Oxidative aging facilitates biological barrier penetration of polyethylene microplastics, amplifying systemic lipotoxicity in aquatic species
Oxidative aging facilitates biological barrier penetration of polyethylene microplastics, amplifying systemic lipotoxicity in aquatic species
Eutrophication drives taxonomic and functional trajectories in plastic-associated biofilms
Eutrophication drives taxonomic and functional trajectories in plastic-associated biofilms
Yue Jiang/upload/board/files/hbs_author/author_6/0047356_1.png(한국생명공학연구원, Third Institute of Oceanography, Ministry of Natural Resources)Yue Jiang / 이준
Temporal dynamics of cellular differentiation and paralytic shellfish toxin diversification in Centrodinium punctatum
Temporal dynamics of cellular differentiation and paralytic shellfish toxin diversification in Centrodinium punctatum
J. Hazard. Mater., DOI: 10.1016/j.jhazmat.2026.141612
2026-03
생명과학
한빛사논문
(한국생명공학연구원, Third Institute of Oceanography, Ministry of Natural Resources)전준범 / 오승대
Integrating metagenomics and explainable artificial intelligence for modeling of food waste treatment using full-scale anaerobic digestion
Integrating metagenomics and explainable artificial intelligence for modeling of food waste treatment using full-scale anaerobic digestion
Ancient genomes reveal an extensive kinship network and endogamy in a Three-Kingdoms period society in Korea
Ancient genomes reveal an extensive kinship network and endogamy in a Three-Kingdoms period society in Korea
Indirect ecological impacts of herbicides on soil collembolan communities through vegetation shifts
Indirect ecological impacts of herbicides on soil collembolan communities through vegetation shifts
J. Hazard. Mater., DOI: 10.1016/j.jhazmat.2026.141774
Mechanistic insights into novel triclosan target pathways in Neocaridina denticulata revealed by multi-omics integration
Mechanistic insights into novel triclosan target pathways in Neocaridina denticulata revealed by multi-omics integration
J. Hazard. Mater., DOI: 10.1016/j.jhazmat.2026.141856
2026-03
생명과학
한빛사논문
김상일/upload/board/files/hbs_author/author_7/0051797_1.png(Harvard University, 현 서울대학교)김상일
Tetraopes Milkweed Beetle Genomes Elucidate the Adaptive Basis of a Temperate Coevolutionary Radiation
Tetraopes Milkweed Beetle Genomes Elucidate the Adaptive Basis of a Temperate Coevolutionary Radiation