David Blair is a Professor at James Cook University, specializing in parasitic flatworms, molecular systematics, and evolutionary biology. His research focuses on understanding the genetic diversity, phylogeography, and host-parasite interactions of species such as Schistosoma, Paragonimus, and Opisthorchis. He has contributed extensively to studies on the molecular evolution of parasitic organisms and their implications for human and wildlife health. Key research areas include: molecular taxonomy of trematodes, phylogenetic analysis of parasitic flatworms, and genomic studies of host-parasite coevolution. Collaborations span global institutions, addressing public health challenges like paragonimiasis and fasciolosis. His work integrates field studies, lab-based molecular techniques, and computational biology to unravel evolutionary dynamics and ecological adaptations. Recent studies focus on the genetic diversity of Daphnia species, dugong population genetics, and drug-resistant Mycobacterium tuberculosis. His publications in journals like *Parasitology*, *Molecular Phylogenetics and Evolution*, and *Scientific Reports* highlight interdisciplinary approaches to parasitology and conservation biology.
Dr. John Warren Huntley is an Associate Professor in the Department of Geological Sciences at the University of Missouri. His research examines the fossil record of biotic interactions including parasitism, predation, and competition, with additional focus on conservation paleobiology and morphological disparity evolution. Dr. Huntley investigates host-parasite dynamics in marine bivalves, human impacts on mollusk populations, and Phanerozoic predation patterns. His work integrates stratigraphic paleobiology with ecological and evolutionary analyses to reconstruct historical ecosystem dynamics. His recent publications demonstrate expertise in paleoparasitology, taphonomy, and conservation paleobiology, applying novel analytical methods to questions about parasite-host coevolution, preservation biases, and extinction events. This research provides critical insights into long-term ecological patterns and biological responses to environmental change. Dr. Huntley has received significant recognition including an NSF CAREER Award and Humboldt Research Fellowship, and he co-edited the comprehensive volumes 'The Evolution and Fossil Record of Parasitism'.
Dr James Herbert-Read is an Associate Professor and Whitten Lecturer in Marine Biology at the Department of Zoology, University of Cambridge. He serves as Deputy Head of Department (Postgraduate Education) and leads the Marine Behavioural Ecology Group. His research focuses on understanding how animals, particularly marine organisms, collect and process information from their environments to make behavioral decisions, with emphasis on social interactions, adaptation mechanisms, and ecological constraints. His group employs theoretical frameworks, controlled experiments, and quantitative field studies to investigate behavioral diversity in marine species. Key themes include collective behavior, predator-prey dynamics, camouflage strategies, and the impacts of environmental stressors on animal decision-making. Recent publications highlight work on lionfish vocalization mechanisms, cuttlefish camouflage, citizen science applications in marine research, and behavioral responses to visual and acoustic noise. Scientific awards and affiliations include: Whitten Lecturer in Marine Biology Associate Professor, University of Cambridge He has supervised research projects on topics such as: Social attraction in invasive fish species Evolution of coordinated movement Neurophysiological basis for leadership in shoals Maternal effects on offspring exploration
Ricardo Matano is a Professor at Oregon State University's College of Earth, Ocean, and Atmospheric Sciences (CEOAS), Department of Oceanography. His research focuses on large-scale ocean circulation, western boundary currents, ocean modeling, and geophysical fluid dynamics, with a particular emphasis on the Southern Ocean and South Atlantic dynamics. He holds a Lic. in Physical Oceanography from Universidad Nacional del Sur (1983), an MA in Geophysical Fluid Dynamics from Princeton University (1988), and a PhD in Atmospheric and Oceanic Science from Princeton (1991). Research interests include low-frequency variability of South Atlantic circulation, interocean exchanges, shelf circulation in the southwestern Atlantic, and dynamics of shelfbreak formation. Recent work explores climate change impacts on Patagonian shelf systems and larval connectivity in marine species. His studies often involve numerical modeling and satellite data analysis to understand coastal and open-ocean interactions. Recent publications (2022–2025) highlight studies on Agulhas Bank circulation, Patagonia shelf-break dynamics, and California Current poleward transports. His work contributes to understanding climate-driven variability in marine systems and informing coastal management strategies.
