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.
Birger Lindberg Møller is a Professor in Plant Biochemistry at the Department of Plant and Environmental Sciences, Faculty of Science, University of Copenhagen. He also serves as Director of the Carlsberg Laboratory (since 2014) and Head of the VILLUM Research Center for Plant Plasticity (since 2013). His research spans plant biochemistry, synthetic biology, and natural products chemistry with applications in sustainable production systems. His educational background includes: M.Sc. (1972) Ph.D. (1975) D.Sc. (1984) D.Sc. h.c. (honoris causa) Professor Møller's research focuses on bio-active natural products , particularly the biosynthesis, transport, storage and degradation of cyanogenic glucosides . His work elucidates how plants communicate with their environment and defend themselves against herbivores, pests and abiotic stresses. A promising application of his lab's research involves engineering microalgae, mosses and plant cells into production units for high value natural products . His engagement in synthetic biology represents a logical extension of his plant research activities, with work targeted towards forming new combinations of membrane proteins for harvesting sunlight energy to synthesize valuable natural products or degrade toxic compounds. Analysis of Professor Møller's recent publications reveals a strong focus on plant specialized metabolism, particularly cyanogenic glucosides and related compounds. His work spans genomics, transcriptomics, metabolomics, and synthetic biology approaches to understand plant defense mechanisms and engineer plants for improved traits. Key themes include sorghum and cassava metabolism, diterpenoid biosynthesis, and the application of synthetic biology for sustainable production of high-value compounds through photosynthetic systems. His notable scientific awards include: Villum Kann Rasmussen Research Prize (2007) - Denmark's largest research award (2.5 mil DKK or 350,000 €) The Academy of Future Research's "The Future Prize" (2004) Societas Physiologia Plantarum Scandinavica "Popularization Prize" (2003) Knight of the Dannebrog (1995) Carlsberg Research Prize Award (1994) Hans Gram Medal from the Royal Danish Academy of Sciences and Letters (1985) Appointed Honorary Doctor at the University of Umeå, Sweden (2009) Professor Møller has served as the main advisor for 43 PhD students (with 8 ongoing in Denmark and 3 in Australia) and numerous BSc and MSc students. He has secured significant research funding throughout his career, including an ERC Advanced Grant (2.5 million €), Villum Foundation grants, and participation in major research centers with multi-million euro budgets. His current funding includes projects related to synthetic biology, plant plasticity, and cyanogenic glucoside metabolism. He leads the Plant Biochemistry Laboratory and is deeply involved with the Center for Synthetic Biology at the University of Copenhagen. His laboratory focuses on understanding plant specialized metabolism and applying this knowledge through synthetic biology approaches to engineer plants and microorganisms for sustainable production of high-value compounds. His team collaborates extensively with international partners across Europe, Australia, and beyond, and he actively promotes cross-disciplinary collaboration to address complex global challenges in energy, sustainability, and medicine.
Federico Casanova is an Associate Professor at the National Food Institute of the Technical University of Denmark (DTU), specializing in sustainable food processing and biotechnological valorization of food waste. His work focuses on extracting high-value molecules (proteins, chitins, fatty acids) using green technologies like ultrasound, ohmic heating, and pulsed electric fields to enhance functional properties. Education : PhD (2015–2017, Federal University of Vicosa, Brazil), MSc (Agrocampus Ouest, France, 2009–2010; Universitat Jaume I, Spain, 2006–2007), BSc (Università Cattolica, Italy, 2003–2006). Research Trends : Recent publications highlight applications of green technologies to modify protein-polyphenol interactions, characterize gelatin from jellyfish by-products, and optimize plant protein emulsifying properties. Keywords include Food Science, Food Chemistry , and Biotechnology , with subfields spanning bioactive peptides, rheological properties, and sustainable processing . Projects : Casanova contributes to active initiatives like seaweed-derived bioactives (2025–2027) and SUSTAIN-A-BITE (2025–2028), alongside supervising PhD students investigating dairy proteins and insect-based ingredients. He also serves as an editor for International Journal of Biological Macromolecules (2025–2027). External Roles : Junior Project Leader at Nestlé Purina (2017–2018), Engineer at CNRS's Soft Matter Group (2010–2014). Teaching : Delivered guest lectures on food proteins and sustainable food systems at universities globally.
