Relative importance of ocean currents and fronts in population structures of marine fish: a lesson from the cryptic lineages of the Hippocampus mohnikei complex
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[1] Jin-Koo Kim,et al. New insight into hybridization and unidirectional introgression between Ammodytes japonicus and Ammodytes heian (Trachiniformes, Ammodytidae) , 2017, PloS one.
[2] S. Lourie,et al. A global revision of the Seahorses Hippocampus Rafinesque 1810 (Actinopterygii: Syngnathiformes): Taxonomy and biogeography with recommendations for further research. , 2016, Zootaxa.
[3] Jin-Koo Kim,et al. Evidence of incomplete lineage sorting or restricted secondary contact in Lateolabrax japonicus complex (Actinopterygii: Moronidae) based on morphological and molecular traits , 2016 .
[4] L. Aylesworth,et al. New records of the Japanese seahorse Hippocampus mohnikei in Southeast Asia lead to updates in range, habitat and threats. , 2016, Journal of fish biology.
[5] Lijun He,et al. Biogeographical role of the Kuroshio Current in the amphibious mudskipper Periophthalmus modestus indicated by mitochondrial DNA data , 2015, Scientific Reports.
[6] Sang-Yun Han,et al. New record of the short-tailed pipefish, Microphis brachyurus brachyurus (Teleostei: Syngnathidae), with a key to the species of the family Syngnathidae from Korea , 2014, Ocean Science Journal.
[7] J. Hyde,et al. DNA barcoding provides support for a cryptic species complex within the globally distributed and fishery important opah (Lampris guttatus) , 2014, Molecular ecology resources.
[8] Jin-Koo Kim,et al. Change of Structure Community of Fish Collected by a Gape Net with Wings after 12 Years in the Coast of Wando Island, Korea , 2014 .
[9] Junda Lin,et al. Genetic Variations in Two Seahorse Species (Hippocampus mohnikei and Hippocampus trimaculatus): Evidence for Middle Pleistocene Population Expansion , 2014, PloS one.
[10] Jin-Koo Kim,et al. Genetic diversity and population structure of the gizzard shad, Konosirus punctatus (Clupeidae, Pisces), in Korean waters based on mitochondrial DNA control region sequences , 2014, Genes & Genomics.
[11] Xuefa Shi,et al. Petrologic perspectives on tectonic evolution of a nascent basin (Okinawa Trough) behind Ryukyu Arc: A review , 2014, Acta Oceanologica Sinica.
[12] Dong Xie,et al. BEAST 2: A Software Platform for Bayesian Evolutionary Analysis , 2014, PLoS Comput. Biol..
[13] Koichiro Tamura,et al. MEGA6: Molecular Evolutionary Genetics Analysis version 6.0. , 2013, Molecular biology and evolution.
[14] S. Lourie,et al. Marine dispersal and barriers drive Atlantic seahorse diversification , 2013 .
[15] J. M. Díaz de Astarloa,et al. Rafting seahorses: the presence of juvenile Hippocampus patagonicus in floating debris. , 2013, Journal of fish biology.
[16] T. Gao,et al. Limits of Bayesian skyline plot analysis of mtDNA sequences to infer historical demographies in Pacific herring (and other species). , 2012, Molecular phylogenetics and evolution.
[17] T. Nakabo,et al. The incomplete history of mitochondrial lineages between two rockfishes, Sebastes longispinis and Sebastes hubbsi (Scorpaeniformes: Scorpaenidae). , 2012, Journal of fish biology.
[18] Sun Joo Park,et al. An Anti-inflammatory Peptide Isolated from Seahorse Hippocampus kuda bleeler Inhibits the Invasive Potential of MG-63 Osteosarcoma Cells , 2012 .
[19] H. Hadrys,et al. Population genetic structure of sexual and parthenogenetic damselflies inferred from mitochondrial and nuclear markers , 2011, Heredity.
