My academic journey began with an MSc in Plant Breeding and Genetics at Suez Canal University, where my research focused on evaluating drought tolerance and disease resistance in wheat, providing a solid foundation in abiotic stress tolerance. This early work fueled my commitment to understanding and addressing plant resilience under stress conditions. Thanks to an Erasmus Mundus scholarship, I pursued my PhD at Complutense University of Madrid, where I investigated the molecular mechanisms underlying aluminum stress tolerance in rye. Notably, I was awarded a postdoctoral fellowship funded by AECID just before defending my thesis—a pivotal achievement that underscored the relevance of my research. This fellowship enabled me to join the National Center of Biotechnology (CNB) in Madrid. I gained expertise in proteomics, gene expression analysis, and molecular tool development to improve plant abiotic stress resilience. These experiences greatly expanded my knowledge of gene regulation and stress physiology and led to high-impact publications in peer-reviewed journals.
Dr. Abd El Moneim’s research encompasses multiple domains, including the study of morphological , physiological, and molecular mechanisms that govern plant responses to stress factors such as salinity, drought , aluminum toxicity, heat, and pathogens. His work in identifying gene families and stress-responsive proteins is complemented by his efforts to apply DNA barcoding and chloroplast genomic assemblies for species identification and development of molecular markers, as well as contributing to taxonomical and evolutionary concepts and identifying transcriptional regulators critical for stress adaptation, with particular emphasis on crops like wheat and wild plants adapted to extreme environments. His methodologies include designing and analyzing field trials , protein analysis, nucleic acid extraction, fingerprinting , GWAS , and the characterization of chloroplast genomes. Dr. Abd El Moneim’s expertise in molecular breeding and genomics focuses on improving abiotic stress tolerance in staple crops, especially for agriculture in developing countries.
Professor of Biology at the University of Antwerp. Member of the Flemish Science Foundation review board. Editor of the journals Journal of Plant Research, Frontiers in Plant Science and PLOS ONE
I am a Senior Scientist at the Indian Agricultural Research Institute, involved in pursuing basic and applied research in the field of Nematology and Entomology.
As an alternative to Bt Cry toxins for insect pest management, a number of novel bacterial protein toxins (Txp40, TcaB) derived from an insect-parasitic bacterium Photorhabdus akhurstii (symbiont of nematode Heterorhabditis indica) were characterized. The mode of action and pathogenesis process of these toxins were investigated in different lepidopteran insects including Galleria mellonella, Helicoverpa armigera, Spodoptera litura and S. exigua. The potential receptor proteins and their binding sites for these toxins were unravelled from the insect midgut epithelial cells.
My other research interests include molecular basis of plant-nematode interaction. Using RNAi, functional analysis of several plant parasitism processes was deciphered including the role of Mi-cpl-1 in metabolic process, FLP and NLP neuropeptides in neuromusculation process, ODR and TAX proteins in chemotaxis process, cell wall degrading enzymes and various MSP effectors in infection process of plant nematodes. I have contributed in understanding the genetic basis of nematode resistance in rice via genome-wide association mapping coupled with omics-driven strategies. I am currently pursuing genome editing research for developing nematode resistance by adopting CRISPR-Cas9 strategy in Arabidopsis, rice and tomato.
Dr. Aarti Gupta is a Research Scientist at the Institute of Genomics for Crop Abiotic Stress Tolerance (IGCAST), Texas Tech University.
She obtained her Ph.D in Plant Genetics and has expertise in the area of plant stress biology and plant molecular biology
Prof. Koji Mikami is Professor of Department of Food Resource Development in School of Food Industrial Sciences at Miyagi University, Japan. He is also President of the Japanese Society of Applied Phycology. Prof. Mikami received his PhD in Plant Science from Hokkaido University in 1990. His area of expertise focuses on the physiology and molecular biology of development and environmental stress response in seaweeds, and the biotechnology of seaweeds (gene transfer and genetic transformation, application of seaweed genes for land green plants).
Sushma Naithani is an Associate Professor Senior Research in the Department of Botany and Plant Pathology at Oregon State University, USA. The current focus of her research is on understanding information flow in living systems and how evolution shapes this flow using systems-level pathway modeling supported by high-quality biocuration, gene-orthology-based predictions, and analysis of omics data. She serves as a senior curator for the Plant Reactome knowledgebase. Sushma has authored 31 peer-reviewed refereed research articles in high-impact journals, including Nature, Nature Biotech, PNAS, etc. One of her research papers has been selected by the 'Faculty of 1000 Biology'. In addition, she has authored six book chapters and one Open Textbook (S. Naithani (2021): History and Science of Cultivated Plants published by Oregon State University Open Educational Resources, EBOOK ISBN: 978-1-955101-08-0, available at https://open.oregonstate.education/cultivatedplants). She is also an Associate Editor for Frontiers in Plant Science-Plant Biotechnology and served as the Editor-in-chief of the Current Plant Biology (2017-2023).