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Advances in the aquatic sciences
RESEARCH ARTICLE

Life-history traits of a small-bodied coastal shark

Adrian N. Gutteridge A B F , Charlie Huveneers C D , Lindsay J. Marshall E , Ian R. Tibbetts A and Mike B. Bennett B
+ Author Affiliations
- Author Affiliations

A School of Biological Sciences, University of Queensland, St Lucia, Brisbane, Qld 4072, Australia.

B School of Biomedical Sciences, University of Queensland, St Lucia, Brisbane, Qld 4072, Australia.

C School of Biological Sciences, Flinders University, Sturt Road, Bedford Park, Adelaide, SA 5042, Australia.

D Threatened, Protected and Endangered Species Program, South Australia Research and Development Institute – Aquatic Sciences, West Beach, Adelaide, SA 5024, Australia.

E Stickfigurefish Biological Illustrations, 47 Hunter Street, Everton Park, Brisbane, Qld 4053, Australia.

F Corresponding author. Email: gutteridge.adrian@gmail.com

Marine and Freshwater Research 64(1) 54-65 https://doi.org/10.1071/MF12140
Submitted: 22 May 2012  Accepted: 2 November 2012   Published: 6 February 2013

Abstract

The life histories of small-bodied coastal sharks, particularly carcharhinids, are generally less conservative than those of large-bodied species. The present study investigated the life history of the small-bodied slit-eye shark, Loxodon macrorhinus, from subtropical Hervey Bay, Queensland, and compared this species' biology to that of other coastal carcharhinids. The best-fit age model provided parameters of L = 895 mm total length (TL), k = 0.18 and t0 = –6.3 for females, and L = 832 mm TL, k = 0.44 and t0 = –2.6 for males. For sex-combined data, a logistic function provided the best fit, with L = 842 mm TL, k = 0.41 and α = –2.2. Length and age at which 50% of the population was mature was 680 mm TL and 1.4 years for females, and 733 mm TL and 1.9 years for males. Within Hervey Bay, L. macrorhinus exhibited an annual seasonal reproductive cycle, producing an average litter of 1.9 ± 0.3 s.d. With the exception of the low fecundity and large size at birth relative to maximum maternal TL, the life-history traits of L. macrorhinus are comparable to other small-bodied coastal carcharhinids, and its apparent fast growth and early maturation contrasts that of large-bodied carcharhinids.

Additional keywords: age and growth, Australia, Carcharhinidae, elasmobranch, Loxodon macrorhinus, reproductive biology, slit-eye shark, subtropical.


References

Allen, B. R., and Cliff, G. (2000). Sharks caught in the protective gill nets off KwaZulu–Natal, South Africa. 9. The spinner shark Carcharhinus brevipinna (Müller and Henle). South African Journal of Marine Science 22, 199–215.
Sharks caught in the protective gill nets off KwaZulu–Natal, South Africa. 9. The spinner shark Carcharhinus brevipinna (Müller and Henle).Crossref | GoogleScholarGoogle Scholar |

Anderson, R. C., and Ahmed, H. (1993). ‘The Shark Fisheries of the Maldives.’ (FAO Ministry of Fisheries and Agriculture: Rome.)

Bass, A. J., D’Aubrey, J. D., and Kistnasamy, N. (1973). ‘Sharks of the East Coast of Southern Africa. l. The Genus Carcharhinus (Carcharhinidae).’ (The Oceanographic Research Institute: Durban, South Africa.)

Bass, A. J., D’Aubrey, J. D., and Kistnasamy, N. (1975). ‘Sharks of the East Coast of Southern Africa. 3. The Families Carcharhinidae (Excluding Mustelus and Carcharhinus) and Sphyrnidae.’ (The Oceanographic Research Institute: Durban, South Africa.)