[20] S. Ho,et al. Skyline‐plot methods for estimating demographic history from nucleotide sequences , 2011, Molecular ecology resources.
[21] Y. Yoon,et al. Zoogeography of planktonic brackish-water calanoid copepods in western Japan with comparison with neighboring Korean fauna , 2011 .
[22] L. Excoffier,et al. Arlequin suite ver 3.5: a new series of programs to perform population genetics analyses under Linux and Windows , 2010, Molecular ecology resources.
[23] T. Buckley,et al. Phylogeography and ecological niche modelling of the New Zealand stick insect Clitarchus hookeri (White) support survival in multiple coastal refugia , 2010 .
[24] 王丽华,et al. 国际生命条形码计划—DNA Barcoding , 2009 .
[25] Zhong‐Ji Qian,et al. Cathepsin B inhibitory activities of three new phthalate derivatives isolated from seahorse, Hippocampus Kuda Bleeler. , 2008, Bioorganic & medicinal chemistry letters.
[26] P. Arctander,et al. Mitochondrial DNA diversity and population structure of a forest-dependent rodent, Praomys taitae (Rodentia: Muridae) Heller 1911, in the fragmented forest patches of Taita Hills, Kenya , 2008 .
[27] Anchun Li,et al. Development of the East Asian monsoon: Mineralogical and sedimentologic records in the northern South China Sea since 20 Ma , 2007 .
[28] Jennifer L. Molnar,et al. Marine Ecoregions of the World: A Bioregionalization of Coastal and Shelf Areas , 2007 .
[29] David J. Lohman,et al. Cryptic species as a window on diversity and conservation. , 2007, Trends in ecology & evolution.
[30] D. Tautz,et al. An evaluation of LSU rDNA D1-D2 sequences for their use in species identification , 2007, Frontiers in Zoology.
[31] Ya-ping Zhang,et al. Pleistocene isolation in the Northwestern Pacific marginal seas and limited dispersal in a marine fish, Chelon haematocheilus (Temminck & Schlegel, 1845) , 2006, Molecular ecology.
[32] H. Liew,et al. Morphological development and allometric growth patterns in the juvenile seahorse Hippocampus kuda Bleeker , 2006 .
[33] Y. Iwatsuki,et al. Genetic Variation at the Mitochondrial 16S rRNA Gene among Trichiurus lepturus (Teleostei:Trichiuridae) from Various Localities: Preliminary Evidence of a New Species from West Coast of Africa , 2006, Hydrobiologia.
[34] A. Vincent,et al. Life history of an unusual marine fish: survival, growth and movement patterns of Hippocampus guttulatus Cuvier 1829 , 2006 .
[35] O. Pybus,et al. Bayesian coalescent inference of past population dynamics from molecular sequences. , 2005, Molecular biology and evolution.
[36] S. Lourie,et al. Dispersal, habitat differences, and comparative phylogeography of Southeast Asian seahorses (Syngnathidae: Hippocampus) , 2005, Molecular ecology.
[37] S. Lourie,et al. Molecular evidence for long-distance colonization in an Indo-Pacific seahorse lineage , 2005 .
[38] M. Collares-Pereira,et al. Heterozygous indels as useful tools in the reconstruction of DNA sequences and in the assessment of ploidy level and genomic constitution of hybrid organisms , 2005, DNA sequence : the journal of DNA sequencing and mapping.
[39] S. Lourie,et al. A marine fish follows Wallace's Line: the phylogeography of the three‐spot seahorse (Hippocampus trimaculatus, Syngnathidae, Teleostei) in Southeast Asia , 2004 .
[40] A. Vincent,et al. The origin and evolution of seahorses (genus Hippocampus): a phylogenetic study using the cytochrome b gene of mitochondrial DNA. , 2004, Molecular phylogenetics and evolution.
[41] C. Matthee,et al. The evolutionary history of seahorses (Syngnathidae: Hippocampus): molecular data suggest a West Pacific origin and two invasions of the Atlantic Ocean. , 2004, Molecular phylogenetics and evolution.
