Tétard-Jones Catherine, Kertesz Michael A, Gallois Patrick, Preziosi Richard F
Faculty of Life Sciences, University of Manchester, Oxford Road, Manchester M13 9PT, United Kingdom.
Am Nat. 2007 Sep;170(3):492-9. doi: 10.1086/520115. Epub 2007 Jul 20.
Community genetics examines how genotypic variation within a species influences the associated ecological community. The inclusion of additional environmental and genotypic factors is a natural extension of the current community genetics framework. However, the extent to which the presence of and genetic variation in associated species influences interspecific interactions (i.e., genotype x genotype x environment [G x G x E] interactions) has been largely ignored. We used a community genetics approach to study the interaction of barley and aphids in the absence and presence of rhizosphere bacteria. We designed a matrix of aphid genotype and barley genotype combinations and found a significant G x G x E interaction, indicating that the barley-aphid interaction is dependent on the genotypes of the interacting species as well as the biotic environment. We discuss the consequences of the strong G x G x E interaction found in our study in relation to its impact on the study of species interactions in a community context.
群落遗传学研究一个物种内的基因型变异如何影响相关的生态群落。纳入额外的环境和基因型因素是当前群落遗传学框架的自然延伸。然而,相关物种的存在及其遗传变异在多大程度上影响种间相互作用(即基因型×基因型×环境[G×G×E]相互作用)在很大程度上被忽视了。我们采用群落遗传学方法研究了在根际细菌存在和不存在的情况下大麦与蚜虫的相互作用。我们设计了一个蚜虫基因型和大麦基因型组合的矩阵,发现了显著的G×G×E相互作用,表明大麦-蚜虫相互作用取决于相互作用物种的基因型以及生物环境。我们讨论了在我们的研究中发现的强烈G×G×E相互作用对群落背景下物种相互作用研究的影响及其后果。