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- W2320041405 endingPage "1327" @default.
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- W2320041405 abstract "Abstract Understanding how mutualisms evolve in response to a changing environment will be critical for predicting the long‐term impacts of global changes, such as increased N (nitrogen) deposition. Bacterial mutualists in particular might evolve quickly, thanks to short generation times and the potential for independent evolution of plasmids through recombination and/or HGT (horizontal gene transfer). In a previous work using the legume/rhizobia mutualism, we demonstrated that long‐term nitrogen fertilization caused the evolution of less‐mutualistic rhizobia. Here, we use our 63 previously isolated rhizobium strains in comparative phylogenetic and quantitative genetic analyses to determine the degree to which variation in partner quality is attributable to phylogenetic relationships among strains versus recent genetic changes in response to N fertilization. We find evidence of distinct evolutionary relationships between chromosomal and pS ym genes, and broad similarity between pS ym genes. We also find that nifD has a unique evolutionary history that explains much of the variation in partner quality, and suggest MoFe subunit interaction sites in the evolution of less‐mutualistic rhizobia. These results provide insight into the mechanisms behind the evolutionary response of rhizobia to long‐term N fertilization, and we discuss the implications of our results for the evolution of the mutualism." @default.
- W2320041405 created "2016-06-24" @default.
- W2320041405 creator A5010142201 @default.
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- W2320041405 creator A5065366659 @default.
- W2320041405 creator A5088286062 @default.
- W2320041405 creator A5090042950 @default.
- W2320041405 date "2016-01-28" @default.
- W2320041405 modified "2023-10-14" @default.
- W2320041405 title "Decoupled genomic elements and the evolution of partner quality in nitrogen‐fixing rhizobia" @default.
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