Hyuntae Choi, Bohyung Choi, Jee-Hoon Kim, Nayeon Park, Haemin Won, Jieun Kim, Jinyoung Jung, Youngju Lee, Eun Jin Yang, Min-Seob Kim, Wonseok Yang, Yeonjung Lee, Dong Han Choi, Jae Hoon Noh, Brian N Popp, Kyung-Hoon Shin
Global warming and the resulting surface seawater stratification have led to dominance of small phytoplankton, driving substantial changes in planktonic ecosystem structure. This study investigates the composition and nitrogen sources of phytoplankton and other basal resources by analyzing the cosmopolitan copepod Calanus spp. in western North Pacific. Carbon isotope ratios of amino acids (δ13CAA) in Calanus spp. tissue revealed geographically distinct basal diets: N2-fixing organisms (19.6 ± 5.8%) and heterotrophic bacteria (30.6 ± 5.3%) in the tropical and subtropical Pacific, and dinoflagellates (54.4 ± 10.5%) in the Bering Strait and southern Chukchi Sea. The proportion of dinoflagellates in Calanus spp. diets was strongly correlated with the dietary protist contribution estimated using nitrogen isotope ratios of amino acids (δ15NAA). In addition, nitrogen sources assimilated into total eukaryotic microalgae varied regionally: biologically fixed N2 in the tropical Pacific (29.2 ± 7.9%), while nitrate was the primary source in the Pacific Arctic Ocean (91.4 ± 2.3%). By linking isotopic compositions to ecological function, this study provides insight into how regional nutrient shifts are altering planktonic food webs, with cascading consequences for marine biodiversity, biogeochemical cycling, and ecosystem resilience in a rapidly changing ocean.