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三裂叶豚草对其入侵地植物-土壤微生物反馈作用的影响 被引量:7
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作者 孙备 李建东 +2 位作者 王国骄 钟日亭 李姝 《生态环境学报》 CSCD 北大核心 2016年第7期1174-1180,共7页
三裂叶豚草(Ambrosia trifida L)是入侵我国的重要杂草,目前对其入侵地土壤微生物群落反馈对三裂叶豚草入侵的影响尚不清楚。采用土壤接种的植物-土壤反馈研究方法,通过比较研究三裂叶豚草非入侵区和入侵区土壤接种物对三裂叶豚草和非... 三裂叶豚草(Ambrosia trifida L)是入侵我国的重要杂草,目前对其入侵地土壤微生物群落反馈对三裂叶豚草入侵的影响尚不清楚。采用土壤接种的植物-土壤反馈研究方法,通过比较研究三裂叶豚草非入侵区和入侵区土壤接种物对三裂叶豚草和非入侵区由3种本地植物构成的人工群落的影响,分析三裂叶豚草对其入侵地土壤微生物反馈作用的影响,探讨三裂叶豚草入侵的土壤反馈机制。单独种植条件下,三裂叶豚草和本地植物对非入侵区和入侵区土壤接种物的响应不同(轮廓分析:F=76.18,P<0.001),非入侵区土壤接种处理本地植物的生物量较入侵区土壤接种处理高68.12%,而二者对三裂叶豚草生物量影响差异不显著,表明非入侵区土壤接种物调节了有利于本地植物生长的正反馈(Is=8.78,P=0.007)。但三裂叶豚草混种条件下,两种土壤接种处理对本地植物和三裂叶豚草生物量影响的差异均不显著,表明非入侵区土壤接种物在三裂叶豚草混种条件下对本地植物无显著的正反馈作用。无论是单独种植还是与三裂叶豚草混种种植,构成本地群落的3种植物对不同来源土壤接种物反馈作用的响应趋势均与对本地植物群落总生物量的响应趋势一致。可见,三裂叶豚草非入侵区土壤微生物群落能够调节有利于非入侵区植物生长的正反馈作用,但三裂叶豚草入侵能够削弱非入侵区土壤微生物群落对非入侵区植物的正反馈影响,从而促进自身的入侵过程。 展开更多
关键词 三裂叶豚草 本地植物群落 植物-土壤反馈 土壤微生物 生物入侵
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Increased precipitation magnifies the effects of N addition on performance of invasive plants in subtropical native communities 被引量:5
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作者 Xiang-Qin Li Sai-Chun Tang +2 位作者 Yu-Mei Pan Chun-Qiang Wei Shi-Hong Lü 《Journal of Plant Ecology》 SCIE CSCD 2022年第3期473-484,共12页
Nitrogen(N)deposition,precipitation and their interaction affect plant invasions in temperate ecosystems with limiting N and water resources,but whether and how they affect plant invasions in subtropical native commun... Nitrogen(N)deposition,precipitation and their interaction affect plant invasions in temperate ecosystems with limiting N and water resources,but whether and how they affect plant invasions in subtropical native communities with abundant N and precipitation remains unclear.We constructed in situ artificial communities with 12 common native plant species in a subtropical system and introduced four common invasive plant species and their native counterparts to these communities.We compared plant growth and establishment of introduced invasive species and native counterparts in communities exposed to ambient(CK),N addition(N+),increased precipitation(P+)and N addition plus increased precipitation(P+N+).We also investigated the density and aboveground biomass of communities under such conditions.P+alone did not enhance the performance of invasive species or native counterparts.N+enhanced only the aboveground biomass and relative density of invasive species.P+N+enhanced the growth and establishment performance of both invasive species and native counterparts.Most growth and establishment parameters of invasive species were greater than those of native counterparts under N+,P+and P+N+conditions.The density and aboveground biomass of native communities established by invasive species were significantly lower than those of native communities established by native counterparts under P+N+conditions.These results suggest that P+may magnify the effects of N+on performance of invasive species in subtropical native communities where N and water are often abundant,which may help to understand the effect of global change on plant invasion in subtropical ecosystems. 展开更多
关键词 community aboveground biomass community density growth and establishment increased precipitation invasive plants nitrogen addition subtropical native communities
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