Michael McAlpine is a Professor in the Mechanical Engineering department at the University of Minnesota . He also holds affiliations with the Biomedical Engineering and Electrical and Computer Engineering departments. His research focuses on 3D printing functional materials & devices , Nanoscale inks , Biomedical devices , Bioelectronics , and Flexible Microsystems . Research Interests : 3D Printing, Biomedical Engineering, Nanotechnology, Flexible Electronics, Microfluidics Labs : ME 361/363 Contact : mcalpine@umn.edu , (612) 626-3303, ME 117 Recent Research Trends include 3D Printed Biomedical Devices , Flexible Electronics , and Bioprinting Applications . His work spans from Spinal Organoid Formation to Programmable Drug Release Capsules . Scientific Award : Circulation Research 2020 Best Manuscript Award
Assoc Prof Ng Teng Yong is an Associate Professor at the School of Mechanical & Aerospace Engineering (NTU), specializing in numerical modeling and simulation. With a background as Research Manager at A*STAR Institute of High Performance Computing, his work spans materials science, nanotechnology, and aerospace engineering. Current focus on graphene-based desalination membranes Expertise in molecular dynamics simulations Investigates nanoscale fluid mechanics and structural dynamics Recent publications highlight advancements in energy-efficient electrodialysis, smart robotics, and nonlinear vibration analysis. His interdisciplinary approach integrates computational methods with experimental validation in additive manufacturing and soft material mechanics.
Feng Feng is an Assistant Professor in the Department of Biochemistry and Molecular Biology at Oklahoma State University, where he has been employed since August 2020. His research focuses on understanding how plants interact with microbial communities in their rhizosphere under various environmental conditions. Dr. Feng received his Ph.D. in Plant Molecular Biology from Tsinghua University in Beijing, China (2008-2012), followed by an M.S. in Microbiology and B.S. in Biotechnology from Henan Agricultural University in Zhengzhou, China. Ph.D., Plant Molecular Biology, Tsinghua University, Beijing, China (2008-2012) M.S., Microbiology, Henan Agricultural University, Zhengzhou, China (2005-2008) B.S., Biotechnology, Henan Agricultural University, Zhengzhou, China (2001-2005) Dr. Feng's research interests center on plant-microbe interactions, particularly how plants balance immunity and symbiosis signaling pathways when encountering both pathogenic and beneficial microbes in the rhizosphere. His work examines how environmental conditions affect plant decisions to promote or inhibit microbial colonization, with the goal of developing cropping systems that require less chemical fertilizer and are more resilient to climate change. Using molecular, cell biology, genetic, and biochemical approaches, his lab investigates how abiotic environmental factors regulate plant-microbe interactions and how immunity and symbiosis signaling pathways influence broader microbial communities. Dr. Feng's scholarly output shows a consistent focus on plant immunity and symbiosis mechanisms, particularly involving LysM receptor-like kinases and their role in distinguishing between pathogenic and symbiotic microbial signals. His recent work has increasingly emphasized the ecological context of plant-microbe interactions and the potential applications for sustainable agriculture. Dr. Feng serves as an Associate Editor for Frontiers in Microbiology (since 2022) and has editorial roles with several other journals including Frontiers in Plant Science, Horticultural Plant Journal, and iMeta. Associate Editor, Frontiers in Microbiology (2022-present) Editorial Board, Frontiers in Plant Science (2021-present) Editorial Board, Horticultural Plant Journal (2021-present) Editorial Board, iMeta (2021-present) Dr. Feng actively mentors graduate students and postdoctoral researchers, with his lab currently recruiting Ph.D. students and postdocs interested in plant-microbe interactions. He has secured multiple research grants including funding from the U.S. Department of Agriculture and the Oklahoma Center for the Advancement of Science and Technology (OCAST). His laboratory investigates the molecular mechanisms by which plants regulate their interactions with rhizosphere communities, with particular focus on how environmental conditions influence the balance between immunity and symbiosis signaling pathways.
