Proceedings of the National Academy of Sciences · 2013 · 383 citations · 68 references
Although applied over extremely short timescales, artificial selection has dramatically altered the form, physiology, and life history of cultivated plants. We have used RNAseq to define both gene sequence and expression divergence between cultivated tomato and five related wild species. Based on sequence differences, we detect footprints of positive selection in over 50 genes. We also document thousands of shifts in gene-expression level, many of which resulted from changes in selection pressure. These rapidly evolving genes are commonly associated with environmental response and stress tolerance. The importance of environmental inputs during evolution of gene expression is further highlighted by large-scale alteration of the light response coexpression network between wild and cultivated accessions. Human manipulation of the genome has heavily impacted the tomato transcriptome through directed admixture and by indirectly favoring nonsynonymous over synonymous substitutions. Taken together, our results shed light on the pervasive effects artificial and natural selection have had on the transcriptomes of tomato and its wild relatives.
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R: A Language and Environment for Statistical Computing
R Core Team · 2000 · 352.8K citations · Full text
The tomato genome sequence provides insights into fleshy fruit evolution
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Jan Lisec, Nicolas Schauer, Joachim Kopka et al. · Nature Protocols · 2006 · 2.1K citations