Dr. Markus Brinkmann is an Associate Professor in the School of Environment and Sustainability at the University of Saskatchewan, Canada, and Director of the Toxicology Centre. He holds the Centennial Enhancement Chair in Mechanistic Environmental Toxicology. His research focuses on exposure and risk assessment modeling, toxicokinetic modeling, and aquatic ecotoxicology, with an emphasis on understanding contaminant effects under realistic environmental conditions. Affiliations: Associate Professor, University of Saskatchewan Director, Toxicology Centre Member, Global Water Futures Program Member, Global Institute for Water Security Education: Ph.D. (Biology) - RWTH Aachen University, Germany (2015) M.Sc. (Ecotoxicology) - RWTH Aachen University, Germany (2011) B.Sc. (Biology) - RWTH Aachen University, Germany (2009) Research Interests: Dr. Brinkmann develops computational models to predict contaminant uptake, effects, and cross-species extrapolation. His work integrates toxicology, environmental chemistry, and hydrology to address challenges like flood-related contaminant remobilization and dioxin-like compound toxicity. Key areas include: Mechanistic toxicology of emerging contaminants (e.g., 6PPD-quinone, PFAS alternatives) Sediment toxicity and bioavailability Wastewater surveillance for public health monitoring Grant Highlights: Global Water Futures Program (2018-2023): Hydrological-exposure models for environmental risk assessment Genome Canada (2016-2020): EcoToxChip for chemical prioritization Banting Postdoctoral Fellowship (2016-2018) Awards: Friedrich-Wilhelm-Award (2016) SETAC GLB Young Scientists Award (2016 PhD, 2012 MSc) Borchers medal (2016) Leadership: He advises on strategic research partnerships between Canada and Germany and collaborates globally on projects like the EcoToxChip and Project House Water . His work bridges academic research with practical environmental management solutions.
Jeppe Lund Nielsen is a Professor in the Department of Chemistry and Life Sciences at the Faculty of Engineering and Science, Aalborg University, Denmark. His research lies at the intersection of microbial ecology, genomics, and environmental biotechnology, with a strong focus on sustainable solutions for wastewater treatment, anaerobic digestion, and environmental monitoring. His primary research interests include Microbial Ecology, Functional Ecology, Genomics, Molecular and Technical Microbiology, Anaerobic Digestion, Metagenomics, and eDNA Metabarcoding . He applies molecular tools to understand microbial community dynamics in engineered and natural systems, particularly in wastewater and marine environments. His work contributes to the UN Sustainable Development Goals related to clean water, sustainable cities, and climate action. The recent publication trends reflect a strong emphasis on environmental applications of microbiome science, including nitrogen cycling in wastewater, bioaerosol exposure in workers, eDNA-based biodiversity monitoring, and valorization of waste streams through biotechnology. His articles frequently appear in high-impact environmental and microbiological journals and demonstrate interdisciplinary collaboration across engineering, ecology, and public health. Among his notable scientific contributions are leadership roles in significant research projects such as the AAU Bubble Project (Power2Proteins), JAMBO seabed impact study, and investigations into biotechnological pesticides. He has also contributed to public discourse through media engagement on topics like pesticide regulation and environmental innovation. Professor Nielsen has supervised PhD students, including M. Eskeldsen, and is actively involved in grants and collaborative research across Europe. He is a key member of research teams focused on environmental microbiology, wastewater biotechnology, and marine impact assessments. His lab integrates molecular biology, bioinformatics, and environmental engineering to address pressing sustainability challenges.
Dr. Erica Garcia is a Senior Lecturer in Environmental Science at Charles Darwin University’s Faculty of Science and Technology, specializing in aquatic ecology. She leads research on river, wetland, and groundwater ecosystems, focusing on food web dynamics and biodiversity in changing environments. Her current projects include citizen science initiatives for groundwater security and wetland condition assessments. Dr. Garcia holds a PhD from Michigan State University (2006) and a B.A. from the University of California, Berkeley (1999). She teaches courses in ecology and resource management and collaborates on interdisciplinary projects addressing water sustainability in Northern Australia. Her research spans observational, experimental, and molecular methods to understand ecosystem processes. Education: PhD in Zoology/Ecology, Evolutionary Biology and Behavior, Michigan State University (2000–2006) Bachelor of Science in Integrative Biology, University of California, Berkeley (1995–1999) Research Interests: Dr. Garcia’s work emphasizes freshwater ecosystems, including food web interactions, groundwater ecology, and the impacts of human activities on riverine systems. She employs eDNA, isotopic analysis, and remote sensing to assess ecosystem health and biodiversity. Current projects investigate groundwater resources and citizen science approaches to environmental monitoring. Grants & Projects: Co-lead on the Northern Australian Community Groundwater Security Project (citizen science) Principal Investigator for the Adelaide River Aquatic Ecosystem Mapping project (2023–2024) Collaborator on the Water Security for Northern Australia Program (2023–2026) Labs/Teams: She is affiliated with the Research Institute for the Environment and Livelihoods at CDU and collaborates with international networks on global river ecology and climate change impacts.