Beamish, R. J., and Fournier, D. A. (1981). A method for comparing the precision of a set of age determinations. Canadian Journal of Fisheries and Aquatic Sciences 38, 982–983.
A method for comparing the precision of a set of age determinations.Crossref | GoogleScholarGoogle Scholar |

Beverton, R. J. H., and Holt, S. J. (1957). ‘On the Dynamics of Exploited Fish Populations.’ (Ministry of Agriculture Fisheries, and Food, Fisheries Investigations: UK.)

Bishop, S. D. H., Francis, M. P., Duffy, C., and Montgomery, J. C. (2006). Age, growth, maturity, longevity and natural mortality of the shortfin mako shark (Isurus oxyrinchus) in New Zealand waters. Marine and Freshwater Research 57, 143–154.
Age, growth, maturity, longevity and natural mortality of the shortfin mako shark (Isurus oxyrinchus) in New Zealand waters.Crossref | GoogleScholarGoogle Scholar |

Blackburn, T. M., Gaston, K. J., and Loder, N. (1999). Geographic gradients in body size: a clarification of Bergmann’s rule. Diversity & Distributions 5, 165–174.
Geographic gradients in body size: a clarification of Bergmann’s rule.Crossref | GoogleScholarGoogle Scholar |

Branstetter, S. (1990). Early life-history implications of selected carcharhinoid and lamnoid sharks of the northwest Atlantic. In ‘Elasmobranchs as Living Resources: Advances in the Biology, Ecology, Systematics and the Status of the Fisheries. Vol. 90’. (Eds H. L. Pratt Jr, S. H. Gruber and T. Taniuchi.) pp. 17–28. NOAA Technical Report. (National Marine Fisheries Service.)

Burnham, K. P., and Anderson, D. R. (2002). ‘Model Selection and Multimodel Inference – A Practical Information-theoretic Approach.’ (Springer: New York.)

Cailliet, G. M., and Goldmann, K. J. (2004). Age determination and validation in chondrichtyan fishes. In ‘Biology of Sharks and Their Relatives’. (Eds J. C. Carrier, J. A. Musick and M. R. Heithaus.) pp. 399–447. (CRC Press: Boca Raton, FL.)

Cailliet, G. M., Smith, W. D., Mollet, H. F., and Goldmann, K. J. (2006). Age and growth studies of chondrichthyan fishes: the need for consistency in terminology, verification, validation and growth function fitting. Environmental Biology of Fishes 77, 211–228.
Age and growth studies of chondrichthyan fishes: the need for consistency in terminology, verification, validation and growth function fitting.Crossref | GoogleScholarGoogle Scholar |

Capapé, C., Diatta, Y., Diop, M., Guelorget, O., Vergne, Y., and Quignard, J.-P. (2006). Reproduction in the milk shark, Rhizoprionodon acutus (Rüppell, 1837) (Chondrichthyes: Carcharhinidae), from the coast of Senegal (eastern tropical Atlantic). Acta Adriatica 47, 111–126.

Carlson, J. K., and Baremore, I. E. (2003). Changes in biological parameters of Atlantic sharpnose shark Rhizoprionodon terraenovae in the Gulf of Mexico: evidence for density-dependent growth and maturity? Marine and Freshwater Research 54, 227–234.
Changes in biological parameters of Atlantic sharpnose shark Rhizoprionodon terraenovae in the Gulf of Mexico: evidence for density-dependent growth and maturity?Crossref | GoogleScholarGoogle Scholar |

Carlson, J. D., and Baremore, I. E. (2005). Growth dynamics of the spinner shark (Carcharhinus brevipinna) off the United States southeast and Gulf of Mexico coasts: a comparison of methods. Fish Bulletin 103, 280–291.

