Microsatellite and mitochondrial DNA analyses of the genetic structure of blacktip shark (Carcharhinus limbatus) nurseries in the northwestern Atlantic, Gulf of Mexico, and Caribbean Sea

被引:173
作者
Keeney, DB
Heupel, MR
Hueter, RE
Heist, EJ
机构
[1] Mote Marine Lab, Ctr Shark Res, Sarasota, FL 34236 USA
[2] So Illinois Univ, Dept Zool, Fisheries & Illinois Aquaculture Ctr, Carbondale, IL 62901 USA
关键词
blacktip shark; Carcharhinus limbatus; control region; microsatellites; philopatry; population structure;
D O I
10.1111/j.1365-294X.2005.02549.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We investigated the genetic structure of blacktip shark (Carcharhinus limbatus) continental nurseries in the northwestern Atlantic Ocean, Gulf of Mexico, and Caribbean Sea using mitochondrial DNA control region sequences and eight nuclear microsatellite loci scored in neonate and young-of-the-year sharks. Significant structure was detected with both markers among nine nurseries (mitochondrial Phi(ST) = 0.350, P < 0.001; nuclear Phi(ST) = 0.007, P < 0.001) and sharks from the northwestern Atlantic, eastern Gulf of Mexico, western Gulf of Mexico, northern Yucatan, and Belize possessed significantly different mitochondrial DNA haplotype frequencies. Microsatellite differentiation was limited to comparisons involving northern Yucatan and Belize sharks with nuclear genetic homogeneity throughout the eastern Gulf of Mexico, western Gulf of Mexico, and northwestern Atlantic. Differences in the magnitude of maternal vs. biparental genetic differentiation support female philopatry to northwestern Atlantic, Gulf of Mexico, and Caribbean Sea natal nursery regions with higher levels of male-mediated gene flow. Philopatry has produced multiple reproductive stocks of this commercially important shark species throughout the range of this study.
引用
收藏
页码:1911 / 1923
页数:13
相关论文
共 65 条
[1]  
Avise J.C., 1999, Phylogeography: The history and formation of species
[2]   INFLUENCE OF SEASONAL MIGRATION ON GEOGRAPHIC-DISTRIBUTION OF MITOCHONDRIAL-DNA HAPLOTYPES IN HUMPBACK WHALES [J].
BAKER, CS ;
PALUMBI, SR ;
LAMBERTSEN, RH ;
WEINRICH, MT ;
CALAMBOKIDIS, J ;
OBRIEN, SJ .
NATURE, 1990, 344 (6263) :238-240
[3]  
BIRKY CW, 1983, GENETICS, V103, P513
[5]   GENETIC-STRUCTURE OF ATLANTIC AND GULF OF MEXICO POPULATIONS OF SEA BASS, MENHADEN, AND STURGEON - INFLUENCE OF ZOOGEOGRAPHIC FACTORS AND LIFE-HISTORY PATTERNS [J].
BOWEN, BW ;
AVISE, JC .
MARINE BIOLOGY, 1990, 107 (03) :371-381
[6]   GLOBAL POPULATION-STRUCTURE AND NATURAL-HISTORY OF THE GREEN TURTLE (CHELONIA-MYDAS) IN TERMS OF MATRIARCHAL PHYLOGENY [J].
BOWEN, BW ;
MEYLAN, AB ;
ROSS, JP ;
LIMPUS, CJ ;
BALAZS, GH ;
AVISE, JC .
EVOLUTION, 1992, 46 (04) :865-881
[7]   Microsatellite variation suggests substantial gene flow between king mackerel (Scomberomorus cavalla) in the western Atlantic Ocean and Gulf of Mexico [J].
Broughton, RE ;
Stewart, LB ;
Gold, JR .
FISHERIES RESEARCH, 2002, 54 (03) :305-316
[8]   Reconciling patterns of inter-ocean molecular variance from four classes of molecular markers in blue marlin (Makaira nigricans) [J].
Buonaccorsi, VP ;
McDowell, JR ;
Graves, JE .
MOLECULAR ECOLOGY, 2001, 10 (05) :1179-1196
[9]   The Mexican artisanal shark fishery in the Gulf of Mexico:: towards a regulated fishery [J].
Castillo-Géniz, JL ;
Márquez-Farias, JF ;
de la Cruz, MCR ;
Cortés, E ;
del Prado, AC .
MARINE AND FRESHWATER RESEARCH, 1998, 49 (07) :611-620
[10]  
Castro JI, 1996, B MAR SCI, V59, P508