The rear extension that looks like a spike is the telson which is commonly described as the tail 9 Uniquely among the horseshoe crabs the cross section of the tail of the mangrove horseshoe crab is rounded It is essentially triangular in the other species 5 10 The tail is used to turn itself right side up when overturned 7 The mangrove horseshoe crab is the smallest of the four living species of horseshoe crabs 5 Like the other species females grow larger than males On average in Peninsular Malaysia females are about 30 5 31 5 cm 12 0 12 4 in long including a tail that is about 16 5 19 cm 6 5 7 5 in and their carapace prosoma is about 16 17 5 cm 6 3 6 9 in wide In comparison the average for males is about 28 30 5 cm 11 0 12 0 in long including a tail that is about 15 17 5 cm 5 9 6 9 in and their carapace is about 14 5 15 cm 5 7 5 9 in wide 11 There are significant geographic variations in the size but this does not follow a clear north south or east west pattern Those from West Bengal in India average somewhat smaller than those from Peninsular Malaysia with a carapace width of about 16 cm 6 3 in and 14 cm 5 5 in in females and males respectively Elsewhere it averages even smaller with the smallest reported from the Balikpapan and Belawan regions in Indonesia where the carapace width of females is about 13 cm 5 1 in and in males 11 cm 4 3 in 10 The largest females of the species may reach up to 40 cm 16 in in length including the tail 5 Uncommon for chelicerates horseshoe crabs have two compound eyes The main function of these compound eyes is to find a mate In addition they have two median eyes two rudimentary lateral eyes and an endoparietal eye on their carapace and two ventral eyes located on the underside by the mouth Scientists believe the two ventral eyes aid in the orientation of the horseshoe crab when swimming 5 Each individual has six pairs of appendages The first pair the chelicerae are relatively small and placed in front of the mouth They are used to place food in it The remaining five pairs of legs are placed on either side of the mouth and are used for walking pushing These are the pedipalps first pair and the pusher legs remaining four pairs 5 10 Most of the appendages have straight scissor like claws but in males the first and second pair of walking legs have strongly hooked scissors which are used for grasping the female during mating 10 Located behind their legs are book gills These gills are used for propulsion to swim and to exchange respiratory gases 5 Distribution and habitat editThis species occurs only in Asia around the Indo West Pacific region where the climate is tropical or subtropical 12 These horseshoe crabs can be found to exist throughout southeast Asia in shallow waters with soft sandy bottoms or extensive mud flats The mangrove horseshoe crab is benthopelagic spending most of its life close to or at the bottom of a body of their brackish swampy water habitat such as mangroves 12 This is the habitat for which it gains its common name mangrove horseshoe crab Scientists have studied the distribution of mangrove horseshoe crabs in Hong Kong specifically The researchers noted their abundance on the beaches of Hong Kong before the sharp decline in population over the past ten years In the study they found an uneven distribution of the horseshoe crabs throughout Hong Kong with a greater abundance found in the western waters They predict this unevenness is due to the estuarine hydrography in the western waters influenced by the Pearl River They also found that T tridentatus can coexist in the same habitat as the mangrove horseshoe crab 13 Diet editMangrove horseshoe crabs are selective benthic feeders feeding mainly on insect larvae small fish oligochaetes small crabs and thin shelled bivalves 14 Lacking jaws it grinds up the food with bristles on its legs and places it in its mouth using its chelicerae The ingested food then enters the cuticle lined oesophagus and then the proventriculus The proventriculus is made up of a crop and a gizzard The crop can expand to fit the ingested food while the gizzard grinds the food into a pulp 5 Studies have found that mangrove horseshoe crabs have a strong preference for insect larvae over the other organisms on which it also feeds 14 Mating biology editIn the spring horseshoe crabs migrate from the deeper water to the shallow muddy areas Nesting usually follows the cycle of the high tide of the full and new moons During the mating period the males will follow and cling to the backs of their potential mates using modified prosomal appendages for long periods of time before the egg laying has occurred Horseshoe crab species with low spawning densities and 1 1 sex ratios such as the mangrove horseshoe crab are found to be monogamous In addition the female does not choose her mate Males find their female mates with the use of visual and chemoreceptive signals 15 Once a mate is found the female digs a hole and lays the eggs while the male externally fertilizes them Once the eggs are laid the male and female go back to the ocean and the eggs develop on their own 15 Their eggs are large and after a couple weeks the eggs hatch into miniature versions of the adults The females lay