Carlson, J. K., and Cortes, E. (2003). Gillnet selectivity of small coastal sharks off the southeastern United States. Fisheries Research 60, 405–414.
Gillnet selectivity of small coastal sharks off the southeastern United States.Crossref | GoogleScholarGoogle Scholar |

Cerna, F., and Licandeo, R. (2009). Age and growth of the shortfin mako (Isurus oxyrinchus) in the south-eastern Pacific off Chile. Marine and Freshwater Research 60, 394–403.
Age and growth of the shortfin mako (Isurus oxyrinchus) in the south-eastern Pacific off Chile.Crossref | GoogleScholarGoogle Scholar |

Chang, W. Y. (1982). A statistical method for evaluating the reproducibility of age determination. Canadian Journal of Fisheries and Aquatic Sciences 39, 1208–1210.
A statistical method for evaluating the reproducibility of age determination.Crossref | GoogleScholarGoogle Scholar |

Colonello, J. H., Lucifora, L. O., and Massa, A. M. (2007). Reproduction of the angular angel shark (Squatina guggenheim): geographic differences, reproductive cycle, and sexual dimorphism. ICES Journal of Marine Science 64, 131–140.

Compagno, L. J. V. (1988). ‘Sharks of the Order Carcharhiniformes.’ (Princeton University Press: Princeton, NJ.)

Compagno, L. J. V., Dando, M., and Fowler, S. (2005). ‘A Field Guide to the Sharks of the World.’ (Princeton University Press: Princeton, NJ.)

Driggers, W. B., Carlson, J. K., Cullum, B., Dean, J. M., Oakley, D., and Ulrich, G. (2004a). Age and growth of the blacknose shark, Carcharhinus acronotus, in the western North Atlantic Ocean with comments on regional variation in growth rates. Environmental Biology of Fishes 71, 171–178.
Age and growth of the blacknose shark, Carcharhinus acronotus, in the western North Atlantic Ocean with comments on regional variation in growth rates.Crossref | GoogleScholarGoogle Scholar |

Driggers, W. B., Oakley, D. A., Ulrich, G., Carlson, J. K., Cullum, B. J., and Dean, J. M. (2004b). Reproductive biology of Carcharhinus acronotus in the coastal waters of South Carolina. Journal of Fish Biology 64, 1540–1551.
Reproductive biology of Carcharhinus acronotus in the coastal waters of South Carolina.Crossref | GoogleScholarGoogle Scholar |

Dudley, S. F. J., and Cliff, G. (1993). Sharks caught in the protective gill nets off Natal, South Africa, 7. The blacktip shark, Carcharhinus limbatus (Valenciennes). South African Journal of Marine Science – Suid-Afrikaanse Tydskrif Vir Seewetenskap 13, 237–254.

Fabens, A. J. (1965). Properties and fitting of the von Bertalanffy growth curve Growth 29, 265–289.
| 1:STN:280:DyaF287gs1WmtA%3D%3D&md5=f67381e79b40face841bce80f4d07c1dCAS |

Frisk, M. G., Miller, T. J., and Fogarty, M. J. (2001). Estimation and analysis of biological parameters in elasmobranch fishes: a comparitive life history study. Canadian Journal of Fisheries and Aquatic Sciences 58, 969–981.
Estimation and analysis of biological parameters in elasmobranch fishes: a comparitive life history study.Crossref | GoogleScholarGoogle Scholar |

Goldmann, K. J. (2005). Age and growth of elasmobranch fishes. In ‘Management Techniques for Elasmobranch Fisheries: FAO Fisheries Technical Paper. Vol. 474’. (Eds J. A. Musick and R. Bonfil.) pp. 76–102. (FAO: Rome.)

Gutteridge, A. N. (2012). Community structure and biology of the elasmobranchs of Hervey Bay, southeast Queensland, Australia. Ph.D. Thesis. University of Queensland, Brisbane.

