Professor Patrick Steel is a faculty member at Durham University in the Department of Chemistry . His work spans Synthetic Organic Chemistry , Organosilicon Chemistry , and Chemical Biology , with applications in pharmaceuticals, agrochemicals, and parasitic disease treatment. Research Highlights: Developing C-H borylation methods for pharmaceutical intermediates Exploring silene cycloadditions for alkene functionalization Designing small molecule probes for plant and parasite biology Collaborating with Todd Marder (Würzburg) and others in synthetic biology Key Collaborations: Partnerships with pharmaceutical companies (GSK, Pfizer) and academic teams focus on novel antileishmanial compounds and herbicide resistance mechanisms . His group's organosilicon work intersects with collaborations on stereoselective synthesis and natural product analogs . Recent Publications (2025-2021) demonstrate expertise in transition metal catalysis , chemical probe development , and neglected disease research . The 2023 Leishmania proteomics and 2022 miltefosine studies show translational impact.
Mehdi Kabbage is a Professor and Director of Graduate Studies in the Department of Plant Pathology at the University of Wisconsin-Madison . His research focuses on necrotrophic fungal pathogenesis, particularly the role of oxalic acid and programmed cell death (PCD) in plant-pathogen interactions. He teaches courses in fungal biology and plant-microbe interactions. Education : Ph.D. in Plant Pathology (Kansas State University), M.S. in Plant Pathology (Kansas State University), B.S. in Engineering (Ecole d'Ingénieurs de Purpan, France) Dr. Kabbage investigates how Sclerotinia sclerotiorum manipulates plant PCD through oxalic acid secretion and explores strategies to inhibit this process for crop protection. His work spans molecular mechanisms of fungal virulence, plant stress tolerance, and genetic resistance in soybeans. Recent publications highlight his research on fungal effector proteins, host-induced gene silencing, oxalic acid signaling, and autophagy-based resistance strategies. He collaborates extensively on soybean and dry bean pathosystems, with a focus on integrated disease management and climate resilience. His lab develops transgenic approaches for stress tolerance, studies BAG protein family functions in plant defense, and investigates fungal enzymatic virulence factors like alcohol oxidases and laccases. Current projects include chemical genomics for resistance pathway discovery and novel antifungal agents such as poacic acid.
Stephen Devadoss serves as Professor and Emabeth Thompson Endowed Professor in the Department of Agricultural and Applied Economics at Texas Tech University's College of Agricultural Sciences & Natural Resources, where he has established himself as a leading scholar in agricultural trade policy and international economics. He earned his PhD from Iowa State University and has developed an extensive research program examining global agricultural markets, trade barriers, and technological adoption in specialty crop production. His research primarily investigates international trade dynamics, with emphasis on tariff/non-tariff barrier impacts, mergers and acquisitions in agri-food sectors, and labor economics in fruit and vegetable production. His methodological approach frequently employs advanced econometric frameworks to address policy-relevant questions in agricultural economics. Recent publications (2023-2025) reveal concentrated focus on US-Mexico trade disputes (particularly regarding GM corn), economic viability of robotic harvesting technologies, and trade war repercussions across global commodity markets, demonstrating consistent responsiveness to emerging agricultural policy challenges. Scientific recognition includes: Lifetime Achievement Award from Southern Agricultural Economics Association Fellow of Western Agricultural Economics Association He has additionally received 16 research awards, 20 teaching awards (including AAEA Graduate/Undergraduate Teaching Awards), and 33 graduate mentoring awards. As an advisor, Dr. Devadoss has mentored students to publish over 85 journal articles and secure 61 awards, including 12 top dissertation and thesis awards from AAEA and WAEA, reflecting his exceptional commitment to graduate education.
