有明海中部底栖片足类动物群落在日本依沙屋湾堤防关闭后的五年间的时间变化

Sudo Hiroyuki, Matsuo Masatoshi, Sato Shin'ichi, Azuma Mikio
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摘要

利用1997 - 2002年在有明海中部采集的底栖片足类动物样本,研究了伊沙哈亚湾堤防关闭后底栖片足类动物群落的时间变化。从1997年6月(5207 ind. m−2)到2001年6月(413 ind. m−2),片足类动物的密度呈逐年下降趋势,但在2002年6月(22944 ind. m−2),密度急剧上升。非度量多维尺度(nMDS)排序结果表明:片足类群落可分为3组(A: 1997年6月和2002年6月;B: 1998年11月、1999年6月、2000年6月;答:2000年11月、2001年6月和2001年11月)。A组以蠓科和蠓科为主,B组和C组以蛇蠓科为主。有明海中部片足类总密度的变化顺序为A组> B组> c组。A - c组之间的差异表明,有明海中部片足类密度和组合的变化主要受corophiid和photid的影响。事实上,2002年6月发生的片足类动物密度爆炸是由于长角藻、长角藻和莱茵光藻种群数量的快速增加。从底泥粒度的变化来看,研究区东侧的粒度减小导致了这些机会物种的密度迅速增加。
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Temporal changes in benthic amphipod assemblages in the central part of the Ariake Sea during the five years following the dike closure in Isahaya Bay, Japan
: Temporal changes in benthic amphipod assemblages after the dike closure in Isahaya Bay were investigated using amphipod samples collected from the central part of the Ariake Sea between 1997 and 2002. Amphipod densities decreased ev-ery year from June 1997 ( 5,207 ind. m − 2 ) to June 2001 ( 413 ind. m − 2 ) but increased abruptly in June 2002 ( 22,944 ind. m − 2 ) . Non-metric multidimensional scaling ( nMDS ) ordination of sampling occasions showed that amphipod assemblages were divided into three groups ( A: June 1997 and June 2002; B: November 1998, June 1999 and June 2000; C: November 2000, June 2001 and November 2001 ) . Group A was dominated by species of Corophiidae and Photidae, and group B and C were dominated by species of Ampeliscidae. In terms of total amphipod density, the order was as follows: group A > group B > group C. These differences among groups A–C indicate that corophiid and photid species contribute significantly to the fluc-tuation of amphipod density and assemblages in the central part of the Ariake Sea. In fact, an explosion of the amphipod density that occurred in June 2002 was attributed to rapid increases in the populations of Crassicorophium sp. A, Crassicorophium crassicorne and Photis reinhardi . Judging from the changes in the bottom sediment grain size, we conclude that the grain-size reduction on the east side of the study area led to a rapid increase in the density of these opportunistic species.
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