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Increased dependence on nitrogen-fixation of a native legume in competition with an invasive plant 被引量:1
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作者 Meixu Han Haiyang Zhang +12 位作者 Mingchao Liu Jinqi Tang Xiaocheng Guo Weizheng Ren Yong Zhao Qingpei Yang Binglin Guo Qinwen Han Yulong feng zhipei feng Honghui Wu Xitian Yang Deliang Kong 《Plant Diversity》 SCIE CAS CSCD 2024年第4期510-518,共9页
Suppression of roots and/or their symbiotic microorganisms,such as mycorrhizal fungi and rhizobia,is an effective way for alien plants to outcompete native plants.However,little is known about how invasive and native ... Suppression of roots and/or their symbiotic microorganisms,such as mycorrhizal fungi and rhizobia,is an effective way for alien plants to outcompete native plants.However,little is known about how invasive and native plants interact with the quantity and activity of nutrient-acquisition agents.Here a pot experiment was conducted with monoculture and mixed plantings of an invasive plant,Xanthium strumarium,and a common native legume,Glycine max.We measured traits related to root and nodule quantity and activity and mycorrhizal colonization.Compared to the monoculture,fine root quantity(biomass,surface area)and activity(root nitrogen(N)concentration,acid phosphatase activity)of G.max decreased in mixed plantings;nodule quantity(biomass)decreased by 45%,while nodule activity in Nfixing via rhizobium increased by 106%;mycorrhizal colonization was unaffected.Contribution of N fixation to leaf N content in G.max increased in the mixed plantings,and this increase was attributed to a decrease in the rhizosphere soil N of G.max in the mixed plantings.Increased root quantity and activity,along with a higher mycorrhizal association was observed in X.strumarium in the mixed compared to monoculture.Together,the invasive plant did not directly scavenge N from nodule-fixed N,but rather depleted the rhizosphere soil N of the legume,thereby stimulating the activity of N-fixation and increasing the dependence of the native legume on this N source.The quantity-activity framework holds promise for future studies on how native legumes respond to alien plant invasions. 展开更多
关键词 Mycorrhizal strategy Nitrogen depletion Plant invasion Root nutrient acquisition strategy Symbiotic nitrogen fixation
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Multi-dimensionality in plant root traits:progress and challenges
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作者 Jiabao Zhao Binglin Guo +6 位作者 Yueshuang Hou Qingpei Yang zhipei feng Yong Zhao Xitian Yang Guoqiang Fan Deliang Kong 《Journal of Plant Ecology》 SCIE CSCD 2024年第4期1-8,共8页
Plant roots,the major agent for water and nutrient acquisition,are fundamental for plant growth,evolution and ecosystem services that human beings depend on(Bardgett et al.2014;Weigelt et al.2023).Nutrient acquisition... Plant roots,the major agent for water and nutrient acquisition,are fundamental for plant growth,evolution and ecosystem services that human beings depend on(Bardgett et al.2014;Weigelt et al.2023).Nutrient acquisition can be depicted by a wealth of traits of absorptive roots,the few terminal root branch orders with primarily developed tissues(Guo et al.2008;McCormack et al.2015). 展开更多
关键词 TRAITS PLANT ROOTS
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