冯晶红, 刘瑛, 肖衡林, 等. 三峡库区消落带典型植物光合固碳能力及影响因素[J]. 水土保持研究, 2020, 27(1): 305-311.
|
刘以珍. 赣江河岸带植被特征[D]. 南昌: 南昌大学, 2010.
|
CLERICI N, PARACCHINI M L, MAES J. Land-Cover Change Dynamics and Insights into Ecosystem Services in European Stream Riparian Zones[J]. Ecohydrology & Hydrobiology, 2014, 14(2): 107-120.
|
孙荣, 袁兴中, 刘红, 等. 三峡水库消落带植物群落组成及物种多样性[J]. 生态学杂志, 2011, 30(2): 208-214.
|
CHEN F Q, XIE Z Q. Reproductive Allocation, Seed Dispersal and Germination of Myricaria laxiflora, an Endangered Species in the Three Gorges Reservoir Area[J]. Plant Ecology, 2007, 191(1): 67-75. doi: 10.1007/s11258-006-9214-4
|
白宝伟, 王海洋, 李先源, 等. 三峡库区淹没区与自然消落区现存植被的比较[J]. 西南农业大学学报(自然科学版), 2005, 27(5): 684-687, 691. doi: 10.3969/j.issn.1673-9868.2005.05.031
|
YAN T M, YANG L Z, CAMPBELL C D. Microbial Biomass and Metabolic Quotient of Soils under Different Land Use in the Three Gorges Reservoir Area[J]. Geoderma, 2003, 115(1-2): 129-138. doi: 10.1016/S0016-7061(03)00082-X
|
刘维暐, 王杰, 王勇, 等. 三峡水库消落区不同海拔高度的植物群落多样性差异[J]. 生态学报, 2012, 32(17): 5454-5466.
|
LATSIOU A, KOUVARDA T, STEFANIDIS K, et al. Pressures and Status of the Riparian Vegetation in Greek Rivers: Overview and Preliminary Assessment[J]. Hydrology, 2021, 8(1): 55. doi: 10.3390/hydrology8010055
|
RUSSELL K N, BEAUCHAMP V B. Plant Species Diversity in Restored and Created Delmarva Bay Wetlands[J]. Wetlands, 2017, 37(6): 1119-1133. doi: 10.1007/s13157-017-0945-x
|
LU Z J, LI L F, JIANG M X, et al. Can the Soil Seed Bank Contribute to Revegetation of the Drawdown Zone in the Three Gorges Reservoir Region?[J]. Plant Ecology, 2010, 209(1): 153-165. doi: 10.1007/s11258-010-9732-y
|
YANG F, LIU W W, WANG J, et al. Riparian Vegetation's Responses to the New Hydrological Regimes from the Three Gorges Project: Clues to Revegetation in Reservoir Water-Level-Fluctuation Zone[J]. Acta Ecologica Sinica, 2012, 32(2): 89-98. doi: 10.1016/j.chnaes.2012.02.004
|
ZHENG J, ARIF M, ZHANG S L, et al. The Convergence of Species Composition along the Drawdown Zone of the Three Gorges Dam Reservoir, China: Implications for Restoration[J]. Environmental Science and Pollution Research International, 2021, 28(31): 42609-42621. doi: 10.1007/s11356-021-13774-0
|
MERRITT D, SCOTT M, POFF N, et al. Theory, Methods and Tools for Determining Environmental Flows for Riparian Vegetation: Riparian Vegetation\u2010flow Response Guilds[J]. Freshwater Biology, 2010, 55: 206-225. doi: 10.1111/j.1365-2427.2009.02206.x
|
郭二辉, 孙然好, 陈利顶. 河岸植被缓冲带主要生态服务功能研究的现状与展望[J]. 生态学杂志, 2011, 30(8): 1830-1837.
|
李丽娟, 谢婷婷, 张松林, 等. 三峡库区消落带4种适生植物根际与非根际土壤养分与酶活性特征研究[J]. 生态学报, 2020, 40(21): 7611-7620.