Gutteridge, A. N., Bennett, M. B., Huveneers, C., and Tibbetts, I. R. (2011). Assessing the overlap between the diet of a coastal shark and the surrounding prey communities in a sub-tropical embayment. Journal of Fish Biology 78, 1405–1422.
Assessing the overlap between the diet of a coastal shark and the surrounding prey communities in a sub-tropical embayment.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BC3Mvot1WltQ%3D%3D&md5=ab4b57dc9f7e1b4c30909ce0c4c442d3CAS |

Harry, A. V., Simpfendorfer, C. A., and Tobin, A. J. (2010). Improving age, growth and maturity estimates for aseasonally reproducing chondrichthyans. Fisheries Research 106, 393–403.
Improving age, growth and maturity estimates for aseasonally reproducing chondrichthyans.Crossref | GoogleScholarGoogle Scholar |

Harry, A. V., Macbeth, W. G., Gutteridge, A. N., and Simpfendorfer, C. A. (2011a). The life histories of endangered hammerhead sharks (Carcharhiniformes, Sphyrnidae) from the east coast of Australia. Journal of Fish Biology 78, 2026–2051.
The life histories of endangered hammerhead sharks (Carcharhiniformes, Sphyrnidae) from the east coast of Australia.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BC3Mros12gsw%3D%3D&md5=13cd898eb66d4f509ac0075d09530b97CAS |

Harry, A. V., Tobin, A. J., Simpfendorfer, C. A., Welch, D. J., Mapleston, A., White, J., Williams, A. J., and Stapley, J. (2011b). Evaluating catch and mitigating risk in a multi-species, tropical, inshore shark fishery within the Great Barrier Reef World Heritage Area. Marine and Freshwater Research 62, 710–721.
Evaluating catch and mitigating risk in a multi-species, tropical, inshore shark fishery within the Great Barrier Reef World Heritage Area.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC3MXnvFanurY%3D&md5=6fac6f124ce9ef728e2f2bfb410991b1CAS |

Henderson, A. C., McIlwain, J. L., Al-Oufi, H. S., and Ambu-Ali, A. (2006). Reproductive biology of the milk shark Rhizoprionodon acutus and the bigeye houndshark Iago omanensis in the coastal waters of Oman. Journal of Fish Biology 68, 1662–1678.
Reproductive biology of the milk shark Rhizoprionodon acutus and the bigeye houndshark Iago omanensis in the coastal waters of Oman.Crossref | GoogleScholarGoogle Scholar |

Henderson, A. C., McIlwain, J. L., Al-Soufi, H. S., and Al-Seili, S. (2007). The Sultanate of Oman shark fishery: species composition, seasonality and diversity. Fisheries Research 86, 159–168.
The Sultanate of Oman shark fishery: species composition, seasonality and diversity.Crossref | GoogleScholarGoogle Scholar |

Hussey, N. E., Wintner, S. P., Dudley, S. F. J., Cliff, G., Cocks, D. T., and MacNeil, M. A. (2010). Maternal investment and size-specific reproductive output in carcharhinid sharks. Journal of Animal Ecology 79, 184–193.
Maternal investment and size-specific reproductive output in carcharhinid sharks.Crossref | GoogleScholarGoogle Scholar |

Jacobsen, I. P., and Bennett, M. B. (2010). Age and growth of Neotrygon picta, Neotrygon annotata and Neotrygon kuhlii from north-east Australia, with notes on their reproductive biology. Journal of Fish Biology 77, 2405–2422.
Age and growth of Neotrygon picta, Neotrygon annotata and Neotrygon kuhlii from north-east Australia, with notes on their reproductive biology.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BC3M%2FksVajug%3D%3D&md5=f4b487512b87d8c1bc71837621e430b3CAS |

Jirik, K. E., and Lowe, C. G. (2012). An elasmobranch maternity ward: female round stingrays Urobatis halleri use warm, restored estuarine habitat during gestation. Journal of Fish Biology 80, 1227–1245.
An elasmobranch maternity ward: female round stingrays Urobatis halleri use warm, restored estuarine habitat during gestation.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BC38rksVOrsA%3D%3D&md5=d7ec1687b9b9e0de6ce0e4d4146e4cccCAS |

Johnson, A. G. (1979). A simple method for staining the centra of teleost vertebrae. Northeast Gulf Science 3, 113–115.