Martin Mayer serves as Associate Professor at the University of Inland Norway within the Faculty of Applied Ecology, Agricultural Sciences and Biotechnology and the Department of Forestry and Outback Studies. Based at the Evenstad study location, his research focuses on large mammal ecology in human-dominated landscapes across Scandinavia and Europe. His primary research interests center on Wildlife Ecology and Large Mammal Conservation , with particular emphasis on human-wildlife conflict resolution, road ecology, and carnivore management. Mayer investigates how species like moose, deer, and beavers adapt to anthropogenic landscapes through habitat selection, movement patterns, and population dynamics. His work integrates cutting-edge methodologies including GPS telemetry, drone surveillance, and citizen science data to address conservation challenges in agricultural and urban settings. Analysis of Mayer's recent publications reveals strong trends in using roadkill data for population monitoring, examining spatial constraints on wildlife movement, and developing mitigation strategies for human-wildlife conflicts. His research increasingly incorporates cross-border European perspectives on wildlife management while maintaining a strong foundation in Scandinavian field ecology. Mayer actively contributes to the LARGE research group (ecology of large animals), which conducts field studies on ungulate behavior, predator-prey dynamics, and landscape-scale conservation planning in Norway's boreal ecosystems.
Miguel Castillo is an Associate Professor in the Crop and Soil Sciences Department at North Carolina State University (NC State), leading the Forage & Grassland Program and serving as Grassland Science Specialist. He holds a Ph.D. in Agronomy from the University of Florida and an MBA from NC State. His work focuses on improving ecosystem services in agricultural and pasture-based livestock systems through integration of silvopasture, agroforestry, and advanced technologies like near infrared spectroscopy (NIRS) for management decisions. Dr. Castillo's education includes a B.S. in Plant and Animal Sciences from Zamorano University (2006), followed by M.S. and Ph.D. in Agronomy from the University of Florida (2009, 2013). His research spans international collaborations in tropical/sub-tropical environments, with expertise in forage crop management, bioenergy grasses, and sustainable livestock systems. He is fluent in Spanish and Portuguese. Research Interests: Forage-Livestock Systems Optimization Silvopasture Development Bioenergy Crop Production NIRS Applications in Agriculture Pasture-Based Livestock Management Climate Resilient Forage Crops Recent work emphasizes NIRS for rapid forage quality analysis, evaluating new bermudagrass cultivars, and advancing silvopasture systems in the southeastern U.S. and Peruvian Amazon. His publications address topics like poultry litter impacts, switchgrass management post-freeze, and frost-seeding clover into tall fescue pastures. Grant-supported research includes USDA-funded projects on forage conservation techniques and bioenergy crop development. He advises graduate students on forage systems and collaborates with industry partners on applied agronomic solutions. Labs/Teams: Directs the Forage & Grassland Program at NC State, collaborating with USDA and international research networks. Active in extension programs, publishing guides on forage management, hay production, and silvopasture implementation.
Prof. LFM (Leo) Marcelis is a Professor and Chairholder at the Department of Horticulture and Product Physiology, Wageningen University & Research. His research focuses on plant physiology in controlled environments, energy-efficient horticultural systems, and vertical farming technologies. He leads major projects such as SKY HIGH and 'LED it be 50%', aiming to revolutionize plant production through smart lighting and sustainable practices. Key research interests include optimizing crop growth under LED lighting, closed-system agriculture, and enhancing resource use efficiency. Marcelis coordinates courses on plant physiology, greenhouse horticulture, and vertical farming. He actively collaborates with industry partners, governments, and international institutions to bridge academic research with practical applications in global horticulture. He serves as Vice Chair of the Leibniz Institute’s Science Advisory Board and as Chief Editor of the Crop and Product Physiology section in Frontiers in Plant Science . His work emphasizes interdisciplinary approaches, integrating physiology, engineering, and data science to address food security and sustainable agriculture challenges. Marcelis advises numerous PhD students on projects related to plant-light interactions, crop modeling, and vertical farming scalability. His research has contributed to advancing energy-saving technologies and improving crop quality in both greenhouse and urban agricultural settings.