Arden Roy Bashforth is an Academic Researcher at the Collections Department within the Faculty of Science, University of Copenhagen, affiliated with the Natural History Museum of Denmark (Statens Naturhistoriske Museum). His research focuses on Paleozoic plant-fossil assemblages, particularly examining ecological transitions during the Carboniferous-Permian boundary in tropical Pangea. Institution: University of Copenhagen Faculty: Faculty of Science Department: Collections Department Role: Academic Researcher Contact: bashforth@snm.ku.dk | +4524277912 His primary research interests span Paleobotany, Paleoecology, and Paleoclimatology, with emphasis on Carboniferous-Permian flora, plant-fossil assemblages in tropical Pangea, arthropod-plant interactions, and climate-driven vegetation shifts. Bashforth investigates how mixtures of wetland and drought-tolerant taxa reflect major climatic transitions, particularly the rise of xeromorphic flora during the Pennsylvanian-Permian transition. His work integrates field studies from key locations including the Illinois Basin, Bornholm, Newfoundland, and Portugal to reconstruct ancient ecosystems and sedimentary environments. Analysis of his 38 research outputs (2015-2024) reveals strong focus on Carboniferous paleoenvironments, with recurring themes of climate-aridity transitions, taphonomic biases in fossil records, and early land plant impacts on sedimentation. His publications frequently address Pennsylvanian coal-bearing strata, Permian aridification processes, and marine incursion events in Carboniferous basins. Bashforth maintains active external collaborations across North America and Europe, with significant contributions to journals including Geobios , Palaios , and the Bulletin of the Geological Society of Denmark . His 2020 paper on upper Paleozoic plant-fossil assemblages has garnered over 50 citations, indicating substantial impact in paleoclimatic reconstruction studies. Professional activities include a 2007 seminar on Carboniferous rainforest vegetation in Newfoundland, demonstrating long-term engagement with Pennsylvanian paleotropical ecosystems. His research shows consistent interdisciplinary collaboration with leading institutions including the New Mexico Museum of Natural History, Royal Ontario Museum, and University of Bristol.
Helle Sørensen is a Professor at the Department of Mathematical Sciences, University of Copenhagen. Her work bridges theoretical and applied statistics with interdisciplinary applications in biological and environmental sciences. Education : BSc (1993), MSc (1997), PhD (2000) in Statistics from University of Copenhagen. Employment : Professor (2018–present), Head of Data Science Lab (2018–2021), Professor MSO and head of Laboratory for Applied Statistics (2013–2018), Associate/Assistant Professor across multiple departments (2000–2013). Research Interests focus on: Functional data analysis Statistical inference for dependent data and stochastic processes Applications in biology, agriculture, and food science Her recent publications highlight statistical methodologies applied to: Enzymatic degradation of plant material Multivariate analysis in metabolic studies Random forest efficiency in metric spaces Quantile regression for longitudinal data Child food texture preferences and insect acceptance Teaching includes courses in basic probability, statistical theory, and applied statistics for bio/life sciences students. She supervises BSc, MSc, and PhD students in Statistics with co-supervision roles in interdisciplinary fields.