[42] Ginger A. Rebstock,et al. A comparison of three marine ecosystems surrounding the Korean peninsula: Responses to climate change [review article] , 2003 .
[43] J. Rozas,et al. Statistical properties of new neutrality tests against population growth. , 2002, Molecular biology and evolution.
[44] Kim Jin Koo,et al. Fluctuation of Bag-net Catches off Wando, Korea and the Effect of Sea Water Temperature , 2002 .
[45] Mark J. Clement,et al. TCS: estimating gene genealogies , 2002, Proceedings 16th International Parallel and Distributed Processing Symposium.
[46] H. Kohno,et al. Early life history of a seahorse, Hippocampus mohnikei, in Tokyo Bay, Japan , 2001, Ichthyological Research.
[47] I. Volvenko,et al. Ichthyofaunistic Biogeography of the East Sea , 2001 .
[48] I. Volvenko,et al. Ichthyofaunistic biogeography of the Japan (East) Sea , 2000 .
[49] L. Excoffier,et al. Estimation of past demographic parameters from the distribution of pairwise differences when the mutation rates vary among sites: application to human mitochondrial DNA. , 1999, Genetics.
[50] S. Chow,et al. Universal PCR primers for S7 ribosomal protein gene introns in fish. , 1998, Molecular ecology.
[51] B. Bowen,et al. Shallow population histories in deep evolutionary lineages of marine fishes: insights from sardines and anchovies and lessons for conservation , 1998 .
[52] Y. Fu,et al. Statistical tests of neutrality of mutations against population growth, hitchhiking and background selection. , 1997, Genetics.
[53] Wang Pin-xian,et al. Last glacial maximum in China: comparison between land and sea , 1994 .
[54] W. Li,et al. Statistical tests of neutrality of mutations. , 1993, Genetics.
[55] H. Harpending,et al. Population growth makes waves in the distribution of pairwise genetic differences. , 1992, Molecular biology and evolution.
[56] M. Kimura. A simple method for estimating evolutionary rates of base substitutions through comparative studies of nucleotide sequences , 1980, Journal of Molecular Evolution.
[57] L. Keigwin. Pliocene closing of the Isthmus of Panama, based on biostratigraphic evidence from nearby Pacific Ocean and Caribbean Sea cores , 1978 .
[58] S. J. Foster. Seahorses (Hippocampus spp.) and the CITES Review of Significant Trade , 2016 .
[59] Jin Koo Kim. Diversity and Conservation of Korean Marine Fishes , 2009 .
[60] Sang-Woo Kim,et al. Fluctuation of Tidal Front and Expansion of Cold Water Region in the Southwestern Sea of Korea , 2009 .
[61] C. P. Thunberg. Zoogeography and Systematics of Shallow Water Marine East Asian Fishes , 2009 .
[62] Julio A. Rozas Liras,et al. DnaSP v 5 : a software for comprehensive analysis of DNA polymorphism data , 2009 .
[63] Lee Young-Don,et al. Parturition and Early Growth of Crowned Seahorse, Hippocampus coronatus in Korea , 2006 .
[64] 金 益秀,et al. 原色韓國魚類大圖鑑 = Illustrated Book of Korean Fishes , 2005 .
[65] M. Vincx,et al. Juvenile Hippocampus guttulatus from a neuston tow at the French-Belgian border , 2005 .
[66] 윤성종,et al. Early Life History and Rearing of the Yellow Seahorse Hippocampus kuda (Teleostei: Syngnathidae) , 2004 .
[67] S. Lourie,et al. Seahorses : an identification guide to the world's species and their conservation , 1999 .
[68] T. A. Hall,et al. BIOEDIT: A USER-FRIENDLY BIOLOGICAL SEQUENCE ALIGNMENT EDITOR AND ANALYSIS PROGRAM FOR WINDOWS 95/98/ NT , 1999 .
[69] A. Vincent. The international trade in seahorses , 1996 .