|
黄世友, 马立辉, 方文, 等. 三峡库区消落带植被重建与生态修复技术研究[J]. 西南林业大学学报, 2013, 33(3): 74-78, 111. doi: 10.3969/j.issn.2095-1914.2013.03.013
|
刘明辉, 谢婷婷, 李瑞, 等. 三峡库区消落带池杉-土壤碳氮磷生态化学计量特征[J]. 生态学报, 2020, 40(9): 3072-3084.
|
张志永, 程郁春, 程丽, 等. 三峡库区万州段消落带植被及土壤理化特征分析[J]. 水生态学杂志, 2016, 37(2): 24-33.
|
由永飞, 杨春华, 雷波, 等. 水位调节对三峡水库消落带植被群落特征的影响[J]. 应用与环境生物学报, 2017, 23(6): 1103-1109.
|
陈功, 李晓玲, 黄杰, 等. 三峡水库秭归段消落带植物群落特征及其与环境因子的关系[J]. 生态学报, 2022, 42(2): 688-699.
|
郭燕, 杨邵, 沈雅飞, 等. 三峡水库消落带现存植物自然分布特征与群落物种多样性研究[J]. 生态学报, 2019, 39(12): 4255-4265.
|
童笑笑, 陈春娣, 吴胜军, 等. 三峡库区澎溪河消落带植物群落分布格局及生境影响[J]. 生态学报, 2018, 38(2): 571-580.
|
LI Q. Influence of Water Level on Cynodon dactylon Population in Water-Level-Fluctuating Zone of the Three Gorges Reservoir[J]. Applied Mechanics and Materials, 2013, 295-298: 1857-1861. doi: 10.4028/www.scientific.net/AMM.295-298.1857
|
张爱英, 熊高明, 樊大勇, 等. 三峡水库运行对淹没区及消落带植物多样性的影响[J]. 生态学杂志, 2016, 35(9): 2505-2518.
|
王业春, 雷波, 张晟. 三峡库区消落带不同水位高程植被和土壤特征差异[J]. 湖泊科学, 2012, 24(2): 206-212. doi: 10.3969/j.issn.1003-5427.2012.02.006
|
ZHANG A Y, XIE Z Q. C4 Herbs Dominate the Reservoir Flood Area of the Three Gorges Reservoir[J]. Science of the Total Environment, 2021, 755: 142479. doi: 10.1016/j.scitotenv.2020.142479
|
LOMOLINO M V. Elevation Gradients of Species-Density: Historical and Prospective Views[J]. Global Ecology and Biogeography, 2001, 10(1): 3-13. doi: 10.1046/j.1466-822x.2001.00229.x
|
MA Y R, CHEN F Q, CHEN S H, et al. Effects of Reverse Seasonal Submersion on the Germination and Persistence of Soil Seed Banks in Hydro-Fluctuation Belts[J]. Ecohydrology, 2018, 11(7): e2008. doi: 10.1002/eco.2008
|
柯智溢, 王琴, 沈秋月, 等. 三峡水库忠县至秭归县段消落带植被群落特征研究[J]. 长江流域资源与环境, 2020, 29(9): 1975-1985.
|
YAO W M, LI C D, ZHAN H B, et al. Multiscale Study of Physical and Mechanical Properties of Sandstone in Three Gorges Reservoir Region Subjected to Cyclic Wetting-Drying of Yangtze River Water[J]. Rock Mechanics and Rock Engineering, 2020, 53(5): 2215-2231. doi: 10.1007/s00603-019-02037-7
|
付娟, 李晓玲, 戴泽龙, 等. 三峡库区香溪河消落带植物群落构成及物种多样性[J]. 武汉大学学报(理学版), 2015, 61(3): 285-290.
|
ESCOBEDO V M, RIOS R S, ALCAYAGA-OLIVARES Y, et al. Disturbance Reinforces Community Assembly Processes Differentially across Spatial Scales[J]. Annals of Botany, 2020, 127(2): 175-189.
