Resolving marine-freshwater transitions by diatoms through a fog of gene tree discordance and hemiplasy
Roberts, W. R.; Ruck, E. C.; Downey, K. M.; Alverson, A. J.
Show abstract
Despite the obstacles facing marine colonists, most lineages of aquatic organisms have colonized and diversified in freshwaters repeatedly. These transitions can trigger rapid morphological or physiological change and, on longer timescales, lead to increased rates of speciation and extinction. Diatoms are a lineage of ancestrally marine microalgae that have diversified throughout freshwater habitats worldwide. We generated a phylogenomic dataset of genomes and transcriptomes for 59 diatom taxa to resolve freshwater transitions in one lineage, the Thalassiosirales. Although most parts of the species tree were consistently resolved with strong support, we had difficulties resolving a Paleocene radiation, which affected the placement of one freshwater lineage. This and other parts of the tree were characterized by high levels of gene tree discordance caused by incomplete lineage sorting and low phylogenetic signal. Despite differences in species trees inferred from concatenation versus summary methods and codons versus amino acids, traditional methods of ancestral state reconstruction supported six transitions into freshwaters, two of which led to subsequent species diversification. Evidence from gene trees, protein alignments, and diatom life history together suggest that habitat transitions were largely the product of homoplasy rather than hemiplasy, a condition where transitions occur on branches in gene trees not shared with the species tree. Nevertheless, we identified a small set of putatively hemiplasious genes, many of which have been associated with shifts to low salinity, indicating that hemiplasy played a small but potentially important role in freshwater adaptation. Accounting for differences in evolutionary outcomes, in which some taxa became locked into freshwaters while others were able to return to the ocean or become salinity generalists, might help further distinguish different sources of adaptive mutation in freshwater diatoms.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Convergent adaptation of true crabs (Decapoda: Brachyura) to a gradient of terrestrial environments 97%
- The Perfect Storm: Gene Tree Estimation Error, Incomplete Lineage Sorting, and Ancient Gene Flow Explain the Most Recalcitrant Ancient Angiosperm Clade, Malpighiales 96%
- Whole-genomes illuminate the drivers of gene tree discordance and the tempo of tinamou diversification (Aves: Tinamidae) 96%
Similar papers in this journal
- Major revisions in pancrustacean phylogeny with recommendations for resolving challenging nodes 97%
- Improving orthologous signal and model fit in datasets addressing the root of the animal phylogeny. 96%
- Comprehensive species sampling and sophisticated algorithmic approaches refute the monophyly of Arachnida 96%
Similar papers in this journal
- Taxonomic Uncertainty and the Anomaly Zone: Phylogenomics Disentangle a Rapid Radiation to Resolve Contentious Species (Gila robusta complex) in the Colorado River 95%
- The genomics of convergent adaptation to intertidal gravel beaches in Mediterranean clingfishes 95%
- Genome evolution and introgression in the New Zealand mud snails Potamopyrgus estuarinus and Potamopyrgus kaitunuparaoa 95%
Similar papers in this journal
- Categorical edge-based analyses of phylogenomic data reveal conflicting signals for difficult relationships in the avian tree 96%
- The biogeographic history of eelpouts and related fishes: linking phylogeny, environmental change, and patterns of dispersal in a globally distributed fish group 96%
- Comprehensive taxon sampling and vetted fossils help clarify the time tree of shorebirds (Aves, Charadriiformes) 96%
Similar papers in this journal
- A genomic assessment of the marine-speciation paradox within the toothed whale superfamily Delphinoidea 96%
- Comparative analysis of the molecular starvation response of Southern Ocean copepods 95%
- Environmental specialization and cryptic genetic divergence in two massive coral species from the Florida Keys Reef Tract 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.