Søren Rosendahl is a Professor in Ecology and Evolution at the Department of Biology, Faculty of Science, University of Copenhagen. He holds a PhD and has been recognized as a Knight (Ridder af Dannebrog) for his contributions to science. His academic career spans over three decades at the University of Copenhagen, where he served as Assistant Professor (1991), Associate Professor (1994), and Professor (2000) in the Department of Mycology, which later became part of the Department of Biology. From 2010-2019, he served as Deputy Head of the Department of Biology. Education: 1984: Master of Science (Cand.scient.) in biology, University of Copenhagen 1985: Practical and theoretical training as high school teacher in biology 1989: Ph.D. (Lic.scient) at Institut for Sporeplanter Professor Rosendahl specializes in molecular ecology, population genetics, and evolution of fungi, with particular emphasis on biotrophic symbionts and parasites. His research encompasses Fusarium, Penicillium, Oomycota (Peronosporamycota), arbuscular mycorrhizal fungi (AMF) in Glomales, and fungi associated with insects. He employs advanced genomic techniques including rad-sequencing, microsatellites, SNPs, and DNA sequencing to study fungal diversity and distribution patterns. His BioMark project applies population genomics to predict emerging epidemics of Phytophthora infestans (Potato late blight). He also investigates molecular diversity of AMF fungi in agricultural and natural environments using evolutionary and demographic models based on coalescence and MCMC Bayesian statistics. Analysis of Professor Rosendahl's recent publications reveals a strong interdisciplinary focus spanning fungal ecology, medical microbiology, and agricultural science. His work demonstrates consistent application of molecular genetic approaches to understanding fungal community dynamics across diverse ecosystems - from soil microbial communities to human gut microbiomes. The trend shows increasing integration of computational approaches including hierarchical joint species modeling and co-occurrence networks for microbial community data analysis. His research bridges fundamental fungal biology with practical applications in agriculture, medicine, and environmental science. Scientific Recognition: Knight (Ridder af Dannebrog) Throughout his career, Professor Rosendahl has held numerous leadership and advisory positions. He served as Head of the Department of Mycology (1998-2001), Coordinator for the Bachelor degree in Industrial Science (2002-2005), and Head of the Study Board for Biology (2005-2007). He has represented Danish higher education on the Biology/Biotechnology board in the Ministry of Education since 2010 and has consulted for international organizations including the EC Commission, Norwegian Ministry for Education, and European Baccalaureate Unit. His external collaborations include significant work with Novozymes Biologicals and Thomsen BioScience A/S. Professor Rosendahl maintains active research collaborations through his membership in the European culture collection (BEG - Bank of European Glomales) and has served as Danish representative in multiple COST actions. His research group appears to focus on fungal population genetics with applications spanning agricultural systems, natural ecosystems, and medical contexts.
Elizabeth Heather Jakobsen Neilson is an Associate Professor in the Department of Plant and Environmental Sciences at the University of Copenhagen's Faculty of Science. She leads the Plant Ecophysiology Research Group, which focuses on understanding molecular regulation, integration and evolution of plant general and specialized metabolic pathways. Her work provides fundamental knowledge for applications in environmental, agricultural and biotechnological platforms through utilization of comprehensive 'omics' approaches. Dr. Neilson earned her PhD from the University of Melbourne in 2013 with research on cyanogenic glucoside synthesis in Eucalyptus, followed by postdoctoral work at both Copenhagen University and Monash University. Her educational background includes a 2006 Honours in Science (Masters Equivalent) in Plant Physiology. Plant specialized metabolism and environmental interactions Molecular regulation of plant defense systems Abiotic stress responses in plants High-throughput phenotyping technologies Plant-animal interactions in ecological contexts Tree and crop biology applications Targeted metabolomics (GC-MS, LC-MS, MS imaging) Her publication record demonstrates consistent focus on plant metabolic pathways, with recent work exploring evolutionary aspects of specialized metabolism across diverse plant species. The research spans from molecular studies of enzymes like flavin containing monooxygenases (FMOs) and cytochromes P450 to ecosystem-level investigations of plant interactions in tundra and forest environments. Scientific Awards and Recognition DFF Sapere Aude (FTP) grant for SuperYUCCA project (2022-2026) DFF Project 1 (Inge Lehmann) grant for YUCCApro (2022-2024) Novo Nordisk Emerging Investigator award (2019-2024) Villum Young Investigator grant (2016-2021) Danish Council for Independent Research grant (2016-2021) Carlsberg Foundation Postdoctoral Fellowship (2014-2016) Sapere Aude Research Talent award (2016) Dr. Neilson actively mentors graduate students and postdoctoral researchers, with current group members including Cecilie Cetti Hansen (Postdoc), Joachim Møller Christensen (PhD), and Ingvild Ryde (PhD). Her research program is supported by multiple concurrent grants totaling several million DKK, demonstrating strong research productivity and external funding success. She maintains significant international collaborations with institutions including University of Queensland, Virginia Tech, and Monash University. The Plant Ecophysiology Research Group operates as a dynamic team utilizing phenomics, metabolomics, proteomics and transcriptomics to investigate plant-environment interactions. Current research directions include YUCCA multifunctionality for crop resistance, plant FMO optimization, and specialized metabolite pathways in diverse plant species from ferns to Eucalyptus.
