Lim Hyun-Sig, Diaz Robert J, Hong Jae-Sang, Schaffner Linda C
Department of Marine Resources, Mokpo National University, Muan, Chonnam 534-729, Republic of Korea.
Mar Pollut Bull. 2006 Nov;52(11):1517-26. doi: 10.1016/j.marpolbul.2006.05.013. Epub 2006 May 22.
Low dissolved oxygen (hypoxia and/or anoxia) has become a major cause of change to the benthic component of ecosystems around the world. We present the response of a benthic community to hypoxia in organically enriched environments in Korean coastal waters. Disturbances due to low dissolved oxygen (DO), and organic enrichment altered community dynamics, result in defaunation during summer hypoxia with delayed recolonization occurring in winter. As DO decreased, the number of taxa, their abundance and biomass of macrofauna dropped significantly at inner bay stations in Chinhae Bay and Youngsan River estuarine bay affected by hypoxia. With the return of normoxic conditions in Chinhae Bay, recolonization was initiated by opportunistic species, with a 1-4months lag. The polychaetes, Sigambra tentaculata, Mesochaetopterus sp., and Lumbrineris longifolia, were most persistent under hypoxia. The first recolonizers were the polychaetes Paraprionospio pinnata, S. tantaculata, Glycinde gurjanovae and Nectoneanthes multignatha and the bivalve Theora fragilis. The second group of colonizers included the polychaetes Capitella capitata, Mesochaetopterus sp. and L. longifolia, and the bivalve Raetellops pulchella. Hypoxic and near anoxic conditions resulted in mass mortality in Chinhae Bay and Youngsan River estuarine bay, but communities did partially recover after return to normoxic conditions despite delayed recolonization.
低溶解氧(缺氧和/或无氧)已成为全球生态系统底栖生物成分变化的主要原因。我们展示了韩国沿海水域富含有机物环境中底栖生物群落对缺氧的响应。低溶解氧(DO)和有机富集引起的干扰改变了群落动态,导致夏季缺氧期间动物群落消失,冬季重新定殖延迟。随着DO的降低,在受缺氧影响的镇海湾内湾站点和荣山江河口湾,大型底栖动物的分类单元数量、丰度和生物量显著下降。随着镇海湾恢复到正常氧含量条件,机会主义物种开始重新定殖,有1-4个月的滞后。多毛类动物西格氏盘管虫、中毛翼虫属和长叶索沙蚕在缺氧条件下最为持久。第一批重新定殖者是多毛类动物羽状拟稚齿虫、西格氏盘管虫、古尔贾诺夫甘丝蚓和多齿拟节虫,以及双壳类动物脆弱瑟拉蛤。第二批定殖者包括多毛类动物小头虫、中毛翼虫属和长叶索沙蚕,以及双壳类动物美丽拟塔螺。缺氧和近无氧条件导致镇海湾和荣山江河口湾大量死亡,但尽管重新定殖延迟,恢复到正常氧含量条件后群落仍部分恢复。