帮助 关于我们

返回检索结果

荔波喀斯特森林4种木本植物水分来源的稳定同位素分析
Stable Isotope Analysis of Water Sources of Four Woody Species in the Libo Karst Forest

查看参考文献54篇

容丽 1   王世杰 2 *   俞国松 2   邓晓琪 2   冉景丞 3  
文摘 中国南方喀斯特区气候湿润,但土层浅薄,土被不连续,储水能力差,水分成为限制因子,土层下广厚基岩为植物根系生长提供了空间,形成其独特的水分机制。采用氢氧稳定同位素技术与测定植物清晨水势的方法,选取贵州南部荔波茂兰国家级自然保护区内的喀斯特原生林、次生林及因人类砍伐退化的喀斯特灌丛,分析测定其中4种常见优势木本植物小枝木质部水分及土壤水、表层岩溶带水氢氧同位素值的相关性,确定植物水分来源,并通过相关模型计算水源贡献比;探讨喀斯特森林生态系统中植物水分利用策略。结果表明:无论雨季或旱季,表层岩溶带水是喀斯特植物的稳定水源。各植被类型都主要利用土壤水,在降水减少的10月,灌木林和原生林对表层岩溶带水的用量比例提升,而次生林对土表水的用量更高。不同物种有不同的水分利用策略,常绿小乔木香叶树利用表层岩溶带水比例最高,显示其较深的根系;而落叶乔木圆果化香表现为较浅的根系和干季表土水利用比例较高的特征。
其他语种文摘 Ecosystems in the karst region of southwest China are very fragile due to thin soil layer and intensive infiltration capacity of rock fracture,which result in a very limited amount of water storage for plant uptake. Water retention in the soil zone and shallow fractured rock zone (subcutaneous) is a key factor for plant growth. Distinction of water sources taken by karst plants is a challenging task for botanists and hydrologists but is needed for ecosystem management. In this study,stable isotope analysis was used to investigate water sources for plants because of no isotopic fractionation during water uptake by terrestrial plants. We selected several dominant plant species in three forests of mostly primary forest,secondary forest and bush covers at the Maolan national nature reserve of karst ecosystem in a small catchment of Libo,south Guizhou of China. Proportions of water sources for plant uptake were determined by the δD and δ 18 O values of plant stem water,and water taken from soil layers and the subcutaneous zone. The analysis reveals that water was mainly taken from the soil layers and to less degree the subcutaneous zone as well. In October with scarce precipitation,plants in the bush and primary forest were prone to take more water from subcutaneous zone,while plants from secondary forest were prone to take more water from the upper layer of soil. Different species had different water use strategies,Lindera communis took a larger proportional water from the subcutaneous zone, suggesting deeper roots. However, Platycarya longipes extracted more percentage of water from the s upper soil water because of its shallower roots.
来源 林业科学 ,2012,48(7):14-22 【核心库】
关键词 氢氧稳定同位素 ; 木本植物 ; 水分来源 ; 表层岩溶带水
地址

1. 贵州师范大学地理与环境科学学院, 环境地球化学国家重点实验室;;水文水资源与水利工程科学国家重点实验室, 贵阳, 550001  

2. 贵州师范大学地理与环境科学学院, 贵阳, 550001  

3. 贵州茂兰国家级自然保护区管理局, 荔波县, 558400

语种 中文
ISSN 1001-7488
学科 林业
基金 国家自然科学基金面上项目 ;  贵州省自然科学基金 ;  贵州省优秀科技教育人才省长专项基金 ;  中国科学院战略性先导科技专项
文献收藏号 CSCD:4607941

参考文献 共 54 共3页

1.  何纪星. 茂兰喀斯特森林树种叶形态解剖特征研究. 喀斯特森林生态研究II,1997:33-41 CSCD被引 1    
2.  何纪星. 喀斯特森林树种的PV曲线研究. 喀斯特森林生态研究II,1997:25-32 CSCD被引 1    
3.  罗维均. 贵州喀斯特洞穴的稳定同位素地球化学特征.博士学位论文,2007 CSCD被引 1    
4.  容丽. 喀斯特低热河谷石漠化区环境梯度的小气候效应——以贵州花江峡谷区小流域为例. 生态学杂志,2006,25(9):1038-1043 CSCD被引 20    
5.  袁道先. 中国岩溶学,1994 CSCD被引 75    
6.  中国科学院地质研究所岩溶研究组. 中国岩溶研究,1987 CSCD被引 8    
7.  Allison G B. The distribution of deuterium and 18 O in dry soils. Experimental J Hydrol,1983,64(3):377-397 CSCD被引 1    
8.  Atsuko S. Importance of ermafrost as a source of water for plants in east Siberian taiga. Ecological Research,2002,17(2):493-503 CSCD被引 1    
9.  Bollard E G. Transport in the xylem. Ann Rev Plant Physiol,1960,11(1):141-166 CSCD被引 4    
10.  Benjamin T J. Carbon, water and nutrient Xux in Maya homegardens in the Yucatan peninsula of Mexico. Agroforet System,2001,53(1):103-111 CSCD被引 3    
11.  Busch D E. Water uptake in woody riparian phratophytes of the southwestern United States: a stable isotope study. Ecological Applications,1992,2(4):450-459 CSCD被引 34    
12.  Brunel J P. Field validation of isotopic procedures for determining source water used by plants in a semi-arid environment. J Hydrol,1995,167(3):351-368 CSCD被引 46    
13.  Cramer V A. Transpiration and groundwater uptake from farm forest plots of Casuarina glauca and Eucalyptus camaldulensis in saline areas of southeast Queensland, Australia. Agricultural Water Management,1999,39(2):187-204 CSCD被引 6    
14.  Dawson T E. Streamside trees that do not use stream water. Nature,1991,350(3):335-337 CSCD被引 94    
15.  Dawson T E. Seasonal water uptake and movement in root systems of Australian phraeatophytic plants of dimorphic root morphology: a stable isotope investigation. Oecologia,1996,107(1):13-20 CSCD被引 76    
16.  Dawson T E. Plants,isotopes and water use: a catchment scale perspective. Isotpe tracers in catchment hydrology,1998:165-202 CSCD被引 4    
17.  Ehleringer J R. Stable isotopes. Plant physiological ecology: Field methods and instrumentation,1989:281-300 CSCD被引 3    
18.  Ehleringer J R. Differential utilization of summer rains by desert plants, implications for competition and climate change. Oecologia,1991,88(5):430-434 CSCD被引 84    
19.  Ehleringer J R. Water uptake by plants: perspectives from stable isotope composition. Plant Cell and Environment,1992,15(6):1073-1082 CSCD被引 118    
20.  Ehleringer J R. Carbon and water relations in desert plants: an isotopic perspective. Stable isotopes and plant carbonwater relations,1993:155-172 CSCD被引 3    
引证文献 20

1 马辉英 新疆艾比湖湿地自然保护区荒漠优势种体内的水分来源 生态学报,2017,37(3):829-840
CSCD被引 20

2 朱秀勤 滇中岩溶高原滇青冈原生林植物水分利用来源的稳定同位素分析 浙江农林大学学报,2014,31(5):690-696
CSCD被引 3

显示所有20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