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Low genetic variability in an endangered population of fiddler crab <Emphasis Type="Italic">Uca arcuata</Emphasis> on Okinawajima Island: analysis of mitochondrial DNA
Authors:Misuzu Aoki  Tohru Naruse  Jin-Hua Cheng  Yasunari Suzuki  Hideyuki Imai
Institution:Laboratory of Marine Biology and Coral Reef Studies, Faculty of Science, University of the Ryukyus, Nishihara, Okinawa 903-0213,;Department of Biological Science, Faculty of Science, National University of Singapore, Singapore 117543,;Tungkang Biotechnology Research Center, Taiwan Fisheries Research Institute, Tungkang, Pingtung 92804, Taiwan, and;Marine World Umino-nakamichi, Higashiku, Fukuoka 811-0321, Japan
Abstract:ABSTRACT:   Restriction fragment length polymorphism analysis was performed on polymerase chain reaction-amplified DNA fragments containing the D-loop , ND2 , and CO I genes of fiddler crab Uca arcuata mitochondrial DNA. In total, 316 individuals from six populations in Japan and two populations in Taiwan were analyzed using five restriction endonucleases ( Afa I, Bcn I, Cfr 13I, Hae III and Hin fI), yielding 85 haplotypes. Samples were taken from Nakagusuku Bay, Okinawajima Island, which is the only known distribution of U. arcuata in the Ryukyu Archipelago. The Okinawajima Island population is isolated geographically from others and showed a marked low genetic variability ( h  = 0.2539, π  = 0.0005) and significant differentiation from other population samples in haplotype composition. We suggest that a substantial decrease in the genetic variability of the Okinawajima Island population was caused by genetic drift under the conditions of small population size and low gene flow from other populations. It is important to conserve the intertidal zone in Nakagusuku Bay for the maintenance of this endangered population.
Keywords:fiddler crab  genetic variability  mitochondrial DNA  population structure              Uca arcuata
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