Population connectivity of the crab Gandalfus yunohana (Takeda, Hashimoto & Ohta, 2000) (Decapoda: Brachyura: Bythograeidae) from deep-sea hydrothermal vents in the northwestern Pacific

Author:

Watanabe Hiromi K1ORCID,Chen Chong1ORCID,Kojima Shigeaki2,Kato Shogo3,Yamamoto Hiroyuki4ORCID

Affiliation:

1. X-STAR, Japan Agency for Marine-Earth Science and Technology (JAMSTEC), Yokosuka, Japan

2. Atmosphere and Ocean Research Institute, the University of Tokyo, Kashiwa, Japan

3. Japan Oil, Gas and Metals National Corporation (JOGMEC), Tokyo, Japan

4. RIGC, Japan Agency for Marine-Earth Science and Technology (JAMSTEC), Yokosuka, Japan

Abstract

Abstract Genetic connectivity provides a basis for evaluating the resilience of animal communities by elucidating gene flow and serves as a proxy for realized dispersal through planktonic larval dispersal, settlement, and reproductive success. Gandalfus yunohana (Takeda, Hashimoto & Ohta, 2000) is a brachyuran crab endemic to deep-sea hydrothermal vents in the northwestern Pacific. Although an iconic and often dominant species, the connectivity among its populations is yet to be examined. We obtained barcoding sequences of the mitochondrial COI gene of G. yunohana from four vent fields including two on the Izu Arc, one on the northern Mariana Arc, and one in the Okinawa Trough. Genetic diversity of populations on the Izu and northern Mariana arcs were similar and shared the dominant haplotypes, showing no genetic subdivision regardless of the habitat depth. The Okinawa Trough population, for which only one specimen was available, was not genetically different from specimens from the Izu/Mariana arc populations. Estimation of the number of immigrants among populations suggests that the migration from north to south is higher than in the reverse direction. Our results resonate with previous laboratory-culture experiments, suggesting a high dispersal capability for G. yunohana. Visual observations and sampling, however, suggest that G. yunohana is exceedingly rare in the Okinawa Trough. This perhaps results from a lack of sufficient larval supply from the Izu-Bonin-Mariana Arc vents, and there may not be a reproductive population in the Okinawa Trough.

Funder

Japan Society for the Promotion of Science

Publisher

Oxford University Press (OUP)

Subject

Aquatic Science

Reference43 articles.

1. New Galatheoidea (Crustacea, Decapoda, Anomura) from hydrothermal systems in the West Pacific Ocean Bismarck Archipelago and Okinawa Trough;Baba;Zoosystema,1998

2. High connectivity of animal populations in deep-sea hydrothermal vent fields in the Central Indian Ridge relevant to its geological setting;Beedessee;PLoS ONE,2013

3. How to use mIGRATE or why are markov chain monte carlo programs difficult to use;Beerli;Population Genetics for Animal Conservation,2009

4. BEAST 2.5: An advanced software platform for Bayesian evolutionary analysis;Bouckaert;PLoS Computational Biology,2019

5. Vulcanolepas scotiaensis sp. nov., a new deep-sea scalpelliform barnacle (Eolepadidae: Neolepadinae) from hydrothermal vents in the Scotia Sea, Antarctica;Buckeridge;Zootaxa,2013

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