Frank Corsetti is a Professor of Earth Sciences at the University of Southern California (USC), leading the Corsetti Lab. His research focuses on the co-evolution of Earth and its biosphere, particularly during extreme events like the 'Snowball Earth' glaciation and mass extinctions. He holds a Ph.D. in Geological Sciences from UC Santa Barbara (1998) and a B.S. in Geology from UC Davis (1989). Research Interests: Corsetti studies geobiological processes such as stromatolite formation, microbial carbonate systems, and the environmental impacts of mass extinctions. His lab investigates biosignatures, diagenetic processes, and astrobiological applications. Current projects include the end-Triassic mass extinction and microbial interactions in extreme environments. Advising & Grants: He mentors a team of PhD students (including Reena Joubert, Alison Cribb, and others) and has secured funding from NASA for projects like stromatolite carbonate formation studies. His work bridges paleontology, geochemistry, and microbiology, contributing to understanding Earth’s long-term climate and life history. Labs/Teams: The Corsetti Lab at USC explores stromatolites, microbial mats, and ancient Earth systems. Collaborations involve institutions like JPL and international universities.
Britney Schmidt is Associate Professor in Earth and Atmospheric Sciences and Astronomy at Cornell University, where she leads the Planetary Habitability and Technology Lab. She develops robotic tools like the Icefin underwater vehicle to study Earth's ice shelves and glaciers, providing insights into climate change and analogs for ocean worlds like Europa. Her research bridges glaciology, planetary science, and astrobiology. Research focuses on ocean world habitability, ice-ocean interactions, and Antarctic climate systems. Fieldwork includes extensive campaigns in Antarctica and the Arctic using robotic explorers. Recent publications explore Europa's habitability, Thwaites Glacier dynamics, microbial communities in hypersaline environments, and planetary analog studies. Technical developments include novel instrumentation for under-ice exploration. Awarded the 2024 Blavatnik National Award for groundbreaking research. Leads multiple international collaborations including NASA's Europa Clipper mission and Thwaites Glacier projects.
Jonathan Conway is an Assistant Professor in the Department of Chemical and Biological Engineering at Princeton University and an associated faculty member of the High Meadows Environmental Institute (HMEI). He leads the Conway Lab, which focuses on engineering plant-microbe interactions for applications in bioagriculture, bioenergy, and biochemical industries. Education: B.S. Chemical Engineering, University of Notre Dame (2011) M.S. Chemical Engineering, North Carolina State University (2013) Ph.D. Chemical Engineering, North Carolina State University (2017) Postdoctoral Fellow, University of North Carolina Chapel Hill & Howard Hughes Medical Institute (2017-2021) Research Interests: The Conway Lab develops genetic engineering approaches for non-model bacteria at plant-microbe interfaces. Key research areas include: chemical signaling between plants and microbes, microbiome impacts on plant immunity, environmental stress responses in agricultural systems, and enzymatic degradation of lignocellulosic biomass using thermophilic bacteria. The lab employs bacterial genetics, systems biology, and biomolecular engineering to create technologies for sustainable bioindustries. Publication Trends: Recent work demonstrates strong emphasis on molecular mechanisms of plant-microbe communication (2020-2024), enzyme characterization in biomass degradation (2024-2025), and development of synthetic microbial communities for climate resilience (2024). Earlier research focused on extremophile enzymology and metabolic engineering (2012-2019). Student Advising: Currently mentors 4 graduate students and 8 undergraduates. Alumni include 9 former advisees who graduated between 2022-2024. The lab actively recruits students through Princeton's Chemical Engineering graduate program and undergraduate research initiatives. Laboratory: The Conway Lab develops microfluidic systems for root microbiome studies and genetic tools for engineering plant-associated bacteria. Current projects include designing thermophilic microbial consortia for consolidated bioprocessing and characterizing bacterial immune evasion strategies.
