I am a terrestrial population, community, and ecosystem ecologist interested in understanding how global change pressures influence biotic populations and community states, and how potential shifts in trait and/or species distributions will affect ecological functioning in arid, semiarid, and subalpine ecosystems. I am currently an assistant professor in the Department of Biology at New Mexico State University where I am the PI of the Global Change Ecology Lab (GCEL).
Professor in the department of Entomology at Rutgers University and also a member of the graduate programs in Ecology and Evolution and Microbiology and Biochemistry. I am primarily a molecular ecologist examining how populations of invasive species change upon arrival and expansion and, in the case of disease vectors, how they affect epidemiological landscapes and risk estimates. From 2008-2013 I was the lead PI at Rutgers on a cooperative agreement funded by USDA-ARS to develop and test Area-wide Integrated Mosquito Management strategies to control Aedes albopictus, the Asian tiger mosquito. In July 2017 I became the Director of the Center for Vector Biology, a program that provides accreditation, continuing education and broadly supports the extended NJ Mosquito Control community. I have developed a strong extension program working with professional mosquito control programs using vector biology, ecology and evolution to develop effective and efficient strategies for control. I have also spearheaded urban mosquito control by residents through Citizen Action Through Science (Citizen AcTS): http://vectorbio.rutgers.edu/CitizenAcTS.htm. Founding member of the Worldwide Insecticide resistance Network (WIN): https://win-network.ird.fr/ and founding member of InSITe (Innovative Strategies for Invasives Team) using environmental DNA (eDNA) and risk analysis to detect and contain invasive species https://www.insiteru.org.
Dr. Suresh Gawande is a Principal Scientist at ICAR-Directorate of Onion and Garlic Research, Pune, India. He obtained his Ph.D. from the Indian Agricultural Research Institute, New Delhi, India in the discipline of Plant Pathology. His areas of interest are genomics of biotic and abiotic stress, host-pathogen-vector interaction of tospoviruses, microbial metagenomics, plant-pathogen diagnostics, mechanism of genetic and induced host plant resistance. Currently, he is working on biotechnological approaches for biotic stress management.
Dr. Gillespie is an evolutionary biologist with broad interests in organismal and molecular evolution. The major focus of his current research is deciphering the mechanisms by which obligate intracellular species of Rickettsiales (Alphaproteobacteria) invade, survive and replicate within eukaryotic cells.
In research funded by the National Institutes of Health, Dr. Gillespie utilizes phylogenetics, comparative genomics and bioinformatics to guide experimental research on various pathogenic species of Rickettsia and their associated arthropod vectors. His early research resulted in the reclassification of Rickettsia species and the identification of many lineage-specific pathogenicity factors. Through years of intense scrutinization of dozens of diverse rickettsial genomes, Dr. Gillespie and colleagues have described a large, dynamic mobilome for Rickettsia species, resulting in the identification of integrative conjugative elements as the vehicles for seeding Rickettsia genomes with many of the factors underlying obligate intracellular biology and pathogenesis. Via an iterative process of genome sequencing, phylogenomics, bioinformatics, and classical molecular biology and microbiology, Dr. Gillespie continues to lead and assist research projects on the characterization of rickettsial gene and protein function, as well as the description of cell envelope glycoconjugates.
Dr. Rosanna Giordano is Assistant Professor at Florida International University, Institute of Environment.
She received her undergraduate degree from Dowling College, her master’s degree from the University of Northern Iowa, and her doctoral degree in Entomology from the University of Illinois Urbana-Champaign.
Dr. Giordano's primary research interests are focused on the population structure and genomics of invasive agricultural insect species such as aphids and honey bees. How the microbiome affects insect’s metabolism and their ability to cope with control strategies such as resistant plant varieties and insecticides. As well the development of genomic tools to track invasive insect species and to use insects as bio monitors of environmental pollution.
I am a scientist working and living in Puerto Rico. I value enthusiasm about discovery, and the collective nature of scientific enterprise. I also hope that what we learn in the process is going to be used to improve our lives.
I am a Professor within the Biology Department at Universidad de Puerto Rico, Recinto de Rio Pidras.
My research focus is social insect behavior. I study evolution and genetics of physiological mechanisms of behavior to understand integration of individuals into the functional social insect colony.
Stanislav Gorb is professor of zoology at the University of Kiel. His research focuses on morphology, structure, biomechanics, physiology, and evolution of surface-related functional systems in animals, as well as the development of biologically inspired technological surfaces and systems. Gorb has authored four books, more than 200 papers in peer-reviewed journals, and four patents. His awards include Science Award of the Donors’ Association for the Promotion of Science and Humanities in Germany (Stifterverbandpreis für die Deutsche Wissenschaft), International Forum Design Gold Award and Materialica "Best of" Award. He is member of Academy of the Science and Literature Mainz, and of the National Academy of Sciences Leopoldina.
Brock Harpur is an Assistant Professor at Purdue University. His work explores the evolution and genetics of honey bees. Brock completed his Ph.D. on population genomics of honey bees at York University. Brock has been awarded the prestigious Julie Payette Research Scholarship from the National Science and Engineering Research Council, an Ontario Graduate Scholarship, the Entomological Society of Canada’s President’s Prize, and was an Elia Research Scholar during his time at York University.
Dr. He is Associated Professor of Entomology of Center for Research and Development of Fine Chemicals of Guizhou University. His lab focuses on Insect Molecular Biology and Pest management, especially on insect olfactory mechanism and insect development. He received his PhD in 2012 from Nanjing Agricultural University.
Junior Research Group Leader at Technical University of Munich, Germany. Before: researcher at the Senckenberg Biodiversity and Climate Research Centre, Frankfurt. PhD from the University of Copenhagen, Denmark. Diploma (M.Sc.) from Philipps-University Marburg, Germany. Member of the German Young Academy; German Representative of the International Biogeography Society.
Professor of Entomology at the State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, Fujian Agriculture and Forestry University. Main research interests of Xiaolei Huang's lab include insect diversity, systematics, biogeography, behavior, species interactions. His lab focuses on different taxonomic groups (e.g. insect-symbiont, insect-plant, insect-insect) to understand ecology and evolution of the diversity of species interactions. He also works actively on some general issues including data sharing and open science in ecology and evolution, and trends of biological taxonomy. During the recent years, the lab has been establishing specimen collection and DNA barcode library of subtropical aphids and scale insects in China, as well as research platform for studying species interactions and insect ecology and evolution across different disciplines from field ecology to genomics.
In our lab we work on bark beetle functional genomics, understanding tree defenses against herbivores and pathogens, insect chemical ecology, and insect biodiversity.
We conduct our research across multiple scales and we use available tools – established and cutting-edge – to search for answers to complex entomological and ecological questions.