Baleen whales migrate from productive high-latitude feeding grounds to usually oligotrophic tropical and subtropical reproductive winter grounds, translocating limiting nutrients across ecosystem boundaries in their bodies. Here, we estimate the latitudinal movement of nutrients through carcasses, placentas, and urea for four species of baleen whales that exhibit clear annual migration, relying on spatial data from publicly available databases, present and past populations, and measurements of protein catabolism and other sources of nitrogen from baleen whales and other marine mammals. Migrating gray, humpback, and North Atlantic and southern right whales convey an estimated 3784 tons N yr and 46,512 tons of biomass yr to winter grounds, a flux also known as the "great whale conveyor belt"; these numbers might have been three times higher before commercial whaling. We discuss how species recovery might help restore nutrient movement by whales in global oceans and increase the resilience and adaptative capacity of recipient ecosystems.
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http://dx.doi.org/10.1038/s41467-025-56123-2 | DOI Listing |
Nat Commun
March 2025
Climate Central Inc., Princeton, NJ, USA.
Baleen whales migrate from productive high-latitude feeding grounds to usually oligotrophic tropical and subtropical reproductive winter grounds, translocating limiting nutrients across ecosystem boundaries in their bodies. Here, we estimate the latitudinal movement of nutrients through carcasses, placentas, and urea for four species of baleen whales that exhibit clear annual migration, relying on spatial data from publicly available databases, present and past populations, and measurements of protein catabolism and other sources of nitrogen from baleen whales and other marine mammals. Migrating gray, humpback, and North Atlantic and southern right whales convey an estimated 3784 tons N yr and 46,512 tons of biomass yr to winter grounds, a flux also known as the "great whale conveyor belt"; these numbers might have been three times higher before commercial whaling.
View Article and Find Full Text PDFPLoS One
February 2025
Hopkins Marine Station, Stanford University, Pacific Grove, California, United States of America.
Among tremendous biodiversity within the California Current Ecosystem (CCE) are gigantic mysticetes (baleen whales) that produce structured sequences of sound described as song. From six years of passive acoustic monitoring within the central CCE we measured seasonal and interannual variations in the occurrence of blue (Balaenoptera musculus), fin (Balaenoptera physalus), and humpback (Megaptera novaeangliae) whale song. Song detection during 11 months of the year defines its prevalence in this foraging habitat and its potential use in behavioral ecology research.
View Article and Find Full Text PDFJ Exp Biol
February 2025
Hopkins Marine Station, Oceans Department, Stanford University, 120 Ocean View Blvd, Pacific Grove, CA 93950, USA.
The most recent and largest radiation of marine filter feeders are edentulous baleen whales (Mysticeti) that use keratinized racks of fringed and matted baleen to filter zooplankton (e.g. krill) or small schooling fish (e.
View Article and Find Full Text PDFEnviron Sci Technol Lett
August 2024
University of Rhode Island Graduate School of Oceanography, Narragansett, RI 02882.
Per- and polyfluoroalkyl substances (PFAS) comprise > 10,000 synthetic compounds that are globally distributed and highly persistent but remain challenging to monitor. Here we assess the utility of baleen-an accreting, keratinaceous tissue that baleen whales use for filter-feeding-to track PFAS dynamics in marine food webs. In six species investigated, PFAS were detected in all baleen tested (n = 18 plates, 220 samples, ΣPFAS range 0.
View Article and Find Full Text PDFPLoS One
February 2025
K. Lisa Yang Center for Conservation Bioacoustics, Cornell Lab of Ornithology, Cornell University, Ithaca, New York, United States of America.
The New York Bight is an ecologically and economically important marine region along the U.S. Atlantic Coast.
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