Prof. dr. Tessa Quax is an Associate Professor at the Faculty of Science and Engineering, University of Groningen, leading research in Molecular Microbiology . Her work focuses on archaeal virology and virus-host interactions, supported by prestigious grants including an ERC Starting Grant (2022) and NWO Vidi Grant (2023). Key Research Areas: Archaeal virus entry/egress mechanisms Cell surface dynamics and motility Extreme environment microbiology Genetic tool development for archaea Recent publications in Nature Reviews Microbiology (2025) and Current Opinion in Microbiology (2024) highlight her work on viral host recognition and structural diversity. Her lab's 44 research outputs span archaeal cell biology, viral evolution, and ecological impacts of virus-induced lysis. Scientific Recognition: KNAW Beijerinck Premium (2022) KNAW Early Career Award (2021) Hector Research Career Development Award (2021) ERC Starting Grant (2022) As Chair of the International Society for Viruses of Microbes SAB and Speaker of the German Microbiology Society's Microbial Viruses group, she coordinates global research networks including a HFSP grant (2023) with Japan/Australia/USA collaborators. Her lab currently includes PhD candidate Zaloa Aguirre Sourrouille and multiple postdoctoral researchers.
John Stolz is Professor of Environmental Microbiology and Director of Environmental and Energy Engineering at Duquesne University's School of Science and Engineering. His NASA-trained research examines microbial metal reduction, modern stromatolite ecosystems, and shale gas extraction impacts. His lab investigates arsenic/selenium biotransformation pathways, microbial communities in Shark Bay stromatolites, and environmental impacts of unconventional energy development. Recognized with multiple excellence awards including the Nobel J. Dick Endowed Chair. Over 150 publications explore microbial respiration mechanisms, biogeochemical cycling, and environmental bioremediation. Current grants support water quality testing near shale gas operations.
Prof. Michael Sander is a Lecturer at ETH Zurich's Department of Environmental Systems Science, specializing in environmental organic chemistry and polymer biodegradation. His research focuses on understanding the environmental fate of synthetic polymers, soil organic matter dynamics, and microplastic contamination. He teaches courses such as 'Introduction to Environmental Organic Chemistry' and contributes to interdisciplinary studies on sustainable materials and climate change impacts. Key research areas include polymer degradation mechanisms, redox properties of peat, and the design of biodegradable agricultural materials. His work integrates analytical chemistry, biogeochemistry, and environmental engineering to address global challenges like plastic pollution and soil health. He has published extensively on topics such as microplastic analysis in soils, biodegradation pathways of polyesters, and the redox cycling of peat organic matter. Collaborative projects involve developing sustainable polymer alternatives and assessing their environmental compatibility. Sander's research emphasizes practical solutions for reducing plastic waste and enhancing soil resilience.
David Finkelstein is an Associate Professor in the Department of Geosciences at Hobart and William Smith Colleges, where he has been a faculty member since 2013. He earned his Ph.D. from the University of Illinois at Urbana-Champaign and holds advanced degrees from the University of Massachusetts, Amherst. His academic affiliations include prior roles as a Research Assistant Professor and Lab Manager at the University of Massachusetts and as an Assistant Professor at the University of Tennessee. Ph.D., University of Illinois at Urbana-Champaign M.S., University of Massachusetts, Amherst B.S., University of Massachusetts, Amherst Dr. Finkelstein's research centers on limnogeology and biogeochemistry , with a focus on the chemical evolution of lake systems, stable isotope geochemistry, and microbial life in extreme environments. His work integrates aqueous geochemistry, organic molecular analysis, and microbiological methods to reconstruct paleoenvironments and climate change across geological timescales, including the Holocene, Pleistocene, Cretaceous, and Triassic periods. He has extensively studied lake sediments, wildfires, and the environmental impacts of the 2010 Gulf of Mexico oil spill. His recent publications show a strong trend in using biogeochemical proxies and isotopic signatures to understand past climate variability, human-environment interactions, and extreme environmental conditions. His research often involves multidisciplinary collaborations and field-based studies in diverse regions such as Russia, Iran, and Central America. Dr. Finkelstein is actively involved in scientific communities, with affiliations including: International Association of Limnogeology American Geophysical Union Geological Society of America Geochemical Society SEPM (Society for Sedimentary Geology) He has advised numerous research projects and mentored students in geoscience, though specific names are not listed. His teaching includes courses such as Stable Isotope Geochemistry, Limnology, and Environmental Geochemistry, reflecting his expertise in both theoretical and applied aspects of earth sciences. Dr. Finkelstein has not received any explicitly listed scientific awards in the provided text, but his publication record in high-impact journals demonstrates significant scholarly contributions. He does not appear to lead a named laboratory or research center, but his work is deeply embedded in field and laboratory-based geochemical analysis.
