The changing nature of plant–microbe interactions during a biological invasion

被引:1
作者
Jennifer A. Lau
Tomomi Suwa
机构
[1] Michigan State University,W.K. Kellogg Biological Station and Department of Plant Biology
来源
Biological Invasions | 2016年 / 18卷
关键词
Biotic interaction; Facilitation; Plant-soil feedback; Resource mutualism; Rhizobia;
D O I
暂无
中图分类号
学科分类号
摘要
Invasive plant species can alter belowground microbial communities. Simultaneously, the composition of soil microbial communities and the abundance of key microbes can influence invasive plant success. Such reciprocal effects may cause plant–microbe interactions to change rapidly during the course of biological invasions in ways that either inhibit or promote invasive species growth. Here we use a space-for-time substitution to illustrate how effects of soil microbial communities on the exotic legume Vicia villosa vary across uninvaded sites, recently invaded sites, and sites invaded by V. villosa for over a decade. We find that soil microorganisms from invaded areas increase V. villosa growth compared to sterilized soil or live soils collected from uninvaded sites, likely because mutualistic nitrogen-fixing rhizobia are not abundant in uninvaded areas. Notably, the benefits resulting from inoculation with live soils were higher for soils from recently invaded sites compared to older invasions, potentially indicating that over longer time scales, soil microbial communities change in ways that may reduce the success of exotic species. These findings suggest that short-term changes to soil microbial communities following invasion may facilitate exotic legume growth likely because of increases in the abundance of mutualistic rhizobia, but also indicate that longer term changes to soil microbial communities may reduce the growth benefits belowground microbial communities provide to exotic species. Our results highlight the changing nature of plant–microbe interactions during biological invasions and illustrate how altered biotic interactions could contribute to both the initial success and subsequent naturalization of invasive legume species.
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页码:3527 / 3534
页数:7
相关论文
共 103 条
[1]  
Belnap J(2001)Soil biota in an ungrazed grassland: response to annual grass ( Ecol Appl 11 1261-1275
[2]  
Phillips SL(1997)) invasion J Ecol 85 561-573
[3]  
Bever JD(2010)Incorporating the soil community into plant population dynamics: the utility of the feedback approach Tree 25 468-478
[4]  
Westover KM(2012)Rooting theories of plant community ecology in microbial interactions Divers Distrib 18 962-976
[5]  
Antonovics J(1995)Mutualisms are not constraining cross-continental invasion success of Can J Bot 73 S42-S49
[6]  
Bever JD(2005) species within Australia Ecology 86 1602-1610
[7]  
Dickie IA(2000)Correlates of pathogen species richness in the grass family Am Nat 156 567-576
[8]  
Facelli E(2011)Spatial heterogeneity explains the scale dependence of the native-exotic diversity relationship Curr Biol 21 R775-R785
[9]  
Facelli JM(2010)Legume sanctions and the evolution of symbiotic cooperation by rhizobia Ecol Lett 13 803-809
[10]  
Klironomos J(2013)Life histories of symbiotic rhizobia and mycorrhizal fungi Ecol Lett 10 1277-1284