Eric Roberts is a Professor of Geology and Geological Engineering and Director of the Potential Gas Agency at the Colorado School of Mines. His research focuses on basin analysis, energy exploration, and sedimentary geology with specializations in Mesozoic-Cenozoic basins of Gondwana and North America. He leads projects in U-Pb geochronology, critical minerals exploration, and paleoenvironmental reconstruction through vertebrate paleontology and stratigraphy studies. Roberts' work integrates advanced geochronological techniques with field-based analyses to address questions in paleobiology, resource exploration, and earth system dynamics. Key research themes include: Geochronology of sedimentary and volcanic deposits Paleoclimate reconstruction using paleosols Stratigraphic frameworks for dinosaur fossil records Resource potential of helium/hydrogen reserves Antarctic and African vertebrate paleontology His exploration of hominin burial practices in the Rising Star Cave System has provided critical insights into early human behavior. Roberts' interdisciplinary approach bridges geological, biological, and environmental sciences to advance understanding of Earth's history and resource management strategies.
Eric W. Schmidt is a Distinguished Professor of Medicinal Chemistry at the University of Utah, with adjunct appointments in Biological Sciences and Chemistry. His research focuses on natural products chemistry, biosynthesis, synthetic biology, and pharmaceutical applications of marine animal microbiomes. University of California, San Diego (BS, PhD) Research areas include: Biosynthesis in animals and their microbiomes Synthetic biology approaches to chemical engineering Drug design from marine natural products Metagenomic analysis of symbiotic relationships Neuroactive compound discovery Antibiotic development against resistant pathogens His lab has pioneered methods for: Biosynthetic gene cluster identification Heterologous expression in E. coli Enzymatic modification of peptides Chemical analysis of marine invertebrates Recent publications highlight discoveries in: Marine animal chemical defense mechanisms Evolution of biosynthetic pathways Antibiotic resistance profiling Ionic channel-targeting compounds Peptide macrocyclization techniques Lipid-polyketide biosynthesis continuum Email: ews1@utah.edu Honors include: Distinguished Professor recognition
Professor Awadhesh N. Jha is a Professor in Genetic Toxicology and Ecotoxicology at the School of Biological and Marine Sciences , University of Plymouth, UK. He has been a leading figure in environmental toxicology since joining the university in 1996, rising to full professorship in 2010. He leads the Environmental and Applied Biology Research Group and the Genetic Toxicology and Ecotoxicology Research Group, and served as REF UoA6 Coordinator (2014–2022). His educational background includes a PhD in Radiation Cytogenetics from Banaras Hindu University, India (1989), followed by post-doctoral work at Leiden University, Netherlands, and a role at ICI/Zeneca’s marine toxicology lab before transitioning to academia. Professor Jha’s research focuses on the genotoxic and ecotoxic impacts of environmental stressors such as radionuclides, engineered nanoparticles, PAHs, and emerging contaminants on aquatic organisms. He employs multidisciplinary and innovative methodologies, including in vitro models like fish cell spheroids (‘Virtual Fish’ project), to assess DNA damage, develop biomarkers, and reduce reliance on live animal testing. His work integrates molecular biology, chemistry, and environmental science to evaluate risks to marine ecosystems and human health. The recent research articles reflect a strong trend in marine pollution, radiation biology, and environmental risk assessment , with increasing emphasis on emerging issues like tritium release from nuclear facilities, AI-assisted landfill risk modeling, and sunscreen toxicity. His studies often involve international collaborations and real-world policy implications. Scientific Awards and Recognitions: Jim Parry Award, UKEMS (2021) Fellow of the Royal Society of Biology (FRSB, 2015) VC’s World Class Researcher Award Finalist (2010, 2012) Plymouth Pioneers Recognition UK Nominated Expert, UN WOA III (2023) Supervision and Grants: Professor Jha has supervised 26 PhD students to completion and mentored over 10 post-doctoral researchers. He has led major funded projects including TRANSAT (€5M, Horizon 2020), SPHERTOX , and TITANS , funded by EU, NERC, BBSRC, IAEA, and industry partners like AstraZeneca and Unilever. His work directly informs environmental policy and nuclear safety regulations. Laboratories and Teams: He leads the Genetic Toxicology and Ecotoxicology Research Group and is central to the Environmental and Applied Biology Research Group at Plymouth. His team collaborates internationally with institutions in France, Italy, Spain, Brazil, and India, and contributes to the South West Nuclear Hub. The lab specializes in advanced analytical methods, comet assays, and 3D cell culture models.