Leibniz Institute of Freshwater Ecology and Inland FisheriesGermany
Jens Krause is a Professor and Head of Department at the Leibniz Institute of Freshwater Ecology and Inland Fisheries (IGB) in Berlin, leading the Research Group on Mechanisms and Functions of Group-Living. He holds a full professorship in Fish Ecology at Humboldt-Universität zu Berlin, Faculty of Life Sciences, Thaer-Institute, and since 2018 has been an Adjunct Professor at Technical University Berlin within the Excellence Cluster 'Science of Intelligence'. His research is centered on collective intelligence, social networks, decision-making, and behavioural ecology in fish and other animals. Full Professor in Fish Ecology, Humboldt-Universität zu Berlin Adjunct Professor at Technical University Berlin (since 2018) Head of Department, IGB Berlin PhD, University of Cambridge Diploma, Free University Berlin His work integrates experimental biology, network analysis, and biomimetic robotics to understand how animals make collective decisions. His expertise spans animal behaviour, evolution, and ecological physiology, with a strong focus on group-living dynamics. Recent research explores group hunting, predator evasion, social foraging, and the impact of environmental stressors on collective behaviour. The analysis of his recent publications reveals a strong trend in understanding collective behaviour in fish, including escape waves, social foraging, group hunting in marlins and sailfish, and the use of robotic agents to study social integration. His interdisciplinary approach combines marine biology, physics, robotics, and data science to uncover the mechanisms behind collective intelligence in both animal and human systems. Editorial Board, Behavioral Ecology Editorial Board, Fish and Fisheries Executive Board, Excellence Cluster 'Science of Intelligence' Advisory Board, Bimini Biological Field Station Foundation He advises numerous PhD students and postdoctoral researchers, and leads major research projects, including 'Developing exploration behaviour' funded by the Excellence Cluster. His work has been supported by extensive collaborations across Europe and North America, and he frequently publishes in top-tier journals such as Nature , Science Advances , Proceedings of the Royal Society , and Current Biology . His lab employs cutting-edge methods including automated tracking, social network analysis, and interactive robotics to study animal groups. His research group, 'Mechanisms and Functions of Group-Living', is embedded within the Excellence Cluster 'Science of Intelligence', where they investigate collective cognition, social information use, and the role of individual differences in group performance. The team combines field studies with laboratory experiments and computational modelling to understand the evolution and function of collective behaviour across species.
Professor Martin Van Kranendonk is the Head of School at the School of Earth and Planetary Sciences (EPS), part of Curtin University's Faculty of Science and Engineering. He holds a portfolio role in the Office of the Provost. His research focuses on early Earth history, astrobiology, and the geological processes that shaped microbial life. He leads investigations into ancient stromatolites, hydrothermal systems, and the environmental conditions conducive to life’s origins. Van Kranendonk’s work spans over four decades, with a strong emphasis on the Pilbara Craton and other Archaean-Proterozoic terrains. His studies integrate geochemistry, sedimentology, and geobiology to unravel the co-evolution of life and Earth’s systems. He collaborates globally, contributing to Mars sample return mission planning and astrobiological studies of extraterrestrial environments. Key research themes include: 1) Early Earth geochemical and tectonic evolution; 2) Microbial biosignatures in ancient rocks; 3) Hydrothermal systems as life’s incubators; and 4) Planetary habitability. His publications emphasize interdisciplinary approaches, linking field geology with cutting-edge analytical techniques. Recent articles highlight advancements in understanding prebiotic chemistry, mantle evolution, and microbial adaptation in extreme environments. While no awards are explicitly listed, his contributions have significantly impacted astrobiology and Archaean geology. He oversees research teams and advises projects at Curtin’s EPS, fostering collaborations across disciplines. Van Kranendonk’s work has implications for both Earth science and planetary exploration, bridging the gap between ancient terrestrial records and future space missions.