Rodolphe Marie is an Associate Professor at the Department of Health Technology at Technical University of Denmark (DTU), leading the Nanofluidics and Bioimaging group. He holds an ORCID ID (0000-0002-8338-1990) and has been affiliated with DTU since 2001, progressing from PhD student to current group leader roles. Postdoctoral Researcher, Lund University (2005-2006) PhD, DTU (2001-2003) Assistant Professor, DTU (2008-2012) Research Assistant, DTU (2004) His research focuses on experimental nanofluidics and single molecule imaging , with significant contributions to food biophysics and tumor microenvironment studies. Current projects include: Next-generation molecular profiling of soft-matter nanoparticles High throughput optical detection in flow capillaries Nanofluidic devices for nanoparticle imaging Microfluidics platform for tumor microenvironment study Rodolphe Marie's recent publications (2024-2025) demonstrate interdisciplinary work at the intersection of nanofluidics , food science , and bioimaging . His work explores protein aggregation mechanisms, emulsification properties, and water-in-water emulsion stabilization using biopolymer systems. He supervises multiple PhD students including Sofia Elise Davidsson Bencker, Peter Willmer, and Panagiotis Senikoglou, while collaborating internationally through research networks focused on food biophysics and microfluidic technologies.
Birgit Jensen serves as an Associate Professor in the Department of Plant and Environmental Sciences at the University of Copenhagen's Faculty of Science, specializing in Microbial Ecology and Biotechnology. Her research focuses on developing sustainable agricultural solutions through biological control methods. Her primary research interests include: Biological control of plant diseases - from isolation of beneficial microbial candidates to testing efficacy in plant assays Diversity and ecology of plant-associated beneficial microbes Combining beneficial microbes to enhance plant tolerance to abiotic stress (such as drought) and pathogens in agricultural and horticultural crops Dr. Jensen's recent publications demonstrate a consistent focus on fungal biocontrol agents, particularly Trichoderma and Clonostachys rosea species, for managing plant diseases in cereals, grapes, and other crops. Her work spans molecular mechanisms of disease control, field applications, and ecological considerations of microbial communities. She has presented her research at numerous conferences and events, including studies on Colletotrichum acutatum isolates, gene discovery in plant-pathogen interactions, and development of biocontrol agents. Dr. Jensen has also participated in public engagement activities such as Kulturnatten (Cultural Night) events.
Daniel Buchvaldt Amby is an External Researcher at the Department of Plant and Environmental Sciences, University of Copenhagen, specializing in molecular plant pathology. His research focuses on the evolutionary ecology of inter-kingdom host shifts between plants and insects of plant pathogenic fungi, with particular expertise in identification and characterization of fungal pathogens affecting agricultural crops. Dr. Amby's research program centers on developing and applying molecular (multi-loci and genome sequencing) and morphological diagnostic tools (microscopy and colony appearance) for identifying plant pathogenic fungi and oomycetes. He investigates population genetics, biology, and phenotyping of microbial pathogens causing diseases in crops such as strawberry, citrus, and quinoa. His previous work and ongoing collaborations explore beneficial fungal or bacterial strains that help plants (barley, maize, tomato) withstand abiotic stresses (drought, salinity) and biotic stresses (plant diseases) using molecular, biochemical, physiological, and multispectral imaging techniques. His research bridges fundamental understanding of pathogen biology with practical agricultural applications for disease management. Analysis of Dr. Amby's recent publications (2022-2025) reveals a strong thematic focus on quinoa pathology, high-throughput phenotyping methodologies, and molecular identification of plant pathogens. His work demonstrates integration of traditional microbiological techniques with modern genomic and imaging technologies. Key research directions include development of automated phenotyping platforms (PhenoLab), characterization of emerging diseases in alternative crops, and establishment of practical diagnostic protocols for fungal pathogens. His publications appear in reputable journals across plant science, agricultural technology, and plant pathology domains, reflecting interdisciplinary research with practical applications for sustainable agriculture.