University of Natural Resources and Life Sciences ViennaAustria
Roland Ludwig is an Associate Professor at the Institute of Food Technology, Department of Food Science and Technology, University of Natural Resources and Life Sciences, Vienna (BOKU). He is also the current Senate Chairman at BOKU, demonstrating strong institutional leadership. His research is centered on enzyme technology, biocatalysis, biosensors, and electrochemistry, with a particular focus on oxidoreductases such as cellobiose dehydrogenase (CDH) and lytic polysaccharide monooxygenases (LPMOs), which are crucial in biomass degradation and bioenergy applications. His research interests span food biotechnology, enzyme technology, biocatalysis, biosensors, process engineering, electrochemistry, and nanobiotechnology. He investigates the molecular mechanisms of electron transfer in redox enzymes, their application in biosensors and biofuel cells, and their role in the depolymerization of lignocellulosic biomass. His work integrates biochemical, electrochemical, and structural approaches to understand and engineer enzyme function. The recent publication trends highlight a strong focus on LPMOs and CDHs, with studies on their kinetics, substrate specificity, domain dynamics, electron transfer mechanisms, and engineering for improved stability and activity. These works frequently appear in high-impact journals such as ACS Catalysis and Bioelectrochemistry, reflecting the significance and innovation of his research in biocatalysis and bioelectrochemistry. International DropSens Award for Applied Electroanalytical Chemistry Medal of Honour, Faculty of Food Technology and Biotechnology, University of Zagreb RIZ Genius Award for Innovative Sensor Technology Austrian APART Fellowship INiTS Award 2007 (Life Science) Förderpreis der Österreichischen Gesellschaft für Biotechnologie Roland Ludwig actively supervises students and leads multiple externally funded research projects from FWF and EU, including grants focused on electron transfer in oxidoreductases and the kinetic analysis of oxidative biomass-degrading enzymes. He collaborates with international research groups and is a frequent speaker at major scientific conferences. His research contributes to sustainable bioprocesses, green chemistry, and the development of novel bio-based technologies. He is involved in research teams and collaborative projects such as the FWF-funded Doktoratskolleg "Biomolecular Technology of Proteins" and participates in interdisciplinary initiatives bridging food technology, biotechnology, and materials science. His lab focuses on enzyme characterization, protein engineering, and the development of bioelectrochemical devices.
Cornelius Barry is an Associate Professor in the Department of Horticulture at Michigan State University, with affiliations to the Plant Breeding, Genetics and Biotechnology program, AgBioResearch, and the Molecular Plant Sciences Graduate Program. He joined MSU in July 2007 with a 75% research and 25% teaching appointment. Education: PhD and BSc from the University of Nottingham and University College of Wales Current roles: Director of NSF REU Site: Plant Genomics @ MSU His research focuses on the evolution of biochemical diversity within the Solanaceae family , particularly specialized metabolites like terpenoids, flavonoids, and alkaloids. He investigates their roles in plant defense, pollinator attraction, and human applications through genomics, metabolite profiling, and synthetic biology. Recent publications show expertise in alkaloid biosynthesis , trichome chemistry , and metabolic pathway engineering . Key collaborations include teams at Boyce Thompson Institute, Texas A&M, and University of Nottingham. He advises graduate students in Genetics , Biochemistry & Molecular Biology , and Molecular Plant Sciences programs.
Dr. Marion Schrumpf is a Group Leader in the Soil Biogeochemistry research group at the Max Planck Institute for Biogeochemistry, affiliated with the Department of Biogeochemical Processes. Her work focuses on soil carbon dynamics, mineral-organic matter interactions, and climate change impacts on soil systems. Research areas: Soil biogeochemistry, carbon cycling, mineral-soil interactions, nutrient stoichiometry, microbial ecology, and climate modeling. Email: mschrumpf@... Phone: +49 3641 57-6182 Office: B2.015 Her recent publications address themes like mineral control over soil carbon stabilization, drought effects on soil processes, microbial stoichiometric adaptation, and the Jena Soil Model's role in simulating carbon-nutrient interactions. She leads efforts to disentangle the complex relationships between land use, mineralogy, and soil organic matter turnover across diverse ecosystems.