Professor Riikka Rinnan (University of Copenhagen) is a leading expert in ecosystem-atmosphere interactions, focusing on volatile organic compounds (VOCs) in Arctic environments. Her groundbreaking discovery of VOCs in permafrost has advanced climate prediction models, revealing complex interactions between climate warming, insect herbivory, microbial activity, and vegetation shifts. Current position: Professor, Department of Biology, University of Copenhagen Major research themes: Permafrost VOCs, Arctic climate feedbacks, plant-insect-microbial interactions International collaborations: China, Germany, Russia Her work combines field expeditions in extreme Arctic conditions with laboratory experiments and advanced VOC analysis. Climate warming experiments show VOC emissions could increase 40-fold with combined warming and insect attacks, while Arctic soils may act as unexpected VOC sinks. Key publications appear in Nature Communications , Nature Geoscience , and Global Change Biology . Riikka Rinnan has received prestigious awards including the EliteForsk Award, European Research Council Consolidator Grant, and Sapere Aude Research Leader. She leads international research teams, advises five PhD candidates, and supervises four postdocs (including two Marie Curie fellows). Her Siberian expedition plans demonstrate commitment to real-world scientific challenges.
Dr. Keyron Hickman-Lewis is a Lecturer in Planetary Exploration at Birkbeck, University of London, with academic positions spanning institutions like the Natural History Museum and Imperial College London. He holds a M.EarthSci from the University of Oxford (2015) and a Ph.D. in Earth Sciences from CNRS Orléans and Università di Bologna (2019). His research focuses on the co-evolution of Earth and early life, planetary exploration (including Mars 2020 Perseverance rover missions), and technique development for analyzing ancient microbial biosignatures. Key interests include microbial mats, Archaean geology, and astrobiological field analogs like Lake Abhe (Djibouti) and Martian environments. Notable achievements include identifying Earth's oldest microbial traces (3.5 Ga) and studying Mars sample return strategies. He is a Fellow of the Geological Society (FGS) and serves on the European Astrobiology Network Association Council. Teaching includes modules on planetary science, geology, and remote sensing. Supervision focuses on astrobiology and planetary exploration topics. Key publications highlight breakthroughs in microbial mat preservation, Mars sample analysis, and Early Archaean stromatolite interpretation. Collaborations span international institutions including NASA, CNRS, and the University of Bologna.
Stephan Glatzel is a Professor at the Faculty of Earth Sciences, Geography and Astronomy , University of Vienna , affiliated with the Department of Geography and Regional Research . He leads multiple active research projects including Austrian Moor Restoration (2024-2033), MOIST (2024-2025), and Biodiversity Conservation in Austrian Peatlands (2022-2026). Key research areas: Peatland Ecology, Methane Cycling, Ecohydrology, Land Use Impacts SDG contributions: Climate Action (SDG13), Life on Land (SDG15) His recent publications focus on: Land use effects on peat degradation (Soil Use and Management, 2025) Asgard archaea in saline sediments (Frontiers in Microbiology, 2025) Ecohydrology of peatlands in Eswatini (Wetlands Ecology and Management, 2025) Research collaborations span Austria and international partners in Eswatini, with a strong emphasis on applied climate science . He actively engages in public outreach through lectures and media appearances, including topics like 'Die unterschätzte Rolle der Moore im Klimawandel' (2022) and 'Langfristige Studien im Schilf' (2019).
