Effects of CO2 on marine fish:: Larvae and adults

被引:130
作者
Ishimatsu, A [1 ]
Kikkawa, T
Hayashi, M
Lee, KS
Kita, J
机构
[1] Nagasaki Univ, Marine Res Inst, Nagasaki 8512213, Japan
[2] Marine Ecol Res Inst, Cent Lab, Chiba 2995105, Japan
[3] RITE, Res Inst Innovat Technol Earth, Kyoto 6190292, Japan
关键词
physiological effects of CO2; CO2; mortality; marine fish; developmental stage; acid-base regulation; blood circulation;
D O I
10.1007/s10872-004-5765-y
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
CO2-enriched seawater was far more toxic to eggs and larvae of a marine fish, silver seabream, Pagrus major, than HCl-acidified seawater when tested at the same seawater pH. Data on the effects of acidified seawater can therefore not be used to estimate the toxicity Of CO2, as has been done in earlier studies. Ontogenetic changes in CO2 tolerance of two marine bony fishes (Pag. major and Japanese sillago, Sillago japonica) showed a similar, characteristic pattern: the cleavage and juvenile stages were most susceptible, whereas the preflexion and flexion stages were much more tolerant to CO2. Adult Japanese amberjack, Seriola quinqueradiata, and bastard halibut, Paralichthys olivaceus, died within 8 and 48 h, respectively, during exposure to seawater equilibrated with 5% CO2. Only 20% of a cartilaginous fish, starspotted smooth-hound, Mustelus manazo, died at 7% CO2 within 72 h. Arterial pH initially decreased but completely recovered within 1-24 h for Ser. quinqueradiata and Par. olivaceus at 1 and 3 % CO2, but the recovery was slower and complete only at 1 % for M. manazo. During exposure to 5% CO2, Par. ofivaceus died after arterial pH had been completely restored. Exposure to 5% CO2 rapidly depressed the cardiac output of Ser. quinqueradiata, while 1% CO2 had no effect. Both levels of ambient CO2 had no effect on blood 02 levels. We tentatively conclude that cardiac failure is important in the mechanisms by which CO2 kills fish. High CO2 levels near injection points during CO2 ocean sequestration are likely to have acute deleterious effects on both larvae and adults of marine fishes.
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页码:731 / 741
页数:11
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