Kimura, D. K. (1980). Likelihood methods for the von Bertalanffy growth curve. Fishery Bulletin 77, 765–776.

Knip, D. M., Heupel, M. R., and Simpfendorfer, C. A. (2012). Habitat use and spatial segregation of adult spottail sharks Carcharhinus sorrah in tropical nearshore waters. Journal of Fish Biology 80, 767–784.
Habitat use and spatial segregation of adult spottail sharks Carcharhinus sorrah in tropical nearshore waters.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BC38rhvV2msw%3D%3D&md5=75a62f32ec01b39fff228ae40a88d8faCAS |

Kyne, P. M., and Bennett, M. B. (2002). Reproductive biology of the eastern shovelnose ray, Aptychotrema rostrata (Shaw and Nodder, 1794), from Moreton Bay, Queensland, Australia. Marine and Freshwater Research 53, 583–589.
Reproductive biology of the eastern shovelnose ray, Aptychotrema rostrata (Shaw and Nodder, 1794), from Moreton Bay, Queensland, Australia.Crossref | GoogleScholarGoogle Scholar |

Kyne, P. M., Compagno, L. J. V., Stead, J., Jackson, M. V., and Bennett, M. B. (2011). Distribution, habitat and biology of a rare and threatened eastern Australian endemic shark: Colclough’s shark, Brachaelurus colcloughi Ogilby, 1908. Marine and Freshwater Research 62, 540–547.
Distribution, habitat and biology of a rare and threatened eastern Australian endemic shark: Colclough’s shark, Brachaelurus colcloughi Ogilby, 1908.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC3MXnvFanuro%3D&md5=541b238b52b327c868435b9d9cd6e7acCAS |

Last, P. R., and Stevens, J. D. (2009). ‘Sharks and Rays of Australia.’ (CSIRO Publishing: Melbourne.)

Loefer, J. K., and Sedberry, G. R. (2003). Life history of the Atlantic sharpnose shark (Rhizoprionodon terraenovae) (Richardson, 1836) off the southeastern United States. Fishery Bulletin 101, 75–88.

Lombardi-Carlson, L. A., Cortes, E., Parsons, G. R., and Manire, C. A. (2003). Latitudinal variation in life-history traits of bonnethead sharks, Sphyrna tiburo, (Carcharhiniformes: Sphyrnidae) from the eastern Gulf of Mexico. Marine and Freshwater Research 54, 875–883.
Latitudinal variation in life-history traits of bonnethead sharks, Sphyrna tiburo, (Carcharhiniformes: Sphyrnidae) from the eastern Gulf of Mexico.Crossref | GoogleScholarGoogle Scholar |

McAuley, R. B., Simpfendorfer, C. A., Hyndes, G. A., Allison, R. R., Chidlow, J. A., Newman, S. J., and Lenanton, R. C. J. (2006). Validated age and growth of the sandbar shark, Carcharhinus plumbeus (Nardo 1827) in the waters off Western Australia. Environmental Biology of Fishes 77, 385–400.
Validated age and growth of the sandbar shark, Carcharhinus plumbeus (Nardo 1827) in the waters off Western Australia.Crossref | GoogleScholarGoogle Scholar |

Menni, R.C., and Lessa, R.P. (1998). The chondrichthyan community off Maranhao (northeastern Brazil) II. Biology of species. Acta Zoologica Lilloana 44, 69–89.

