帮助 关于我们

返回检索结果

模拟增温改变川西高山草甸优势植物繁殖物候序列特征
Experimental warming changed plants' phenological sequences of two dominant species in an alpine meadow, western of Sichuan

查看参考文献36篇

张莉 1,2   王根绪 1   冉飞 1   彭阿辉 1,2   肖瑶 1,2   杨阳 1   杨燕 1 *  
文摘 以西南横断山区高山草甸优势植物种珠芽拳参(Polygonum viviparum)和银叶委陵菜(Potentilla leuconota)为研究对象,将其物候分为花芽期、开花期、凋谢期和种子成熟期4个阶段,每个阶段又分为开始、峰值和结束3个状态。采用开顶式增温箱进行模拟增温,连续增温4年后,于增温第5年的2016年生长季跟踪调查了模拟增温对珠芽拳参和银叶委陵菜的繁殖物候序列的影响,以探讨高山植物群落对气候变化的响应过程。结果显示,模拟增温后: 1)珠芽拳参各物候阶段的持续时间缩短;除凋谢阶段起始、结束期延迟外,其他状态均有不同程度的提前;各阶段的过渡期有不同程度的缩短,繁殖周期缩短; 2)银叶委陵菜各物候阶段的持续时间延长;凋谢期结束前各状态(除开花峰值外)表现为不同程度的提前;各阶段过渡期对增温的响应不一致,繁殖周期延长。结果表明:完整的繁殖物候序列能更准确地反映植物物候对气候变暖的响应;植物对环境变化的响应和应对策略存在种间差异,这种差异可能会进一步改变植物群落组成和结构。
其他语种文摘 Aims We studied phenological sequences of two dominant plants (Polygonum viviparum and Potentilla leuconota) in an alpine meadow of the Hengduan Mt., western of Sichuan to explore the alpine plants responses on climate change. Methods Open-top chambers (OTCs) chosen by ITEX were used to monitor the warming in the field. After a four-year experimental warming, in the 5th growing season we recorded the phenological sequences of two dominant species, focusing on plant responses on warming. The sequence was divided into four stages: budding, flowering, withering and ripe seeds. Each stage had three events: first, peak, and last. Important findings Our results showed that: 1) For P. viviparum, experimental warming elicited a shortening of the duration of each stage, advanced all of the phenological events but the first of withering and ripe seeds, shortened the period of each stage and reduced the duration of entire reproduction. 2) For P. leuconota, experimental warming extended the duration of every stage. All phenological events before the end of withering occurred earlier on experimental warming but the peak of flowering. The period of each stage had inconsistent responses on warming and warming prolonged the duration of entire reproduction. The present results indicated that not all phenological events were equally responsive to experimental warming and an entire sequence could be a more accurate way to evaluate the responses on environmental variation. Therefore, the plastic responses to warming of different species would have effects on community composition and structure.
来源 植物生态学报 ,2018,42(1):20-27 【核心库】
DOI 10.17521/cjpe.2017.0133
关键词 高山草甸 ; 气候变化 ; 开顶式增温箱 ; 珠芽拳参 ; 银叶委陵菜 ; 繁殖物候
地址

1. 中国科学院水利部成都山地灾害与环境研究所, 成都, 610041  

2. 中国科学院大学, 北京, 100049

语种 中文
文献类型 研究性论文
ISSN 1005-264X
学科 畜牧、动物医学、狩猎、蚕、蜂
基金 中国科学院前沿科学重点研究计划 ;  国家重点研发计划 ;  国家自然科学基金
文献收藏号 CSCD:6208844

参考文献 共 36 共2页

1.  Amano T. A 250-year index of first flowering dates and its response to temperature changes. Proceedings of the Royal Society of London B: Biological Sciences,2010,277:2451-2457 被引 6    
2.  Arft A. Responses of tundra plants to experimental warming: Meta-analysis of the international tundra experiment. Ecological Monographs,1999,69:491-511 被引 1    
3.  Badeck F W. Responses of spring phenology to climate change. New Phytologist,2004,162:295-309 被引 70    
4.  Beaubien E. Spring phenology trends in Alberta, Canada: Links to ocean temperature. International Journal of Biometeorology,2000,44:53-59 被引 44    
5.  CaraDonna P J. Shifts in flowering phenology reshape a subalpine plant community. Proceedings of the National Academy of Sciences of the United States of America,2014,111:4916-4921 被引 14    
6.  Cleland E E. Diverse responses of phenology to global changes in a grassland ecosystem. Proceedings of the National Academy of Sciences of the United States of America,2006,103:13740-13744 被引 67    
7.  丁一汇. 近百年中国气候变化科学问题的新认识. 科学通报,2015,61:1029-1041 被引 1    
8.  Dorji T. Plant functional traits mediate reproductive phenology and success in response to experimental warming and snow addition in Tibet. Global Change Biology,2013,19:459-472 被引 45    
9.  Dudgeon S R. Coexistence of similar species in a space-limited intertidal zone. Ecological Monographs,1999,69:331-352 被引 2    
10.  Forrest J. Toward a synthetic understanding of the role of phenology in ecology and evolution. The Royal Society,2010,365:3101-3112 被引 16    
11.  Gugger S. Lower plasticity exhibited by high-versus mid-elevation species in their phenological responses to manipulated temperature and drought. Annals of Botany,2015,116:953-962 被引 7    
12.  Hollister R D. Plant response to temperature in northern Alaska: Implications for predicting vegetation change. Ecology,2005,86:1562-1570 被引 2    
13.  Iler A M. Nonlinear flowering responses to climate: Are species approaching their limits of phenological change?. Philosophical Transactions of the Royal Society of London B: Biological Sciences,2013,368:20120489 被引 6    
14.  Inouye D W. Effects of climate change on phenology, frost damage, and floral abundance of montane wildflowers. Ecology,2008,89:353-362 被引 28    
15.  IPCC (Intergovernmental Panel on Climate Change). Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on climate change. Climate Change in 2013: The Physical Science Basis,2013 被引 6    
16.  Jonasson S. In situ mineralization of nitrogen and phosphorus of arctic soils after perturbations simulating climate change. Oecologia,1993,95:179-186 被引 10    
17.  Klein J A. Experimental warming causes large and rapid species loss, dampened by simulated grazing, on the Tibetan Plateau. Ecology Letters,2004,7:1170-1179 被引 129    
18.  李宗省. 我国横断山区1960-2008年气温和降水时空变化特征. 地理学报,2010,65:563-579 被引 96    
19.  Liu Y Z. Shifting phenology and abundance under experimental warming alters trophic relationships and plant reproductive capacity. Ecology,2011,92:1201-1207 被引 8    
20.  Memmott J. Global warming and the disruption of plant-pollinator interactions. Ecology Letters,2007,10:710-717 被引 34    
引证文献 7

1 杨元合 全球变化背景下的高寒生态过程 植物生态学报,2018,42(1):1-5
被引 17

2 张相锋 基于OTCs模拟增温方式探讨气候变暖对青藏高原草地生态系统的影响 广西植物,2018,38(12):1675-1684
被引 3

显示所有7篇文献

论文科学数据集
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号