about 3500 of them citation needed Mangrove horseshoe crabs in Singapore breed from August to April Juveniles grow about 33 bigger each time they molt and it takes the juveniles about five molts to grow from 2 centimetres 0 79 in to adult size 16 Use by humans edit nbsp Mangrove horseshoe crabs caught in Chonburi Thailand Thousands of the horseshoe crabs are caught by local fishermen 17 While the crabs have very little flesh their roe is prized as a delicacy in Thailand most commonly served as a salad called yam khai maeng da yaikhaemngda 18 There have occasionally been cases of food poisonings or even deaths after consuming the crabs as they were misidentified as another horseshoe crab species Tachypleus gigas Unlike larger T gigas C rotundicauda is known to often contain lethal tetrodotoxin 19 References edit World Conservation Monitoring Centre 1996 Carcinoscorpius rotundicauda IUCN Red List of Threatened Species 1996 e T3856A10123044 doi 10 2305 IUCN UK 1996 RLTS T3856A10123044 en Retrieved 15 November 2021 Identification guide Horseshoe Crab monitoring site Retrieved 27 June 2018 Vestbo Stine Obst Matthias Fernandez Francisco J Quevedo Intanai Itsara Funch Peter May 2018 Present and Potential Future Distributions of Asian Horseshoe Crabs Determine Areas for Conservation Frontiers in Marine Science 5 164 1 16 doi 10 3389 fmars 2018 00164 Myers P Espinosa R Parr C S Jones T Hammond G S Dewey T A eds 2023 Carcinoscorpius Animal Diversity Web University of Michigan Museum of Zoology Retrieved 21 January 2023 a b c d e f g h About the Species The Horseshoe Crab Retrieved 26 June 2018 a b Rudkin D M Young G A 2009 Horseshoe Crabs an Ancient Ancestry Revealed In Tanacredi John T Botton Mark L Smith David eds Biology and Conservation of Horseshoe Crabs pp 25 44 doi 10 1007 978 0 387 89959 6 2 ISBN 978 0 387 89958 9 a b Kelvin K P Lim Dennis H Murphy T Morgany N Sivasothi Peter K L Ng B C Soong Hugh T W Tan K S Tan amp T K Tan 2001 Peter K L Ng amp N Sivasothi eds Mangrove horseshoe crab Carcinoscorpius rotundicauda family Limulidae A Guide to Mangroves of Singapore 1 Guide to the Mangroves of Singapore Singapore Science Centre Prashant Shingate Vydianathan Ravi Aravind Prasad Boon Hui Tay amp Byrappa Venkatesh 2020 Chromosome level genome assembly of the coastal Horseshoe Crab Tachypleus gigas Molecular Ecology Resources 20 6 Wiley Online 1748 1760 doi 10 1111 1755 0998 13233 PMID 32725950 S2CID 220853600 Helen M C Chiu amp Brian Morton 2003 The morphological differentiation of two horseshoe crab species Tachypleus tridentatus and Carcinoscorpius rotundicauda Xiphosura in Hong Kong with a regional Asian comparison Journal of Natural History 37 19 2369 2382 doi 10 1080 00222930210149753 S2CID 84286729 a b c d Koichi Sekiguchi Carl N Shuster Jr 2009 Limits on the Global Distribution of Horseshoe Crabs Limulacea Lessons Learned from Two Lifetimes of Observations Asia and America In Tanacredi John T Botton Mark L Smith David eds Biology and Conservation of Horseshoe Crabs Springer pp 5 24 ISBN 978 0 387 89959 6 T C Srijaya P J Pradeep S Mithun A Hassan F Shaharom A Chatterji 2010 A New Record on the Morphometric Variations in the Populations of Horseshoe Crab Carcinoscorpius rotundicauda Latreille Obtained from Two Different Ecological Habitats of Peninsular Malaysia Our Nature 8 1 204 211 doi 10 3126 on v8i1 4329 a b Carcinoscorpius rotundicauda mangrove horseshoe crab SeaLifeBase 2010 Retrieved April 23 2011 Helen M C Chiu amp Brian Morton 1999 The distribution of horseshoe crabs Tachypleus tridentatus and Carcinoscorpius rotundicauda in Hong Kong In Brian Morton ed Asian Marine Biology Vol 16 Hong Kong University Press pp 185 196 ISBN 978 962 209 520 5 a b H Zhou amp Brian Morton 2004 The diets of juvenile horseshoe crabs Tachypleus tridentatus and Carcinoscorpius rotundicauda Xiphosura from nursery beaches proposed for conservation in Hong Kong Journal of Natural History 38 15 1915 1925 doi 10 1080 0022293031000155377 S2CID 84518612 a b Jennifer H Mattei Mark A Beekey Adam Rudman amp Alyssa Woronik 2010 Reproductive behavior in horseshoe crabs does density matter PDF Current Zoology 56 5 634 642 doi 10 1093 czoolo 56 5 634 Archived from the original PDF on 2011 09 27 Retrieved 2011 06 01 Lesley Cartwright Taylor Julian Lee amp Chia Chi Hsu 2019 Population structure and breeding pattern of the mangrove horseshoe crab Carcinoscorpius rotundicauda in Singapore Aquatic Biology 8 61 69 doi 10 3354 ab00206 Bibhuti Pati June 24 2008 Horseshoe crabs galloping towards extinction Merinews Archived from the original on October 5 2012 Retrieved June 1 2011 Horseshoe Crab Egg Salad Recipe yaikhaemngda 2013 01 28 Kanchanapongkul J Krittayapoositpot P June 1995 An epidemic of tetrodotoxin poisoning following ingestion of the horseshoe crab Carcinoscorpius rotundicauda The Southeast Asian Journal of Tropical Medicine and Public Health 26 2 364 367 ISSN 0125 1562 PMID 8629077 External links edit nbsp Media related to Carcinoscorpius rotundicauda at Wikimedia Commons Retrieved from https en wikipedia org w index php title Mangrove horseshoe crab amp oldid 1180777768, wikipedia, wiki, book, books, library,

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