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1. Ocean current patterns drive the worldwide colonization of eelgrass (Zostera marina).

2. Low‐Altitude UAV Imaging Accurately Quantifies Eelgrass Wasting Disease From Alaska to California

3. Predictable Changes in Eelgrass Microbiomes with Increasing Wasting Disease Prevalence across 23° Latitude in the Northeastern Pacific

4. A Pleistocene legacy structures variation in modern seagrass ecosystems

5. Disease surveillance by artificial intelligence links eelgrass wasting disease to ocean warming across latitudes

6. The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans

7. 3D genomics across the tree of life reveals condensin II as a determinant of architecture type

8. Climate drives the geography of marine consumption by changing predator communities

9. Joint effects of patch edges and habitat degradation on faunal predation risk in a widespread marine foundation species

10. Blue Carbon Storage Capacity of Temperate Eelgrass (Zostera marina) Meadows

11. Latitude, temperature, and habitat complexity predict predation pressure in eelgrass beds across the Northern Hemisphere

13. Interactive effects of predator and prey harvest on ecological resilience of rocky reefs

14. A Latitudinal Cline in the Taxonomic Structure of Eelgrass Epifaunal Communities is Associated With Plant Genetic Diversity.

17. Low-Altitude UAV Imaging Accurately Quantifies Eelgrass Wasting Disease From Alaska to California

18. Disturbance facilitates the coexistence of antagonistic ecosystem engineers in California estuaries.

20. Biotic resistance to invasion along an estuarine gradient

21. California spiny lobsters and benthic community structure in Southern California: top-down and bottom-up interactions

25. Author Correction: Ocean current patterns drive the worldwide colonization of eelgrass (Zostera marina)

26. Ocean current patterns drive the worldwide colonization of eelgrass (Zostera marina)

27. Shelter Use, Movement and Home Range of Spiny Lobsters in San Diego County

28. The skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge

29. Shelter Use, Movement, and Home Range of Spiny Lobsters in San Diego County

32. Ocean current patterns drive the worldwide colonization of eelgrass (Zostera marina)

33. Ocean currents drive the worldwide colonization of the most widespread marine plant, eelgrass (Zostera marina)

35. Form–function relationships in a marine foundation species depend on scale: a shoot to global perspective from a distributed ecological experiment

38. A Pleistocene legacy structures variation in modern seagrass ecosystems

39. The biogeography of community assembly : latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans

40. Appendix 2: from The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans

41. Supplemental tables and figures from The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans

42. Code and data used for analyses from The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans

43. Predictable Changes in Eelgrass Microbiomes with Increasing Wasting Disease Prevalence across 23° Latitude in the Northeastern Pacific

44. A Pleistocene legacy structures variation in modern seagrass ecosystems

45. Disease surveillance by artificial intelligence links eelgrass wasting disease to ocean warming across latitudes

46. The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans

47. Supplementary material from 'The biogeography of community assembly: latitude and predation drive variation in community trait distribution in a guild of epifaunal crustaceans'

48. Effects of predators on sea urchin density and habitat use in a southern California kelp forest

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