Officer, R. A., Gason, A. S., Walker, T. I., and Clement, J. G. (1996). Sources of variation in counts of growth increments in vertebrae from gummy shark, Mustelus antarcticus, and school shark, Galeorhinus galeus: implications for age determination. Canadian Journal of Fisheries and Aquatic Sciences 53, 1765–1777.
Sources of variation in counts of growth increments in vertebrae from gummy shark, Mustelus antarcticus, and school shark, Galeorhinus galeus: implications for age determination.Crossref | GoogleScholarGoogle Scholar |

Pierce, S. J., and Bennett, M. B. (2009). Validated annual band-pair periodicity and growth parameters of blue-spotted maskray Neotrygon kuhlii from south-east Queensland, Australia. Journal of Fish Biology 75, 2490–2508.
Validated annual band-pair periodicity and growth parameters of blue-spotted maskray Neotrygon kuhlii from south-east Queensland, Australia.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BC3cjnsVyjsA%3D%3D&md5=62ee228fbfe700e1c0a49a8d800cc27cCAS |

Piercy, A. N., Carlson, J. K., Sulikowski, J. A., and Burgess, G. H. (2007). Age and growth of the scalloped hammerhead shark, Sphyrna lewini, in the north-west Atlantic Ocean and Gulf of Mexico. Marine and Freshwater Research 58, 34–40.
Age and growth of the scalloped hammerhead shark, Sphyrna lewini, in the north-west Atlantic Ocean and Gulf of Mexico.Crossref | GoogleScholarGoogle Scholar |

Prabhakaran Nair, K. (1976). Age and growth of the yellow dog shark Scoliodon laticaudus Muller and Henle from Bombay waters. Journal of the Marine Biological Association of India 18, 531–539.

Pratt, H. L. (1993). The storage of spermatozoa in the oviducal glands of western North Atlantic sharks. Environmental Biology of Fishes 38, 139–149.
The storage of spermatozoa in the oviducal glands of western North Atlantic sharks.Crossref | GoogleScholarGoogle Scholar |

Quinn, T. J., and Deriso, R. B. (1999). ‘Quantitative Fish Dynamics.’ (Oxford University Press: New York.)

Ricker, W. E. (1975). ‘Computation and Interpretation of Biological Statistics of Fish Populations.’ (Department of the Environment Fisheries and Marine Service: Ottawa, Canada.)

Ricker, W. E. (1979). Growth rates and models. In ‘Fish Physiology: Bioenergetics and Growth. Vol. VIII’. (Eds W. S. Hoar, D. J. Randall and J. R. Brett.) pp. 677–743. (Academic Press: San Diego, CA.)

Schwartz, F. J. (1983). Shark ageing methods and age estimation of scalloped hammerhead, Sphyrn lewini, and dusky, Carcharhinus obscurus, sharks based on vertebral ring counts. In ‘Proceedings of the International Workshop on Age Determination of Oceanic Fishes: Tunas, Billfishes and Sharks. Vol. NMFS 8’. (Eds E. D. Prince and L. M. Pulos.) pp. 167–174. (NOAA Technical Report: Miami, FL.)

Simpfendorfer, C. A. (1992). Reproductive strategy of the Australian sharpnose shark, Rhizoprionodon taylori (Elasmobranchii: Carcharhinidae), from Cleveland Bay, northern Queensland. Australian Journal of Marine and Freshwater Research 43, 67–75.
Reproductive strategy of the Australian sharpnose shark, Rhizoprionodon taylori (Elasmobranchii: Carcharhinidae), from Cleveland Bay, northern Queensland.Crossref | GoogleScholarGoogle Scholar |

Simpfendorfer, C. A. (1993). Age and growth of the Australian sharpnose shark, Rhizoprionodon taylori, from north Queensland, Australia. Environmental Biology of Fishes 36, 233–241.
Age and growth of the Australian sharpnose shark, Rhizoprionodon taylori, from north Queensland, Australia.Crossref | GoogleScholarGoogle Scholar |

Simpfendorfer, C. A., McAuley, R. B., Chidlow, J. A., and Unsworth, P. (2002). Validated age and growth of the dusky shark, Carcharhinus obscurus, from Western Australian waters. Marine and Freshwater Research 53, 567–573.
Validated age and growth of the dusky shark, Carcharhinus obscurus, from Western Australian waters.Crossref | GoogleScholarGoogle Scholar |