|
ARIF M, ZHENG J, WOKADALA C, et al. Assessing Riparian Zone Changes under the Influence of Stress Factors in Higher-Order Streams and Tributaries: Implications for the Management of Massive Dams and Reservoirs[J]. Science of the Total Environment, 2021, 776: 146011. doi: 10.1016/j.scitotenv.2021.146011
|
张爱英, 熊高明, 樊大勇, 等. 三峡水库蓄水对长江干流河岸植物组成的影响[J]. 长江流域资源与环境, 2018, 27(1): 145-156.
|
洪明, 郭泉水, 聂必红, 等. 三峡库区消落带狗牙根种群对水陆生境变化的响应[J]. 应用生态学报, 2011, 22(11): 2829-2835.
|
李强, 丁武泉, 王书敏, 等. 三峡库区多年高水位运行对消落带狗牙根生长恢复的影响[J]. 生态学报, 2020, 40(3): 985-992.
|
王强, 袁兴中, 刘红, 等. 水淹对三峡水库消落带苍耳种子萌发的影响[J]. 湿地科学, 2011, 9(4): 328-333.
|
武帅楷. 三峡水库消落带植物群落生态学研究[D]. 重庆: 重庆大学, 2019.
|
马文超, 刘媛, 周翠, 等. 水位变化对三峡库区消落带落羽杉营养特征的影响[J]. 生态学报, 2017, 37(4): 1128-1136.
|
吕明权, 吴胜军, 陈春娣, 等. 三峡消落带生态系统研究文献计量分析[J]. 生态学报, 2015, 35(11): 3504-3518.
|
彭月, 王建力, 魏虹. 三峡库区重庆段不同土壤类型土壤侵蚀景观异质性分析[J]. 水土保持研究, 2009, 16(5): 7-12.
|
樊晶晶, 慈恩, 连茂山, 等. 三峡水库不同高程消落区水分变化对土壤有机碳的影响[J]. 西南大学学报(自然科学版), 2019, 41(5): 120-127.
|
周欣, 左小安, 赵学勇, 等. 科尔沁沙地植物群落分布与土壤特性关系的DCA、CCA及DCCA分析[J]. 生态学杂志, 2015, 34(4): 947-954.
|
刘亚琦, 刘加珍, 陈永金, 等. 孔雀河下游断流河道的环境特征及物种间关系[J]. 生态学报, 2017, 37(8): 2706-2718.
|
PIELECH R, ANIOŁ-KWIATKOWSKA J, SZCZESNIAK E. Landscape-Scale Factors Driving Plant Species Composition in Mountain Streamside and Spring Riparian Forests[J]. Forest Ecology and Management, 2015, 347: 217-227. doi: 10.1016/j.foreco.2015.03.038
|
GRIME J P, THOMPSON K, HUNT R, et al. Integrated Screening Validates Primary Axes of Specialisation in Plants[J]. Oikos, 1997, 79(2): 259. doi: 10.2307/3546011
|
罗琰, 苏德荣, 吕世海, 等. 辉河湿地河岸带植物物种多样性与土壤因子的关系[J]. 湿地科学, 2016, 14(3): 396-402.
|
付文龙. 乌江与汉江上游流域河岸带植物群落构建比较研究[D]. 武汉: 中国科学院大学(中国科学院武汉植物园), 2021.
|
张文玲, 陈凌. 三峡库区消落带观赏草植物适生研究及对土壤氮磷的富集特征分析[J]. 西南师范大学学报(自然科学版), 2021, 46(10): 45-50.
|
ZHANG Z Y, WAN C Y, ZHENG Z W, et al. Plant Community Characteristics and Their Responses to Environmental Factors in the Water Level Fluctuation Zone of the Three Gorges Reservoir in China[J]. Environmental Science and Pollution Research International, 2013, 20(10): 7080-7091. doi: 10.1007/s11356-013-1702-1
|
方精云, 沈泽昊, 崔海亭. 试论山地的生态特征及山地生态学的研究内容[J]. 生物多样性, 2004, 12(1): 10-19. doi: 10.3321/j.issn:1005-0094.2004.01.003
|