Raynaud Tiffany, Blouin Manuel, Devers-Lamrani Marion, Garmyn Dominique, Spor Aymé
Agroécologie, Institut Agro, INRAE Univ. Bourgogne, Univ. Bourgogne Franche-Comté Dijon France.
Ecol Evol. 2022 Nov 15;12(11):e9494. doi: 10.1002/ece3.9494. eCollection 2022 Nov.
Interspecific interactions play an important role in the establishment of a community phenotype. Furthermore, the evolution of a community can both occur through an independent evolution of the species composing the community and the interactions among them. In this study, we investigated how important the evolution of interspecific interactions was in the evolutionary response of eight two-bacterial species communities regarding productivity. We found evidence for an evolution of the interactions in half of the studied communities, which gave rise to a mean change of 15% in community productivity as compared to what was expected from the individual responses. Even when the interactions did not evolve themselves, they influenced the evolutionary responses of the bacterial strains within the communities, which further affected community response. We found that evolution within a community often promoted the adaptation of the bacterial strains to the abiotic environment, especially for the dominant strain in a community. Overall, this study suggested that the evolution of the interspecific interactions was frequent and that it could increase community response to evolution.
种间相互作用在群落表型的形成中起着重要作用。此外,群落的进化既可以通过组成群落的物种的独立进化,也可以通过它们之间的相互作用来实现。在本研究中,我们调查了种间相互作用的进化在八个双细菌物种群落对生产力的进化响应中有多重要。我们发现,在一半的研究群落中存在相互作用进化的证据,与个体响应预期相比,这导致群落生产力平均变化了15%。即使相互作用本身没有进化,它们也会影响群落内细菌菌株的进化响应,进而进一步影响群落响应。我们发现,群落内的进化通常会促进细菌菌株对非生物环境的适应,特别是对于群落中的优势菌株。总体而言,本研究表明种间相互作用的进化很频繁,并且它可以增加群落对进化的响应。