Dr. Lida Derevnina is a leading researcher in plant-pathogen interactions and immune receptor networks at the University of Cambridge , affiliated with the School of Biological Sciences and the Department of Plant Sciences . She heads the Crop Pathogen Immunity Group at the Crop Science Centre , focusing on NLR (Nucleotide-binding and Leucine-Rich Repeat) immune receptor networks and pathogen effector functions to engineer durable crop resistance. Education: PhD in Plant Pathology and Phytopathology, University of Sydney (2008-2012) BSc in Agricultural Science, University of Sydney (2004-2007) Her research explores how pathogens evade plant immunity through effector proteins and how NLR networks can be bioengineered to counteract these mechanisms. This work bridges molecular biology, evolutionary genetics, and sustainable agriculture, with recent advances in resistosome activation models and effectorome characterization. Scientific awards include the Crop Science Centre Fellowship (2022) , Marie Skłodowska-Curie Individual Fellowship (2016) , and the Jeanie Borlaug Laube Women in Triticum Award (2012) . Her work has been published in top journals such as Science , Nature , and PLoS Biology . Dr. Derevnina is actively engaged in public outreach, including the Talking Biotech podcast and a YouTube video explaining plant immunity . Her laboratory collaborates on projects related to global food security and pathogen genomics.
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.
John Bovay is an Associate Professor and Kohl Junior Faculty Fellow in the Department of Agricultural and Applied Economics at Virginia Tech. He leads the department's Extension program and focuses on food and agricultural policy, particularly environmental and health impacts. His roles include membership in the Chesapeake Bay Executive Council's Scientific and Technical Advisory Committee (2024–2026) and Chair of the AAEA Specialty Crop Economics Section (2024–2025). Education: Ph.D. in Agricultural and Resource Economics from UC Davis (2014), B.A. in Mathematics and Politics from Washington and Lee University (2007). His research integrates economic analysis of public policies, including food safety inspections, climate-smart agriculture, SNAP participation, and food waste. Notable projects include a USDA-NIFA grant (2022–25) on vegetable on-farm loss and a study on GMO labeling laws. Teaching includes a Ph.D. course on empirical market and policy analysis with Anubhab Gupta. Selected Awards: Southern Agricultural Economics Association Emerging Scholar (2021), Distinguished Young Alumnus (2017). Outreach efforts emphasize Extension programs like the 'Virginia Sustainable Farms and Agribusiness Education Initiative' and leadership in Virginia Cooperative Extension's Agribusiness Management & Economics team. Grants include the USDA's Climate-Smart Agriculture Alliance and I2GROW initiatives.
Prof. Dr. Laura Nyström is a Full Professor of Food Biochemistry at ETH Zurich's Department of Health Sciences and Technology (D-HEST), part of the Institute of Food, Nutrition and Health (IFNH). She leads a research group focused on sustainable food systems, dietary fiber mechanisms, and plant-based material utilization. Her career includes tenure as Assistant Professor (2009–2016) and Associate Professor (2016–2021) before her promotion to Full Professor in 2022. She also chairs the D-HEST department since 2022. Education: MSc (2002) and DSc (2008) in Food Sciences from the University of Helsinki, Finland. Postdoctoral research (2008–2009) in Cereal Technology at the same institution. Research Interests: Healthy and sustainable foods via plant-based materials Health-promoting dietary fiber interactions Genetic diversity of grains and crop utilization Antioxidant extraction from olive mill waste (co-founding Gaia Technologies GmbH) Development of analytical methods for food chemistry Scientific Contributions: Over 70 publications, 3 book chapters, and 2 patents ERC Starting Grant (2015), AOCS Young Scientist Award (2017), and ETH Zurich Leadership Award (2018) Advising & Innovation: Guided interdisciplinary research teams on food chemistry and sustainability Co-developed industrial partnerships for food waste valorization Labs & Initiatives: EPNOE (European Polysaccharide Network) collaborations HealthFerm citizen science project on sourdough fermentation