Jaspreet Kaur is an Assistant Professor in the Biology department at the University of Wisconsin-La Crosse . Her research focuses on plant-microbial interactions and population genetics in rare plant species, particularly orchids. She holds a Ph.D. (2018) in Plant and Soil Science from Texas Tech University and a B.S. (2014) in Plant Breeding and Genetics from Punjab Agricultural University, India, where she was honored Summa Cum Laude. Education: Ph.D., Plant and Soil Science, Texas Tech University, Lubbock, TX (2018) B.S. (Honors), Plant Breeding and Genetics, Punjab Agricultural University, Punjab, India (2014) Research Interests: Dr. Kaur’s work investigates plant ecology, plant-microbial symbiosis, conservation strategies for rare species, and population genetics. She uses orchids as model organisms to study tripartite associations between plants, fungi, and bacteria, emphasizing molecular mechanisms and ecological adaptation. Her research bridges theoretical and applied aspects, aiming to inform species recovery and management through microbial and genetic insights. Publications: Recent studies explore orchid diversification drivers (habitat instability, founder events), fungal specificity in Vanilla species, and bacterial communities linked to host phenology. Her work consistently highlights symbiotic relationships, spatial heterogeneity effects, and microbial contributions to plant survival and evolution. Awards and Honors: No scientific awards or fellowships are listed in the provided information. Advising and Grants: Dr. Kaur advises students in her courses BIO 203 and BIO 307. While specific grants are not detailed, her research program indicates active engagement in funding initiatives. Her studies on rare plant species recovery likely involve collaborative grants and conservation partnerships. Labs and Teams: No specific laboratory or team affiliations are mentioned in the provided text.
Dr. Peter Zilm is an Associate Professor in the Adelaide Dental School at the University of Adelaide, part of the Faculty of Health and Medical Sciences. His research focuses on bacterial biofilm dynamics, particularly in oral pathogens linked to caries and periodontal disease, and their systemic implications. Key projects include developing oral microbiome transplantation therapies and pH-responsive 'intelligent particles' as antimicrobial agents. Collaborations with chemical engineers and industry aim to advance nano-technological solutions for dental applications. Research interests span biofilm inhibition mechanisms, the gut microbiome's role in gastrointestinal inflammation triggered by periodontitis, and the development of novel antimicrobial coatings for medical devices. His work integrates advanced technologies like cellular impedance (exCELLigence) and next-generation sequencing. He has secured NHMRC funding (2020-25) for oral microbiome transplantation research. Projects are based at the Helen Mayo South Building and involve collaborations with institutions in Spain, the UK, and elsewhere. Dr. Zilm supervises Honours, Masters, and PhD students across multiple translational projects, including anti-biofilm agents, oral microbiome transplantation efficacy, and the relationship between oral bacteria and systemic diseases like cardiovascular issues and cancer. His recent publications highlight innovations in nano-technology, biofilm disruption, and probiotic interventions for periodontal disease.
Håvard Kauserud is a Professor at the Department of Genetics and Evolutionary Biology, University of Oslo. His research spans molecular ecology, evolutionary biology, and fungal genetics with a focus on mycorrhizal and endophytic fungi, climate change impacts, and habitat fragmentation effects. Section of Genetics and Evolutionary Biology Teaches advanced courses in fungal evolution and bioinformatics Research projects include: Molecular ecology of mycorrhizal fungi Speciation mechanisms in forest fungi Climate change effects on mushroom phenology Comparative genomics of Serpulaceae Endophytic fungi in boreal mosses Recent work explores fungal community dynamics across boreal forests, indoor mycobiomes, and genome expansion patterns in Mycena . Collaborative studies investigate arthropod dispersal of fungal spores, climate adaptation signatures, and trait-based fungal ecology databases.
