[1]万方浩,郑小波,郭建英. 重要农林外来入侵物种的生物学与控制[M]. 北京:科学出版社,2005.
[2]张国良,曹坳程,付卫东. 农业重大外来入侵生物应急防控技术指南[M]. 北京:科学出版社,2010.
[3]中华人民共和国生态环境部自然生态保护司. 关于发布中国第一批外来入侵物种名单的通知[EB/OL]. (2003-01-10)[2020-09-09]. http://www.mee.gov.cn/gkml/zj/wj/200910/t20091022_172155.htm.
[4]中华人民共和国生态环境部自然生态保护司. 关于发布中国第二批外来入侵物种名单的通知[EB/OL]. (2010-01-07)[2020-09-09]. http://www.mee.gov.cn/gkml/hbb/bwj/201001/t20100126_184831.htm.
[5]中华人民共和国生态环境部自然生态保护司. 关于发布中国外来入侵物种名单(第三批)的公告[EB/OL]. (2017-08-28)[2020-09-09]. http://sts.mee.gov.cn/swaq/lygz/201708/t20170828_420477.shtml.
[6]中华人民共和国生态环境部自然生态保护司. 关于发布《中国自然生态系统外来入侵物种名单(第四批)》的公告[EB/OL]. (2017-08-28)[2020-09-09]. http://sts.mee.gov.cn/swaq/lygz/201708/t20170828_420478.shtml.
[7]Song M Y,Yu L,Jiang Y L,et al. Increasing soil age drives shifts in plant-plant interactions from positive to negative and affects primary succession dynamics in a subalpine glacier forefield[J]. Geoderma,2019,353:435-448.
[8]Uyà M,Bulleri F,Wright J T,et al. Facilitation of an invader by a native habitat-former increases along interacting gradients of environmental stress[J]. Ecology,2020,101(4):e02961.
[9]Callaway R M. Positive interactions among plants[J]. The Botanical Review,1995,61(4):306-349.
[10]Stachowicz J J. Mutualism,facilitation,and the structure of ecological communities [J]. Bioscience,2001,51(3):235-246.
[11]Romero G Q,Gonalves-Souza T,Vieira C,et al. Ecosystem engineering effects on species diversity across ecosystems:a meta-analysis[J]. Biological Reviews of the Cambridge Philosophical Society,2015,90(3):877-890.
[12]Sotomayor D A,Lortie C J,Lamarque L J. Nurse-plant effects on the seed biology and germination of desert annuals [J]. Austral Ecology,2014,39:786-794.
[13]Kuebbing S E,Nuez M A. Negative,neutral,and positive interactions among nonnative plants:patterns,processes,and management implications[J]. Global Change Biology,2015,21(2):926-934.
[14]Weber M G,Agrawal A A. Defense mutualisms enhance plant diversification [J]. Proceedings of the National Academy of Sciences of the United States of America,2014,111(46):16442-16447.
[15]Bruno J F,Stachowicz J J,Bertness M D. Inclusion of facilitation into ecological theory[J]. Trends in Ecology & Evolution,2003,18(3):119-125.
[16]Brathen K A,Ravolainen V T. Niche construction by growth forms is as strong a predictor of species diversity as environmental gradients [J]. Journal of Ecology,2015,103(3):701-713.
[17]Krumins J A,Goodey N M,Gallagher F. Plant-soil interactions in metal contaminated soils[J]. Soil Biology and Biochemistry,2015,80:224-231.
[18]Soliveres S,Smit C,Maestre F T. Moving forward on facilitation research:response to changing environments and effects on the diversity,functioning and evolution of plant communities [J]. Biological Reviews of the Cambridge Philosophical Society,2015,90(1):297-313.
[19]Richardson D M,Allsopp N,DAntonio C M,et al. Plant invasions-the role of mutualisms[J]. Biological Reviews of the Cambridge Philosophical Society,2000,75(1):65-93.
[20]Flombaum P,Sala O E,Rastetter E B. Interactions among resource partitioning,sampling effect,and facilitation on the biodiversity effect:a modeling approach[J]. Oecologia,2014,174(2):559-566.
[21]Granda E,Escudero A,Valladares F. More than just drought:complexity of recruitment patterns in Mediterranean forests[J]. Oecologia,2014,176(4):997-1007.
[22]Fleming J P,Dibble E D. Ecological mechanisms of invasion success in aquatic macrophytes[J]. Hydrobiologia,2015,746(1):23-37.
[23]Bulleri F,Xiao S,Maggi E,et al. Intensity and temporal variability as components of stress gradients:implications for the balance between competition and facilitation [J]. Oikos,2014,123(1):47-55.
[24]Traveset A,Richardson D M. Mutualistic interactions and biological invasions [J]. Annual Review of Ecology,Evolution,and Systematics,2014,45(1):89-113.
[25]Monge J A,Gornish E S. Positive species interactions as drivers of vegetation change on a barrier Island [J]. Journal of Coastal Research,2015,31(1):17-24.
[26]MacDougall A S,Gilbert B,Levine J M. Plant invasions and the niche [J]. Journal of Ecology,2009,97(4):609-615.
[27]Jiménez-Valverde A,Peterson A T,Soberón J,et al. Use of niche models in invasive species risk assessments[J]. Biological Invasions,2011,13(12):2785-2797.
[28]Barabás G,Pásztor L,Meszéna G,et al. Sensitivity analysis of coexistence in ecological communities:theory and application[J]. Ecology Letters,2014,17(12):1479-1494.
[29]Weber E,Li B. Plant invasions in China:what is to be expected in the wake of economic development? [J]. Bioscience,2008,58(5):437-444.
[30]de Schryver P,Vadstein O. Ecological theory as a foundation to control pathogenic invasion in aquaculture[J]. The ISME Journal,2014,8(12):2360-2368.
[31]Svenning J C,Gravel D,Holt R D,et al. The influence of interspecific interactions on species range expansion rates[J]. Ecography,2014,37(12):1198-1209.
[32]Mullah C J,Klanderud K,Totland O,et al. Community invasibility and invasion by non-native Fraxinus pennsylvanica trees in a degraded tropical forest[J]. Biological Invasions,2014,16(12):2747-2755.
[33]Schb C,Callaway R M,Anthelme F,et al. The context dependence of beneficiary feedback effects on benefactors in plant facilitation[J]. The New Phytologist,2014,204(2):386-396.
[34]Martorell C,Freckleton R P. Testing the roles of competition,facilitation and stochasticity on community structure in a species-rich assemblage [J]. Journal of Ecology,2014,102(1):74-85.
[35]Michalet R,Maalouf J P,Choler P,et al. Competition,facilitation and environmental severity shape the relationship between local and regional species richness in plant communities [J]. Ecography,2014,38(4):335-345.
[36]Mora C,Danovaro R,Loreau M. Alternative hypotheses to explain why biodiversity-ecosystem functioning relationships are concave-up in some natural ecosystems but concave-down in manipulative experiments[J]. Scientific Reports,2014,4:5427.
[1]王明娜,戴志聪,祁珊珊,等.外来植物入侵机制主要假说及其研究进展[J].江苏农业科学,2014,42(12):378.
Wang Mingna,et al.Hypothesis and research progress of exotic plants invasion mechanisms[J].Jiangsu Agricultural Sciences,2014,42(1):378.