Dr. Philip A. Rea is a Professor of Biology and Rebecka and Arie Belldegrun Distinguished Director of the Life Sciences & Management Program at the University of Pennsylvania's School of Arts and Sciences. With over 100 publications and two co-authored books, his work spans fundamental biochemical research and science communication, focusing on life sciences implementation challenges. Education: D.Sc. (2020) and D.Phil. in Plant Biochemistry (University of Oxford), B.Sc. First Class Honors in Biological Sciences (University of Sussex) Dr. Rea's research explores transport phenomena and cellular detoxification, including vacuolar proton pumps and ABC transporters in plants, yeast, and nematodes. His work has significant applications in phytoremediation and combating parasitic diseases. His recent publications and book Managing Discovery in the Life Sciences (2018) analyze the transition from laboratory discovery to market success through case studies like statins, ivermectin, and metformin. These works highlight serendipity in biomedical innovation and investor-driven discovery management. Scientific Awards: Jesse H. Neal Award (2025) for technical/scientific content AAAS Fellow (2013) for membrane transport research National Academies Cozzarelli Prize (2010) for original research Multiple teaching honors including Lindback Foundation Award (2014) and Ira H. Abrams Award (2009) Society for Experimental Biology President's Medal (1990) Teaching: Proseminar in Management and the Life Sciences (LSMP 1210) Biochemistry (BIOL 2810) Focus on problem-solving with incomplete datasets
Professor Ray Dixon Ray Dixon is a Research Professor and Project Leader at the Department of Molecular Microbiology, John Innes Centre, and co-Director of the CAS-JIC Centre for Excellence in Plant and Microbial Sciences in Beijing/Shanghai. He has been an Honorary Professor at the University of East Anglia's School of Biological Sciences since 1998. His career spans over four decades in bacterial nitrogen fixation research. Education: B.Sc. (Microbiology, University of Reading, 1969), D.Phil. (Microbial Genetics, University of Sussex, 1973). Research Focus: Regulation of biological nitrogen fixation by environmental signals (oxygen/nitrogen/metal availability). His lab pioneers synthetic biology approaches to engineer nitrogen fixation into plants, aiming to enhance sustainable agriculture. Achievements: Elected Fellow of the Royal Society (1999), EMBO Member (1987), recipient of the Adam Kondorosi Award (2019) and Fleming Award (1983). Over 30 years of leadership in international scientific committees and funding panels. Key Contributions: Pioneered understanding of nif gene regulation, discovered novel nitrogenase systems, and developed polyprotein strategies for synthetic biology applications. Collaborates globally through initiatives like CEPAMS and UBNFC.
Mary Ann Lila holds the David H. Murdock Distinguished Professorship at North Carolina State University’s Department of Food, Bioprocessing & Nutrition Sciences. She leads the Plants for Human Health Institute and is affiliated with the Global Institute for Bioexploration (GIBEX). Her research focuses on phytochemicals in functional foods, immune modulation, and plant-based solutions for health challenges like allergies and cognitive decline. Lila has pioneered protein-polyphenol particle technology to enhance bioactive delivery and mitigate food allergies. Education: Ph.D. Plant Biology (University of Wisconsin, 1984); M.S. Plant Pathology (University of Illinois, 1980); B.S. Horticultural Sciences (University of Illinois, 1978) Key Roles: Director of Plants for Human Health Institute; Affiliate Faculty at University of Alaska Fairbanks Her research interests include bioactive phytochemicals’ roles in inflammation, immunosuppression, and cognitive health. She investigates how plant-derived compounds interact with the gut microbiome to enhance health outcomes. Notable studies address blueberry bioavailability, anti-cancer properties of berry juices, and ozone-induced skin damage mitigation. Recent Achievements: - Copernico Bronze Medal (2021) - 2023 Senior Outstanding Global Engagement Award - David H. Murdock Distinguished Professorship (2010–present) Lila’s work spans collaborations across disciplines, including food engineering, genomics, and cosmeceutical development. Her lab develops sustainable food technologies to address global health and environmental challenges, emphasizing functional ingredients from underutilized crops and byproducts.