National and Kapodistrian University of AthensGreece
Associate Professor Nikolas Fokialakis is affiliated with the Department of Pharmacy at the National and Kapodistrian University of Athens, specifically within the Section of Pharmacognosy and Chemistry of Natural Products. His academic journey includes a PhD in Pharmacognosy, postdoctoral research at the USDA, and advanced degrees in Pharmacognosy and Pharmacy. His research focuses on natural products from plants, microorganisms, and marine organisms, with emphasis on anti-aging compounds, cosmeceuticals, and bioactive molecule discovery. Notable awards include the Arthur Neish Award (2010) and the ASP Award (2006). He holds editorial roles in international societies and has contributed to over 150 publications. His work integrates biotechnology for sustainable production of bioactive agents and explores microbial biodiversity for drug leads. Teaching responsibilities include courses in Pharmacognosy, Biotechnology, and Pharmaceutical Analysis. Education Highlights: PhD in Pharmacognosy (University of Athens, 2004) Postdoc at USDA Natural Products Lab Postgraduate Diploma in Pharmacognosy (2000) Pharmacy Degree (University of Athens, 1998) Research Interests: Isolation of bioactive small molecules from terrestrial and marine sources Anti-aging mechanisms targeting proteostasis Cosmeceutical development using microbial metabolites Phytochemical analysis of Mediterranean plants Publications Trends: Recent work emphasizes marine microbiota for anti-aging agents, pyrrolizidine alkaloid profiling, and sustainable bioengineering of microbes for industrial metabolites. Over 150 indexed articles demonstrate cross-disciplinary impact in natural products research. Awards: 2011-2019: Board Member, Society for Medicinal Plant Research ANR Research Committee (2015-2018) OECD Scholarship (2005-2006) Advising & Grants: Active in mentoring graduate students in natural products and biotechnology projects. Leads EU-funded initiatives on microbial diversity exploitation. Collaborates internationally on marine invertebrate chemistry and cosmeceutical development. Labs/Teams: Coordinates the Pharmacognosy and Natural Products Chemistry lab at University of Athens, focusing on metabolomics and bioactive compound discovery pipelines.
Curtis Suttle is a Professor in the Department of Botany at the University of British Columbia's Faculty of Science. He also holds affiliations with Earth and Ocean Sciences, Microbiology and Immunology, and the Institute for Oceans and Fisheries. His research focuses on marine virology and the ecological roles of viruses in aquatic ecosystems, particularly their impact on phytoplankton and microbial communities. Dr. Suttle received his B.Sc. and Ph.D. from UBC, was a Coastal Marine Scholar at SUNY StonyBrook (1987-88), and served as Assistant/Associate Professor at the University of Texas at Austin (1988-96) before returning to UBC. His research program investigates the biology and ecology of viruses that infect microalgae and cyanobacteria. Key areas include discerning viral effects on primary productivity, isolating novel marine viruses, developing molecular identification methods, and studying viral distribution patterns. His work has revealed that viruses can occur in seawater at concentrations exceeding 10 5 ml -1 , with cyanophage concentrations reaching 10 6 infectious units ml -1 in coastal waters. Dr. Suttle's team has developed PCR primers specific for viral DNA polymerase genes, showing these viruses belong to a single family related to herpes viruses. Recent publications show a strong focus on marine viral ecology, with particular attention to oyster microbiomes, viral taxonomy, and the role of viruses in marine ecosystems. His research spans from coastal environments to the deepest ocean trenches, examining viral diversity across environmental gradients and investigating viral impacts on carbon cycling and marine food webs. Dr. Suttle leads an active research group with several post-doctoral associates, research scientists, and graduate students. His team conducts field work at multiple locations including the Naica Mine in Mexico, Pavilion Lake in British Columbia, Saanich Inlet, and the Strait of Georgia. Current projects include collaborations with the Hakai Institute, Line P Research Cruise, and CASES (Canadian Arctic Shelf Exchange Study). His laboratory has made significant contributions to understanding viral roles in marine ecosystems, particularly through expeditions to extreme environments like the Naica crystal caves and deep ocean trenches. Ongoing research explores viral impacts on microbial community structure, carbon cycling, and ecosystem function across diverse marine habitats.