Christopher Blackwood is a Professor in the Department of Plant Biology at Michigan State University, with additional appointments in Plant Soil and Microbial Sciences and the Ecology, Evolution & Behavior Program. Based in the Plant Biology Lab (S124), his research examines soil-plant-microbe interactions and their critical roles in ecosystem processes and soil carbon dynamics. Education: Ph.D. from Michigan State University His research spans community ecology of plants and microorganisms, plant-fungal interactions, root traits, and soil biogeochemistry. Current projects investigate coexistence mechanisms of closely related plant species, cascading effects of tree root traits on pathogens and soil carbon, forest restoration dynamics, and urban green roof performance. His work integrates field studies with molecular approaches to understand belowground ecological processes. Analysis of recent publications (2021-2025) reveals consistent focus on plant-soil feedbacks, fungal community ecology, and soil carbon dynamics. Key themes include mycorrhizal influences on plant-fungal coevolution, root trait evolution across plant lineages, and applications to sustainable land management. His work bridges fundamental ecological theory with practical restoration ecology. Dr. Blackwood leads an active research laboratory funded by competitive grants, mentoring graduate students in plant and soil ecology. His team investigates soil biota across diverse ecosystems including temperate forests, agricultural landscapes, and urban green infrastructure. His laboratory conducts research on soil organism ecology, plant-microbe interactions, and ecosystem functioning, with ongoing projects in forest restoration, green roof optimization, and soil carbon dynamics across multiple spatial scales.
Cassandra Swett is an Associate Professor in Cooperative Extension at the University of California, Davis. Her research focuses on fungal pathogen ecology in vegetables and field crops, particularly investigating how adaptive water use strategies impact plant-pathogen interactions. She examines the effects of deficit irrigation, soil salinity, and water recycling on disease dynamics in crops such as tomatoes, hemp, strawberries, and nursery plants. Her work bridges fundamental microbial ecology with applied agricultural solutions to address challenges posed by water scarcity and climate change. Key research areas include: (1) managing Fusarium wilt and root-knot nematode complexes in tomatoes under water-stressed conditions, (2) optimizing irrigation practices to reduce soil-borne disease risks in nursery crops, and (3) identifying resistance-breaking pathogen strains threatening California agriculture. Swett collaborates closely with growers to translate scientific findings into practical management strategies. Her lab (http://swettlab.faculty.ucdavis.edu/) develops disease forecasting tools, evaluates water conservation techniques, and explores symbiotic microbial interactions that enhance crop resilience. She emphasizes co-management approaches that balance disease control with sustainable resource use.
Prof. Martijn Bezemer is a Professor of Ecology of Plant-Microbe-Insect Interactions at Leiden University's Institute of Biology Leiden (IBL), Department of Plant Sciences. His research focuses on understanding how plants influence soil biota and how these changes affect subsequent plant growth and insect interactions. Key areas include grassland ecosystems, horticultural soils, and soil microbiome applications in restoration and agriculture. He leads a team of PhD students and postdocs conducting experiments in greenhouses, growth chambers, and field settings. Current projects include TRIPS (Thrips Reduction In Production Systems), Self Defense (mimicking plant defense mechanisms), and Soils2Guts (soil microbiome health impacts). Collaborations with restoration practitioners aim to enhance grassland biodiversity through soil inoculation and plant-driven soil improvements. Recent work includes studies on blue-green roof vegetation dynamics, plant community legacy effects on decomposition, and steering crop microbiomes via soil feedback principles. His research bridges fundamental ecology with applied solutions for sustainable agriculture and ecosystem restoration.
Prof. Dr. Eileen Eckmeier serves as Director of the Institute for Ecosystem Research at Christian-Albrechts-University of Kiel and holds a W3 Professorship in Geoarchaeology and Environmental Risks. She concurrently acts as Co-spokesperson of the ROOTS Cluster of Excellence (since October 2023), Spokesperson of the ROOTS subcluster "Socio-Environmental Hazards," Vice President of DEUQUA (German Quaternary Association), and Board member of multiple academic organizations including the Soil and Archaeology Working Group of the German Soil Science Society. Her educational background includes a Dr. sc. nat. from the University of Zurich (2007) with award from the Faculty of Mathematics and Natural Sciences for her dissertation "Detecting prehistoric fire-based farming using biogeochemical markers," and a Diploma in Geography from the University of Cologne (2002) with minors in Soil Science, Prehistory and Early History, and History. Eckmeier's research centers on soil geography and geoarchaeology , particularly human-environment relationships during the Holocene where soils serve as both resources and archives of human activity. Her work investigates