Dr. Ramanjulu Sunkar is a Regents Professor in the Department of Biochemistry & Molecular Biology at Oklahoma State University. He leads research on epigenetic and small RNA mechanisms in plant stress responses, focusing on gene regulation under drought, heat, and abiotic stresses. His work integrates genomic tools like ChIP, RNA sequencing, and CRISPR/Cas9 to study stress tolerance in crops. Education: B.Sc. (Sri Venkateswara University), M.Sc. and Ph.D. (Sri Krishnadevaraya University, India), followed by postdoctoral research at the Weizmann Institute (Israel), University of Bonn (Germany), and UC Riverside (USA). He joined Oklahoma State University in 2006, becoming Professor in 2016 and Regents Professor in 2024. Research Interests: Epigenetic modifications (DNA methylation, histone changes), microRNA-guided gene regulation, plant stress memory, and translational control mechanisms. His lab uses model systems like Arabidopsis, rice, and sorghum to study adaptive responses to environmental challenges. Grants: Over 15 grants, including USDA-funded projects on microRNA roles in photosynthesis, epigenetic control of drought tolerance, and systems genetics in rice. NSF-EPSCoR support for bioenergy research. Teaching: Courses include 'Plant Biochemistry,' 'Epigenetics,' and graduate supervision through research credits. Developed new courses on plant stress biology and molecular techniques. Labs/Teams: Leads a research group focused on epigenomics and RNA regulation in plants. Collaborates internationally on projects like the Arabidopsis transcriptome and stress memory mechanisms.
Dr. Isabel ML Saur is a research group leader at the Institute for Plant Sciences, Faculty of Mathematics and Natural Sciences, University of Cologne. She leads the Saur Lab which focuses on plant-pathogen interactions, particularly the mechanisms employed by the powdery mildew fungus Blumeria hordei to colonize barley. Her research contributes significantly to understanding plant immunity and pathogen recognition mechanisms. Dr. Saur was trained as a Laboratory Assistant in Stuttgart-Hohenheim and completed her undergraduate studies in Biotechnology at the Applied Science University Esslingen am Neckar. She developed her interest in plant sciences during placements at the Research School of Biology, The Australian National University (ANU), Canberra. She earned her PhD in plant immunity from ANU in 2015 and subsequently joined the Max Planck Institute for Plant Breeding Research (MPIPZ) in Cologne. In 2020, she was granted a prestigious DFG Emmy Noether group leader position, establishing her independent research group. Dr. Saur's research focuses on cellular recognition mechanisms in plant immunity, signal transduction pathways linking receptor-mediated recognition to host physiology, and pathogen strategies for immune evasion and effector-mediated immune suppression. Her lab uses the interaction between barley ( Hordeum vulgare ) and the barley powdery mildew fungus Blumeria hordei as a primary model system, complemented by studies in Arabidopsis thaliana and Nicotiana benthamiana to explore both conserved and lineage-specific features of immunity in monocots and dicots. Analysis of Dr. Saur's recent publications reveals a strong focus on plant-pathogen interactions, particularly the molecular mechanisms of effector proteins from powdery mildew fungi and their recognition by plant immune receptors. Her work spans multiple disciplines including plant pathology, molecular biology, structural biology, and plant immunology, with specific attention to NOD-like receptors, cell death mechanisms, and the evolution of resistance gene specificity. Dr. Saur has received significant recognition for her research, most notably: DFG Emmy Noether group leader position (2020) Dr. Saur currently mentors several students and researchers in her lab, including PhD students Merle Bilstein-Schloemer and Sophie Sent, and postdoctoral fellows Ishani Shankar Das and Wei Shi. Her research is supported by multiple projects including her Emmy Noether project on quantification of virulence function, CEPLAS & EN Project on identification of intrinsic functions of effectors, SFB1403 Project on host cell death pathways, and For5682 Project on powdery mildew adaptation to the leaf epidermal cell niche. The Saur Lab maintains a dynamic research environment focused on understanding plant immunity through multiple ongoing projects. The lab actively participates in conferences and collaborations, contributing to the international plant-microbe interaction research community. Recent lab activities include participation in the 2025 IS-MPMI Congress in Cologne and preparation for the 17th International Cereal Rusts and Powdery Mildews Conference in Vancouver.