Dr. Tessa M. Hill is a Professor in the Department of Earth and Planetary Sciences at the University of California, Davis, and serves as the Associate Vice Provost for Academic Programs, Public Scholarship & Engagement. She is affiliated with the Bodega Marine Laboratory, leading the Bodega Ocean Acidification Research (BOAR) group and the Ocean Climate Lab. Her work focuses on climate change impacts, particularly ocean acidification and deoxygenation, and integrates research with policy and education initiatives. Tessa holds a B.S. in Marine Science from Eckerd College (1999) and a Ph.D. in Marine Science from UC Santa Barbara (2004). She was a UC President’s Postdoctoral Fellow at UC Davis before joining the faculty. Her research examines marine species responses to environmental changes, leveraging interdisciplinary approaches to inform management strategies. Notable projects include collaborations with shellfish farmers and K-12 educators to address ocean acidification challenges. Tessa is a Fellow of the California Academy of Sciences and the American Association for the Advancement of Science (AAAS), and serves on the West Coast Ocean Acidification and Hypoxia Panel. She advocates for inclusive academic reward systems and equitable impact metrics in science. Key Roles: Faculty member, BOAR group leader, AAAS panelist, science education advocate Research Groups: Bodega Ocean Acidification Research (BOAR), Ocean Climate Lab, Hill Biogeochemistry Lab Her outreach efforts emphasize bridging science and policy, including workshops on paleoceanography’s relevance to decision-making. Tessa’s work highlights the importance of seagrass ecosystems in mitigating coastal ocean acidification and the need for adaptive strategies in marine conservation. She also addresses microplastic pollution and its effects on shellfish health, reflecting her broad commitment to environmental science and societal impact.
University of North Carolina at Chapel HillUnited States
Manuel Kleiner is an Associate Professor in the Department of Plant and Microbial Biology at North Carolina State University. His research focuses on metabolic and physiological interactions in host-microbe systems, microbial ecology, and the application of metagenomics and high-resolution mass spectrometry to study complex microbiota-host relationships. Research Highlights: Development of metaproteomic techniques to quantify protein expression, analyze community structure via biomass contributions, and track isotope ratios to understand nutrient flow between hosts and microbiota. Creator of the "transductomics" approach to detect horizontal gene transfer via viral transduction in intestinal systems. Collaborates with researchers such as Theriot, Sartor, Sheikh, Ziegler, and Gonzalez. Recent Trends: His 2025 publications emphasize gut microbiome dynamics, maize root-microbe interactions, transplantation biology, and advancements in metaproteomic methodologies. Key themes include dietary impacts on microbiota, stable isotope probing, and synthetic microbial communities for plant and human health. Laboratory Tools: The Kleiner Lab utilizes quantitative metagenomics, high-resolution mass spectrometry, and computational modeling to dissect functional interactions in symbiotic systems across diverse environments, from marine organisms to agricultural crops.
Raymond Andersen is a Professor in the Faculty of Science at the University of British Columbia, affiliated with the Department of Earth, Ocean & Atmospheric Sciences and the Department of Chemistry . His research focuses on the isolation and structural elucidation of bioactive natural products from marine and terrestrial organisms, with applications in drug discovery and chemical ecology. He has contributed to breakthroughs in anticancer agents, antiviral compounds, and inhibitors of Mycobacterium tuberculosis. Education: B.Sc. (University of Alberta, 1969), M.Sc. (Berkeley University, 1970), Ph.D. (University of California San Diego, 1975), followed by postdoctoral training at MIT (1975-76). Awards include the Killam Research Prize (1987), Rutherford Medal in Chemistry (1988), and Fellow of the Chemical Institute of Canada. Research interests span marine invertebrate-derived metabolites, phytoplankton toxins, and plant defensive compounds. His lab investigates antitumor agents, HIV latency reversal, and novel pharmacophores for cancer and infectious diseases. Recent work includes antiviral agents targeting SARS-CoV-2 and inhibitors of androgen receptor signaling in prostate cancer. Co-developed clionamine B, an autophagy-stimulating compound effective against latent tuberculosis. Identified sintokamides as androgen receptor antagonists for prostate cancer therapy. Advanced genome-mining techniques for discovering nonribosomal peptides. Overseen numerous graduate students, including notable theses on natural product synthesis, SAR studies, and bioactivity screening. Active in collaborative drug discovery projects, with patents on androgen receptor modulators, SHIP1 activators, and antiviral agents. Labs/Teams: Leads the Andersen Research Group at UBC, focusing on marine natural products and chemical genetics. Collaborates with the Pacific Museum of Earth and Bamfield Marine Sciences Centre for field studies.