Susan Dudley is a Professor in the Department of Biology at McMaster University, where she has established herself as a leading researcher in plant ecology and physiology. Her work spans multiple areas including plant-plant interactions, kin recognition mechanisms in plants, and pollinator ecology, with significant contributions to understanding how plants interact with their environment and with each other. Ph.D. in Ecology and Evolution from University of Chicago (1991) M.Sc. in Biology from McGill University (1984) B.Sc. in Biology from McGill University (1981) Dr. Dudley's research primarily focuses on plant social behavior, particularly kin recognition and cooperation among plants. Her groundbreaking work has demonstrated that plants can recognize their relatives and modify their growth patterns accordingly, challenging traditional views of plant behavior. She also investigates pollinator ecology, with recent research on wild bees including the unusual case of snail shell-nesting bees. Her interdisciplinary approach combines field observations, controlled experiments, and molecular techniques to address fundamental questions in plant ecology. Her publication record shows consistent productivity with a focus on plant social interactions over the past 15 years. The research trends reveal an evolution from basic studies on kin recognition mechanisms to applications in conservation biology and sustainable agriculture. Her recent work connects plant social behavior with broader ecological concerns including invasive species management, pollinator conservation, and forest ecosystem dynamics. As an educator, Dr. Dudley teaches Ecological Statistics (BIOLOGY 707), Applied Statistics for Biology (BIOLOGY 3SA3), Field Methods in Ecology (BIOLOGY 3JJ3), and Plant Biodiversity and Biotechnology (BIOLOGY 2D03). Her teaching spans both undergraduate and graduate levels, emphasizing practical field and statistical skills essential for modern ecological research. Her research has received significant attention in both academic and public spheres, with multiple publications picked up by news outlets, referenced in Wikipedia pages, and shared across social media platforms. The collaborative nature of her work is evident from her co-author network, which includes researchers across various biological disciplines.
Lisa Gieg is a Professor in the Department of Biological Sciences at the University of Calgary, where she leads research in environmental microbiology. She holds a B.S. in Microbiology from the University of Alberta (1991) and Ph.D. in Microbiology from the same institution (1996). Her laboratory investigates microbial processes in energy environments, focusing on anaerobic hydrocarbon biodegradation pathways and applications in bioremediation and energy recovery. Dr. Gieg's research examines how anaerobic microorganisms metabolize hydrocarbons and related compounds in contaminated environments and natural reservoirs. Her work elucidates novel biodegradation pathways under sulfate-reducing and methanogenic conditions through cultivation, analytical chemistry, and molecular biology approaches. Current applications include anaerobic bioremediation, enhanced methane recovery from marginal oilfields, biocorrosion mitigation, paraffin treatment, heavy oil recovery, oil sands tailings reclamation, and souring control. Her recent publications demonstrate advances in understanding microbiologically influenced corrosion mechanisms, naphthenic acid biodegradation, piezophile microbiology, and enzyme biotechnology for oilfield applications. This research bridges fundamental microbial ecology with practical solutions for energy industry challenges. Gieg teaches Microbial Physiology (CMMB 443) and Petroleum Microbiology (CMMB 545), training students in environmental microbiology concepts and techniques.
Max Planck Institute for Marine MicrobiologyGermany
Shengjie Li is a Researcher in the Department of Biogeochemistry at the Max Planck Institute for Marine Microbiology (MPI-Bremen), Germany. Their postdoctoral research focuses on microbial ecology and biogeochemical processes in marine oxygen minimum zones, particularly linking particle properties, microbial communities, and nitrogen-loss dynamics. Li holds a PhD from Peking University (2017-2022) and conducted a guest PhD at the University of Calgary (2020-2021). Research interests include microbial responses to environmental change, nitrogen cycling in aquatic systems, and the interplay between organic carbon, sulfur, and iron in driving nitrate reduction. Key projects explore isotopic signatures of N₂O production, methane dynamics in groundwater, and the role of biochar in stress resistance. Publications highlight contributions to understanding N₂O emissions, cold seep nitrogen-loss mechanisms, and microbial adaptations in fluctuating environments. Ongoing work bridges microbial community analysis with biogeochemical modeling to address global climate impacts.