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1. Impact of putatively beneficial genomic loci on gene expression in little brown bats ( Myotis lucifugus , Le Conte, 1831) affected by white-nose syndrome.

2. The contribution of nearshore oceanography to temporal variation in larval dispersal.

3. Global patterns of nuclear and mitochondrial genetic diversity in marine fishes.

4. Bringing traits back into the equation: A roadmap to understand species redistribution.

5. FISHGLOB_data: an integrated dataset of fish biodiversity sampled with scientific bottom-trawl surveys.

6. The importance of oxygen for explaining rapid shifts in a marine fish.

7. Coral Reef Population Genomics in an Age of Global Change.

8. Marine heatwaves are not a dominant driver of change in demersal fishes.

9. Detecting parallel polygenic adaptation to novel evolutionary pressure in wild populations: a case study in Atlantic cod ( Gadus morhua ).

10. Predicting movement speed of beetles from body size and temperature.

11. The sizes of life.

12. The practice and promise of temporal genomics for measuring evolutionary responses to global change.

13. Simulation-Based Evaluation of Methods, Data Types, and Temporal Sampling Schemes for Detecting Recent Population Declines.

14. Genetic decline and recovery of a demographically rebuilt fishery species.

15. Assessing the potential for demographic restoration and assisted evolution to build climate resilience in coral reefs.

17. The role of continental shelf bathymetry in shaping marine range shifts in the face of climate change.

18. Isolation-by-distance and isolation-by-oceanography in Maroon Anemonefish ( Amphiprion biaculeatus ).

19. Unifying climate change biology across realms and taxa.

20. A stark future for ocean life.

22. Body size and food-web interactions mediate species range shifts under warming.

23. Ocean warming alters the distributional range, migratory timing, and spatial protections of an apex predator, the tiger shark (Galeocerdo cuvier).

24. Host gene expression in wildlife disease: making sense of species-level responses.

25. Disentangling tropicalization and deborealization in marine ecosystems under climate change.

26. Genomic signatures of selection in bats surviving white-nose syndrome.

28. Resource availability and heterogeneity shape the self-organisation of regular spatial patterning.

29. Evolution and connectivity influence the persistence and recovery of coral reefs under climate change in the Caribbean, Southwest Pacific, and Coral Triangle.

30. Global hotspots of coherent marine fishery catches.

31. Range edges of North American marine species are tracking temperature over decades.

32. Evolution reverses the effect of network structure on metapopulation persistence.

33. Genomic signatures of spatially divergent selection at clownfish range margins.

34. Persistence of a reef fish metapopulation via network connectivity: theory and data.

35. Quantifying dispersal variability among nearshore marine populations.

36. Genomic stability through time despite decades of exploitation in cod on both sides of the Atlantic.

37. Shape of species climate response curves affects community response to climate change.

39. Are we ready to track climate-driven shifts in marine species across international boundaries? - A global survey of scientific bottom trawl data.

40. ESTIMATING THE ECONOMIC IMPACTS OF CLIMATE CHANGE ON 16 MAJOR US FISHERIES.

41. Cold range edges of marine fishes track climate change better than warm edges.

42. Using multiple natural tags provides evidence for extensive larval dispersal across space and through time in summer flounder.

43. Climate-Driven Shifts in Marine Species Ranges: Scaling from Organisms to Communities.

45. Response to Comment on "Impacts of historical warming on marine fisheries production".

46. Greater vulnerability to warming of marine versus terrestrial ectotherms.

47. Impacts of historical warming on marine fisheries production.

49. Path-dependent institutions drive alternative stable states in conservation.

50. Genomic signatures of environmental selection despite near-panmixia in summer flounder.

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