globalchange  > 气候变化与战略
CSCD记录号: CSCD:5682045
论文题名:
CO_2升高对枝角类群落结构影响的原位模拟
其他题名: Effects of a simulated increase in atmospheric CO_2 concentration on cladoceran zooplankton collected from Lake Taihu
作者: 魏利军1; 汤龙升2; 李胜男1; 周建1; 孔繁翔1; 史小丽1
刊名: 生态学报
ISSN: 1000-0933
出版年: 2016
卷: 36, 期:7, 页码:240-244,250
语种: 中文
中文关键词: 太湖 ; CO_2升高 ; 枝角类 ; 斜生栅藻
英文关键词: Lake Taihu ; CO_2 enrichment ; cladocera ; Scenedesmus obliquus
WOS学科分类: BIOLOGY
WOS研究方向: Life Sciences & Biomedicine - Other Topics
中文摘要: 分别于春、夏两季在太湖梅梁湾进行原位试验,设置3个CO_2浓度梯度,270、380 muL/L和750 mul/L,以斜生栅藻作为枝角类的食物,研究了CO_2浓度升高对枝角类群落结构的影响。结果表明高CO_2浓度能促进斜生栅藻生长,显著提高枝角类的食物数量;此外CO_2浓度的变化能显著改变枝角类的群落结构,高CO_2浓度有利于象鼻潘属、秀体溞属和春季溞属的生长,而不利于网纹潘属的生长。这可能是由于CO_2浓度变化改变了枝角类的食物质量,浮游藻类的C:P比值随CO_2浓度的升高而增加,从而有利于体内含磷量较低,高C:P的枝角类生长。因此枝角类的群落结构主要受食物质量的影响而与食物的数量无关。研究为预测未来气候变化对太湖浮游动物的影响提供了一些理论依据。
英文摘要: With the increase of global carbon emissions since the industrial revolution, atmospheric CO_2 levels are expected to be twice the present level by the end of this century, reaching 750 muL/L. The water carbonate chemistry of the environment may change notably because of this increase in CO_2 levels, which would in turn have a dramatic effect on aquatic ecosystems. Studies related to the impacts of atmospheric CO_2 elevation on plankton mainly focus on oceanic, rather than fresh water ecosystems. Lake Taihu is a highly eutrophic lake, and carbon limitation due to intense cyanobacterial blooms might develop,even in the presence of high concentrations of dissolved inorganic carbon. Increased atmospheric CO_2 concentrations could cause a shift in the chemical equilibrium of aquatic ecosystems. There is increasing evidence that the concentration of dissolved inorganic carbon (DIC) increases because of the uptake of CO_2 from the atmosphere, whereas the pH and CO_3~(2-) concentrations in the water decrease. This change in environmental conditions is likely to affect the physiology of phytoplankton,and has the potential to influence species composition and competition. Furthermore, elevated pCO_2 levels are expected to cause an increase in carbon-rich compounds stored within phytoplankton, and a shift in their overall elemental composition toward higher carbon to nutrient ratios. These changes in the carbon/nutrient stoichiometry of primary producers can have cascading effects on zooplankton. The effect of CO_2 enrichment on zooplankton communities in eutrophic lakes is an important topic from both scientific and lake management perspectives. Laboratory studies of both the direct and indirect effects of CO_2 are particularly suitable for determining the physiological thresholds and mechanisms of the response of plankton to rising CO_2 levels, but cannot address how zooplankton respond in their natural environment. In contrast, in situ controlled experiments are an important tool for studying the effects of water acidification on pelagic community dynamics under near-to-natural conditions. In this study, in situ simulated experiments were carried out at the Lake Taihu Ecosystem Station in the spring and summer, to explore the impacts of changes in CO_2 concentration on the community structure of Cladocera. This experiment included three treatments with CO_2 concentrations of (270 40),(380 20) and (75050) muL/L, which represent CO_2 concentrations at pre-industrial levels, the present level, and the predicted level at the end of this century. Our results showed that CO_2 enrichment could increase the biomass of Scenedesmus, and could change the community structure of Cladocera. High CO_2 levels favored the growth of Bosmina and Diaphanosoma,but were unfavorable for the growth of Ceriodaphnia. Elevated CO_2concentrations may likewise cause an increase in C:P ratios due to elevated carbon fixation, which would be beneficial to Cladoceran populations with low phosphorus contents. Thus, the cladoceran community structure was governed by food quality,rather than food quantity. The extrapolation of our results to the context of natural ecosystems indicates that rising CO_2 concentrations will intensify phytoplankton blooms in eutrophic waters. This may further enhance the productivity of these waters. Increases in phytoplankton carbon: nutrient ratios can therefore alter the structures of food webs. Our results imply that rising atmospheric CO_2 levels will have dramatic consequences for eutrophic ecosystems. Our conclusions will help predict likely changes in the plankton community in Lake Taihu due to climate change.
资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/151315
Appears in Collections:气候变化与战略

Files in This Item:

There are no files associated with this item.


作者单位: 1.中国科学院南京地理与湖泊研究所, 湖泊与环境国家重点实验室, 南京, 江苏 210008, 中国
2.南京师范大学生命科学学院, 南京, 江苏 210046, 中国

Recommended Citation:
魏利军,汤龙升,李胜男,等. CO_2升高对枝角类群落结构影响的原位模拟[J]. 生态学报,2016-01-01,36(7):240-244,250
Service
Recommend this item
Sava as my favorate item
Show this item's statistics
Export Endnote File
Google Scholar
Similar articles in Google Scholar
[魏利军]'s Articles
[汤龙升]'s Articles
[李胜男]'s Articles
百度学术
Similar articles in Baidu Scholar
[魏利军]'s Articles
[汤龙升]'s Articles
[李胜男]'s Articles
CSDL cross search
Similar articles in CSDL Cross Search
[魏利军]‘s Articles
[汤龙升]‘s Articles
[李胜男]‘s Articles
Related Copyright Policies
Null
收藏/分享
所有评论 (0)
暂无评论
 

Items in IR are protected by copyright, with all rights reserved, unless otherwise indicated.