Niels Agerbirk is an Associate Professor in the Section for Plant Biochemistry at the Department of Plant and Environmental Sciences, University of Copenhagen. With over two decades of academic experience, he focuses on plant biochemistry and chemical ecology, particularly the study of plant secondary metabolites and their role in defense mechanisms against insects and diseases. His research centers on glucosinolates in cruciferous plants like mustard, cabbage, and wintercress. Dr. Agerbirk earned his Cand. scient. in Biology from Aarhus University in 1994, followed by a Ph.D. in Biochemistry from the Royal Veterinary and Agricultural University in 1997. His doctoral research examined the myrosinase-catalyzed hydrolysis of glucosinolates in Brassica vegetables. His research interests span plant secondary metabolism, with particular emphasis on the glucosinolate-myrosinase system and non-glucosinolate defenses in crucifers. Approximately half of his work focuses on pure plant biochemistry, while the other half explores ecological interactions between plants and pests like diamondback moths and cabbage butterflies. His investigations range from molecular structure elucidation and biochemical pathway analysis to ecological and evolutionary studies, with the goal of describing new molecules and reactions that might inform plant breeding strategies. Dr. Agerbirk's recent publications reveal a sustained focus on glucosinolate diversity across plant families, evolutionary patterns in biosynthetic pathways, and the role of these compounds in plant defense mechanisms. His work integrates analytical chemistry, evolutionary biology, and agricultural science to understand plant-insect interactions at the molecular level. His research often involves sophisticated chemical analysis techniques, including HPLC-MS/MS, to characterize plant metabolites and their transformations. Blokkens Underviser award from natural resources students (2013) Nominated for University of Copenhagen teaching prize 'Årets Harald' (2015, 2016, 2018) Dr. Agerbirk has extensive experience supervising students at all levels, having served as co-supervisor for PhD students Pernille Østerbye Erthmann (2014-2017) and Davide Mancinotti (2018-2021). He has also reviewed numerous PhD theses from other institutions. His teaching portfolio includes introductory chemistry courses for biological sciences students as well as advanced biochemistry courses. He is affiliated with the Copenhagen Plant Science Center as a member of Fernando Geu-Flores' research group, where he contributes to projects focused on glucosinolate diversity. His laboratory work involves chemical analysis of plant metabolites, enzyme characterization, and studies of plant-insect interactions, with applications in understanding agricultural pest resistance mechanisms.
Lorrie Maccario is an Assistant Professor and Guest Researcher in the Department of Biology, Microbiology at the University of Copenhagen. Her research focuses on microbial interactions, biofilm formation, and plant-microbe relationships in various environmental contexts. Dr. Maccario's research interests center around microbial ecology and genomics, with particular emphasis on: Microbial community dynamics in soil and plant rhizospheres $$\text{CRISPR-Cas}$$ systems and bacterial defense mechanisms Plasmid biology and horizontal gene transfer Biofilm formation and evolution in multispecies communities Microbial contributions to bioremediation processes Her recent publication record demonstrates a strong focus on microbial interactions across diverse environments, from agricultural systems to engineered microbial communities. Her work often bridges fundamental microbiology with practical applications in agriculture and environmental management, particularly examining how microbial communities influence plant health and soil properties. Several publications have received significant attention, including one in Cell Host and Microbe with 24 Scopus citations that was picked up by 4 news outlets and widely discussed on social media platforms. Dr. Maccario maintains active collaborations with researchers across multiple institutions, as evidenced by her co-authorship on papers with international teams. Her work often involves interdisciplinary approaches combining molecular biology, ecology, and agricultural science, with practical implications for sustainable farming practices and environmental management.
