|
[1]
|
万方浩, 郭建英, 张峰. 中国生物入侵研究[M]. 北京: 科学出版社, 2009.
|
|
[2]
|
Powell, K.I., Chase, J.M. and Knight, T.M. (2013) Invasive Plants Have Scale-Dependent Effects on Diversity by Altering Species-Area Relationships. Science, 339, 316-318. [Google Scholar] [CrossRef] [PubMed]
|
|
[3]
|
王宁, 李卫芳, 周兵, 闫小红. 2016. 中国入侵植物入侵性、克隆方式及地理起源[J]. 生物多样性, 2016, 2(1): 12-19.
|
|
[4]
|
Song, Y.B., Yu, F.H., Keser, L.H., et al. (2013) United We Stand, Divided We Fall: A Meta-Analysis of Experiments on Clonal Integration and Its Relationship to Invasiveness. Oecologia, 171, 317-327. [Google Scholar] [CrossRef] [PubMed]
|
|
[5]
|
Xi, D.G., You, W.H., Hu, A.A., et al. (2019) Developmentally Programmed Division of Labor in the Aquatic Invader Alternanthera philoxeroides under Homogeneous Soil Nutrients. Frontiers in Plant Science, 10, 485. [Google Scholar] [CrossRef] [PubMed]
|
|
[6]
|
Alpert, P., Holzapfel, C. and Slonimski, C. (2003) Differences in Performance between Genotypes of Fragaria chiloensis with Different Degrees of Resource Sharing. Journal of Ecology, 91, 27-35. [Google Scholar] [CrossRef]
|
|
[7]
|
Roiloa, S.R., Alpert, P., Tharayil, N., et al. (2007) Greater Capacity for Division of Labour in Clones of Fragaria chiloensis from Patchier Habitats. Journal of Ecology, 95, 397-405. [Google Scholar] [CrossRef]
|
|
[8]
|
Roiloa, S.R., Retuerto, R., Campoy, J.G., et al. (2016) Division of Labor Brings Greater Benefits to Clones of Carpobrotus edulis in the Non-Native Range: Evidence for Rapid Adaptive Evolution. Frontiers in Plant Science, 7, 349. [Google Scholar] [CrossRef] [PubMed]
|
|
[9]
|
王宁. 克隆整合提高了入侵植物空心莲子草对北美车前的竞争力[J]. 生态环境学报, 2010, 19(10): 2302-2306.
|
|
[10]
|
方龙香, 吕晓倩, 奚道国, 游文华, 依成武, 杜道林. 克隆整合有利于喜旱莲子草(Alternanthera philoxeroides)入侵[J]. 湖泊科学, 2017, 29(5): 1202-1208.
|
|
[11]
|
潘晓云, 耿宇鹏, 张文驹, 等. 入侵植物喜旱莲子草——生物学、生态学及管理[J]. 植物分类学报, 2007, 45(6): 884-900.
|
|
[12]
|
马瑞燕, 王韧. 喜旱莲子草在中国的入侵机理及其生物防治[J]. 应用与环境生物学报, 2005, 11(2): 246-250.
|
|
[13]
|
You, W.H., Fang, L.X., Xi, D.G., Du, D.L. and Xie, D. (2018) Difference in Capacity of Clonal Integration between Terrestrial and Aquatic Alternanthera philoxeroides in Response to Defoliation: Implications for Biological Control. Hydrobiologia, 817, 319-328. [Google Scholar] [CrossRef]
|
|
[14]
|
Wang, N., Yu, F.H., Li, P.X., et al. (2008) Clonal Integration Affects Growth, Photosynthetic Efficiency and Biomass Allocation, but Not the Competitive Ability, of the Alien Invasive Alternanthera philoxeroides under Severe Stress. Annals of Botany, 101, 671-678. [Google Scholar] [CrossRef] [PubMed]
|
|
[15]
|
You, W.H., Fan, S.F., Yu, D., et al. (2014) An Invasive Clonal Plant Benefits from Clonal Integration More than a Co-Occurring Native Plant in Nutrient-Patchy and Competitive Environments. PLoS ONE, 9, e97246. [Google Scholar] [CrossRef] [PubMed]
|
|
[16]
|
Yu, F., Wang, N., Alpert, P., et al. (2009) Physiological Integration in an Introduced, Invasive Plant Increases Its Spread into Experimental Communities and Modifies Their Structure. American Journal of Botany, 96, 1983-1989. [Google Scholar] [CrossRef] [PubMed]
|
|
[17]
|
Chase, J.M. (2000) Are There Real Differences among Aquatic and Terrestrial Food Webs? Trends in Ecology & Evolution, 15, 408-412. [Google Scholar] [CrossRef]
|
|
[18]
|
Ikegami, M., Whigham, D.F. and Werger, M.J.A. (2008) Optimal Biomass Allocation in Heterogeneous Environments in a Clonal Plant—Spatial Division of Labor. Ecological Modelling, 213, 156-164. [Google Scholar] [CrossRef]
|
|
[19]
|
Roiloa, S.R., Rodríguez-Echeverría, S., Freitas, H. and Retuerto, R. (2013) Developmentally-Programmed Division of Labour in the Clonal Invader Carpobrotus edulis. Biological Invasions, 15, 1859-1905. [Google Scholar] [CrossRef]
|
|
[20]
|
Ikegami, M., Van Hal, S., Van Rheenen, J.W.A., et al. (2008) Spatial Division of Labour of Schoenoplectus americanus. Plant Ecology, 199, 55-64. [Google Scholar] [CrossRef]
|
|
[21]
|
Herman, J.J. and Sultan, S.E. (2011) Adaptive Transgenerational Plasticity in Plants: Case Studies, Mechanisms, and Implications for Natural Populations. Frontiers in Plant Science, 2, 102. [Google Scholar] [CrossRef] [PubMed]
|
|
[22]
|
Xu, C., Zhang, W., Fu, C. and Lu, B. (2003) Genetic Diversity of Alligator Weed in China by RAPD Analysis. Biodiversity and Conservation, 12, 637-645. [Google Scholar] [CrossRef]
|
|
[23]
|
Li, J. and Ye, W.H. (2006) Genetic Diversity of Alligator Weed Ecotypes Is Not the Reason for Their Different Responses to Biological Control. Aquatic Botany, 85, 155-158. [Google Scholar] [CrossRef]
|
|
[24]
|
You, W.H., Han, C.M., Fang, L.X., et al. (2016) Propagule Pressure, Habitat Conditions and Clonal Integration Influence the Establishment and Growth of an Invasive Clonal Plant, Alternanthera philoxeroides. Frontiers in Plant Science, 7, 568. [Google Scholar] [CrossRef] [PubMed]
|