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珊瑚藻-孔石藻(Porolithon onkodes)对海水温度升高与pH值降低的响应
引用本文:雷新明,江雷,张浴阳,周国伟,练健生,黄晖.珊瑚藻-孔石藻(Porolithon onkodes)对海水温度升高与pH值降低的响应[J].海洋学报(英文版),2020,39(2):132-137.
作者姓名:雷新明  江雷  张浴阳  周国伟  练健生  黄晖
作者单位:中国科学院热带海洋生物资源与生态重点实验室, 中国科学院南海海洋研究所, 广州 510301;中国科学院南海生态与环境工程创新研究院, 广州 510301,中国科学院热带海洋生物资源与生态重点实验室, 中国科学院南海海洋研究所, 广州 510301;中国科学院南海生态与环境工程创新研究院, 广州 510301,中国科学院热带海洋生物资源与生态重点实验室, 中国科学院南海海洋研究所, 广州 510301;中国科学院南海生态与环境工程创新研究院, 广州 510301,中国科学院热带海洋生物资源与生态重点实验室, 中国科学院南海海洋研究所, 广州 510301;中国科学院海南热带海洋生物实验站, 三亚 572000,中国科学院热带海洋生物资源与生态重点实验室, 中国科学院南海海洋研究所, 广州 510301;中国科学院南海生态与环境工程创新研究院, 广州 510301,中国科学院热带海洋生物资源与生态重点实验室, 中国科学院南海海洋研究所, 广州 510301;中国科学院南海生态与环境工程创新研究院, 广州 510301;中国科学院海南热带海洋生物实验站, 三亚 572000
基金项目:The National Natural Science Foundation of China (NSFC) under contract Nos 41306144 and 41676150; the National Key Research and Development Plan under contract No. 2017YFC0506301; the Strategic Priority Research Program of the Chinese Academy of Sciences under contract No. XDA13020402; the Guangdong Basic and Applied Basic Research Foundation under contract No. 2019A1515011532.
摘    要:Coralline algae(CA),a type of primary calcifying producer presented in coastal ecosystems,are considered one of the highly sensitive organisms to marine environmental change.However,experimental studies on coralline algae responses to elevated seawater temperature and reduced pH have documented either contradictory or opposite results.In this study,we analysed the growth and physiological responses of coralline algae Porolithon onkodes to the elevated temperature(30.8°C)and reduced pH(7.8).The aim of this analysis was to observe the direct and combined effects,while elucidating the growth and photosynthesis in this response.It was demonstrated that the algae thallus growth rate and photosynthesis under elevated temperature were depressed by 21.5%and 14.9%respectively.High pCO2 enhanced the growth and photosynthesis of the thallus at ambient temperature,while they were deceased when both temperature and pCO2 were elevated.CA is among the most sensitive organisms to ocean acidification(OA)because of their precipitate high Mg-calcite.We hypothesize that coralline algae could increase their calcification rate in order to counteract the effects of moderate acidification,but offset by the effect of elevated temperature.Accordingly,our results also support the conclusion that global warming(GW)is a stronger threat to algal performance than OA.Our findings are also proposed that coralline algae may be more resilient under OA than GW.

关 键 词:crustose  coralline  algae  RESPONSE  elevated  temperature  reduced  pH  EFFECTS
收稿时间:2018/9/19 0:00:00

Response of coralline algae Porolithon onkodes to elevated seawater temperature and reduced pH
Lei Xinming,Jiang Lei,Zhang Yuyang,Zhou Guowei,Lian Jiansheng and Huang Hui.Response of coralline algae Porolithon onkodes to elevated seawater temperature and reduced pH[J].Acta Oceanologica Sinica,2020,39(2):132-137.
Authors:Lei Xinming  Jiang Lei  Zhang Yuyang  Zhou Guowei  Lian Jiansheng and Huang Hui
Institution:1.CAS Key Laboratory of Tropical Marine Bio-resources and Ecology, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou 510301, China2.Innovation Academy of South China Sea Ecology and Environmental Engineering, Chinese Academy of Sciences, Guangzhou 510301, China3.CAS Tropical Marine Biological Research Station in Hainan, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Sanya 572000, China
Abstract:Coralline algae (CA), a type of primary calcifying producer presented in coastal ecosystems, are considered one of the highly sensitive organisms to marine environmental change. However, experimental studies on coralline algae responses to elevated seawater temperature and reduced pH have documented either contradictory or opposite results. In this study, we analysed the growth and physiological responses of coralline algae Porolithon onkodes to the elevated temperature (30.8°C) and reduced pH (7.8). The aim of this analysis was to observe the direct and combined effects, while elucidating the growth and photosynthesis in this response. It was demonstrated that the algae thallus growth rate and photosynthesis under elevated temperature were depressed by 21.5% and 14.9% respectively. High pCO2 enhanced the growth and photosynthesis of the thallus at ambient temperature, while they were deceased when both temperature and pCO2 were elevated. CA is among the most sensitive organisms to ocean acidification (OA) because of their precipitate high Mg-calcite. We hypothesize that coralline algae could increase their calcification rate in order to counteract the effects of moderate acidification, but offset by the effect of elevated temperature. Accordingly, our results also support the conclusion that global warming (GW) is a stronger threat to algal performance than OA. Our findings are also proposed that coralline algae may be more resilient under OA than GW.
Keywords:crustose coralline algae  response  elevated temperature  reduced pH  effects
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