Fritzi Grevstad is an Assistant Professor (Senior Research) in the Department of Botany and Plant Pathology at Oregon State University, affiliated with the College of Agricultural Sciences. Her research is centered at the Richardson Hall Quarantine Facility, where she leads studies on classical biological control of invasive weeds such as knotweeds (Fallopia spp.) and gorse (Ulex europaeus). She works with insect agents collected from native ranges to assess host specificity and efficacy for safe field release. Her research interests include: Population and invasion ecology Plant-herbivore interactions Biological control of invasive plants Phenology and photoperiodism in introduced insects Modeling climatic suitability and phenological mismatch Optimization of biocontrol release strategies The trends in her recent publications show a strong focus on the integration of ecological modeling with empirical studies in biological control. Her work emphasizes the importance of phenological alignment between biocontrol agents and host plants, particularly under climate change. She investigates genetic variation among biocontrol populations, host specificity testing, and long-term impacts of agent releases. Much of her research involves collaborative modeling tools like DDRP for real-time pest forecasting. Although no specific scientific awards are mentioned in the provided text, her extensive publication record in high-impact journals such as Ecological Applications , Biological Control , and Global Change Biology reflects significant scholarly contributions. She has authored technical petitions for field release of biocontrol agents, extension publications for practitioners, and book chapters summarizing national biocontrol programs. Dr. Grevstad advises on the biology and implementation of biocontrol programs, with a history of collaborative grants and research projects involving agencies like the USDA Forest Service and Department of Defense. Her work includes developing decision-support tools and models for weed biocontrol on federal lands. She has co-authored multiple technical reports and petitions submitted to the Technical Advisory Group on Biological Control of Weeds, indicating active grant-funded and regulatory-engaged research. She leads a research team focused on invasive species management, working closely with entomologists, modelers, and quarantine specialists. The team conducts both laboratory and field studies, particularly within the Richardson Hall Quarantine Facility at OSU, to ensure safe and effective development of biological control programs.
Jacobus J. Boomsma is a Professor in the Department of Biology at the University of Copenhagen's Faculty of Natural and Life Sciences, specializing in Ecology and Evolution. With a career spanning over four decades since earning his PhD in 1982, he has established himself as a leading authority in evolutionary biology, particularly in social evolution and insect symbiosis research. His research focuses on the biology of cooperation and conflict to understand adaptive design by natural selection, with particular emphasis on social insects. Boomsma has conducted extensive fieldwork on fungus-growing ants for 25 years through the Smithsonian Tropical Research Institute in Panama, while also initiating research programs across Denmark, Europe, Africa and Southeast Asia. His work combines molecular methods with kin-selection theory to address questions about evolutionary transitions in organizational complexity. More recently, he has expanded his research to include evolutionary medicine applications using Danish public health data. Boomsma's publication record is exceptional, with over 325 publications in Google Scholar, more than 23,900 citations, and an h-index of 85. His work appears in top-tier journals including 5 papers in Nature, 7 in Science, 10 in PNAS, and numerous other high-impact publications. His research has explored diverse aspects of social insect biology, including ant-fungus symbiosis, disease management in ant colonies, reproductive strategies, and the genetic basis of social organization. Awards and Honors: C.&C. Huygens Excellence Fellowship (1985-1990) Elected Member of the Royal Danish Academy of Sciences and Letters (1998) Alexander von Humboldt Research Award (2001) Honorary Doctorate from University of Helsinki (2010) Knighthood in the Royal Danish Order of Dannebrog (2015) Quadrennial Hamilton Award for lifetime achievement (2018) Elected Fellow of AAAS (2019) Elected Member of Sigma Xi (2023) Boomsma has trained over 25 PhD students and 30 postdocs, with 23 of his trainees securing tenured academic positions (10 now full professors). His leadership includes serving as Director of the Centre for Social Evolution (2005-2018), coordinating EU research networks, and chairing ERC panels. He has held editorial positions for numerous prestigious journals including Proceedings of The Royal Society series B and BMC Ecology and Evolution. His laboratory and research group at the University of Copenhagen, previously housed within the Centre for Social Evolution, represents a major hub for evolutionary biology research in Europe, with extensive international collaborations across multiple continents.
Ingvild Ryde is a guest researcher at the University of Copenhagen's Department of Plant and Environmental Sciences, Section for Plant Biochemistry, with a focus on plant-environment interactions in extreme climates. Her research interests include: Plant biochemistry and secondary metabolite production Ecosystem responses to climate change Arctic and subarctic vegetation dynamics Air pollution monitoring using plant bioindicators Plant respiration and carbon cycling Climate-plant-insect interactions Recent publications highlight her work on: Chemical defense mechanisms in Arctic plants (2025) Biodiversity shifts in warming tundra ecosystems (2025) Biogenic volatile organic compound emissions (2022) Plant responses to herbivory across elevational gradients (2021) Research metrics show significant impact, with over 160 citations across her work and widespread attention in scientific networks.