Smith, S. E., Au, D. W., and Show, C. (1998). Intrinsic rebound potentials of 26 species of Pacific sharks. Marine and Freshwater Research 49, 663–678.
Intrinsic rebound potentials of 26 species of Pacific sharks.Crossref | GoogleScholarGoogle Scholar |

Smith, W. D., Cailliet, G. M., and Melendez, E. M. (2007). Maturity and growth characteristics of a commercially exploited stingray, Dasyatis dipterura. Marine and Freshwater Research 58, 54–66.
Maturity and growth characteristics of a commercially exploited stingray, Dasyatis dipterura.Crossref | GoogleScholarGoogle Scholar |

Stevens, J. D., and McLoughlin, K. J. (1991). Distribution, size and sex composition, reproductive biology and diet of sharks from northern Australia. Australian Journal of Marine and Freshwater Research 42, 151–199.
Distribution, size and sex composition, reproductive biology and diet of sharks from northern Australia.Crossref | GoogleScholarGoogle Scholar |

Stevens, J. D., Bonfil, R., Dulvy, N. K., and Walker, P. A. (2000). The effects of fishing on sharks, rays, and chimaeras (chondrichthyans), and the implications for marine ecosystems. ICES Journal of Marine Science 57, 476–494.
The effects of fishing on sharks, rays, and chimaeras (chondrichthyans), and the implications for marine ecosystems.Crossref | GoogleScholarGoogle Scholar |

van der Velde, T. D., Griffiths, S. P., and Fry, G. C. (2010). Reproductive biology of the commercially and recreationally important cobia Rachycentron canadum in northeastern Australia. Fisheries Science 76, 33–43.
Reproductive biology of the commercially and recreationally important cobia Rachycentron canadum in northeastern Australia.Crossref | GoogleScholarGoogle Scholar |

von Bertalanffy, L. (1938). A quantitative theory of organic growth, inquiries on growth laws II. Human Biology 10, 181–213.
| 1:CAS:528:DyaA1MXksVGhtg%3D%3D&md5=e304da4dc784d8052525e5580d99bf9eCAS |

Walker, T. I. (2005a). Management measures. In ‘Management Techniques for Elasmobranch Fisheries: FAO Fisheries Technical Paper. Vol. 474’. (Eds J. A. Musick and R. Bonfil.) pp. 216–242. (FAO: Rome.)

Walker, T. I. (2005b). Reproduction in fisheries science. In ‘Reproductive Biology and Phylogeny of Chondrichthyes. Vol. 3’. (Ed. W. C. Hamlett.) pp. 81–128. (Science Publishers: Enfield, NH.)

Walker, T. I. (2007). Spatial and temporal variation in the reproductive biology of gummy shark Mustelus antarcticus (Chondrichthyes: Triakidae) harvested off southern Australia. Marine and Freshwater Research 58, 67–97.
Spatial and temporal variation in the reproductive biology of gummy shark Mustelus antarcticus (Chondrichthyes: Triakidae) harvested off southern Australia.Crossref | GoogleScholarGoogle Scholar |

Wheeler, J. F. G. (1959). Sharks of the western Indian Ocean: Loxodon macrorhinus M&H. The East African Agricultural Journal 25, 106–109.

White, W. T. (2007). Catch composition and reproductive biology of whaler sharks (Carcharhiniformes: Carcharhinidae) caught by fisheries in Indonesia. Journal of Fish Biology 71, 1512–1540.
Catch composition and reproductive biology of whaler sharks (Carcharhiniformes: Carcharhinidae) caught by fisheries in Indonesia.Crossref | GoogleScholarGoogle Scholar |

Yamaguchi, A., Taniuchi, T., and Shimizu, M. (2000). Geographic variations in reproductive parameters of the starspotted dogfish, Mustelus manazo, from five localities in Japan and in Taiwan. Environmental Biology of Fishes 57, 221–233.
Geographic variations in reproductive parameters of the starspotted dogfish, Mustelus manazo, from five localities in Japan and in Taiwan.Crossref | GoogleScholarGoogle Scholar |