changes in soil properties due to land use and climate change across spatial and temporal scales, with geographical focus spanning European and Asian loess/steppe landscapes (Central Europe, Middle East, Mongolia), North Frisian Islands, the Alps, and African savannahs. She employs interdisciplinary approaches combining soil science, archaeology, and paleoenvironmental reconstruction. Analysis of her 15 most recent publications reveals strong emphasis on paleoenvironmental reconstruction through soil archives , with significant contributions to understanding prehistoric agriculture, loess-paleosol sequences, and human impacts on landscapes. Key thematic clusters include Neolithic fertilization practices, ridge and furrow cultivation systems, wildfire impacts on soils, and tectonic-landscape-human interactions in critical regions like the Kenya Rift and European loess belts. Award from Faculty of Mathematics and Natural Sciences, University of Zurich As Director of the Institute for Ecosystem Research and Co-spokesperson of the ROOTS Cluster of Excellence, Eckmeier leads major research initiatives examining societal, environmental, and cultural change. Her leadership extends to the Scientific Advisory Board of the Stone Age Park Dithmarschen and multiple institutional boards focused on Quaternary research and soil-archaeology integration. Current projects investigate socio-environmental hazards through the ROOTS framework while maintaining active fieldwork in diverse global landscapes from European loess regions to African savannahs. Eckmeier directs research teams within the Institute for Ecosystem Research's Geoarchaeology and Environmental Risks group, coordinating work across multiple specialized units including Geobotany, Environmental History and Archives, Applied Ecology and Paleoecology, and Technical Platform teams. Her ROOTS Cluster leadership integrates these efforts into a comprehensive framework examining human responses to environmental change over millennia.
Andrea Nardini is a Full Professor at the University of Trieste , Department of Environmental Biology, specializing in Plant Physiology and ecophysiological responses to environmental stressors. He serves as Coordinator for the Environmental Biology Board of Studies and member of multiple doctoral college boards (XXIX–XXXIX cycles). His research group focuses on Plant Physiological Ecology , investigating hydraulic strategies, drought tolerance, and xylem functionality across diverse species. University of Trieste, Department of Environmental Biology Full Professor of Plant Physiology Coordinator, SM56 - Environmental Biology Board of Studies Research areas: Plant Hydraulics, Drought Adaptation, Ecophysiology His recent work analyzes climate extremes' impacts on grasslands, xylem embolism reversal mechanisms, and green roof plant water relations. Collaborative projects include the H2020 Graphene Flagship and national grants on drought-resistant crops. Students in his group (Agnese Cometto, Giada Caorsi, et al.) explore topics from lichen symbiosis to biomonitoring applications. While no explicit awards are listed, his 15+ recent publications highlight leadership in plant stress physiology and environmental adaptation.
Associate Professor Paul Nevill is affiliated with Curtin University's School of Molecular and Life Sciences within the Faculty of Science and Engineering. He holds roles including leadership in the MBioMe group (Minesite Biodiversity Monitoring with eDNA), membership in the TrEnD lab, and involvement with the ARC Training Centre for Healing Country. His research focuses on molecular approaches for species conservation, restoration genetics, and eDNA-based biodiversity monitoring. He collaborates with government agencies, industries, and academic institutions to advance ecological restoration and conservation practices. Paul's educational background includes extensive training in molecular ecology and conservation biology, reflected in his academic publications and projects. He teaches and coordinates units like ENST3000 at Curtin, and supervises HDR students, emphasizing hands-on mentorship in ecological research. His research interests span molecular ecology, restoration genetics, and the application of eDNA to monitor ecosystems. Notable projects include using spider webs and airborne particles for vertebrate detection, assessing soil microbial communities in mine restoration, and evaluating the impacts of land-use changes on root-fungal networks. His work bridges laboratory-based genomics with field ecology, addressing both theoretical and applied conservation challenges. Paul's collaborations extend to global initiatives, such as the 500 Plastome Project for plant conservation, and he actively participates in policy-relevant discussions on ethical seed sourcing and restoration targets. His contributions to ecological solutions are further highlighted through involvement in projects like microbial inoculation for mine-waste substrates and the use of miniaturized spectrometers for soil health assessment. In terms of awards, while no specific prizes are listed, his leadership roles and active membership in the Society for Ecological Restoration underscore his commitment to advancing conservation practices. His work has been published in high-impact journals like Trends in Plant Science , Biological Reviews , and Molecular Ecology , reflecting the interdisciplinary nature of his research.