Assoc. Prof. Dr. Yingying WU | Functional Genomics | Research Excellence Award 

Assoc. Prof. Dr. Yingying WU | Functional Genomics | Research Excellence Award 

Institute of Edible Fungi/ Shanghai Academy of Agricultural Sciences | China

WU Yingying is an Associate Researcher at the Shanghai Academy of Agricultural Sciences with expertise spanning fungal genetics, molecular breeding, and synthetic biology. Her research primarily focuses on the genetic improvement of industrially cultivated edible mushrooms and the biosynthesis of active natural products from macrofungi. She has made significant contributions to understanding fungal genome structure, functional genes, and metabolic pathways, particularly in Hypsizygus marmoreus and Flammulina filiformis. Her work integrates genome-wide marker development, whole-genome sequencing, functional gene validation, and metabolomic profiling to enhance mushroom quality, stress tolerance, and nutritional value. In addition, she has contributed to microbial taxonomy and natural product biosynthesis, including studies on actinobacteria and antibiotic-related pathways. Her research has been widely published in leading international journals, reflecting a strong impact at the intersection of agricultural biotechnology, fungal genomics, and functional metabolite research.

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Dr. May Morris | Biological Data Science | Research Excellence Award

Dr. May Morris | Biological Data Science | Research Excellence Award

Institut des Biomolécules Max Mousseron / CNRS | France

Dr. May C. Morris is an internationally recognized researcher in Biological Data Science, cellular pharmacology and chemical biology, specializing in cancer cell signaling and therapeutic innovation. Her work focuses on kinase and phosphatase regulation, protein–protein interactions, and cell cycle control in oncology. She is a pioneer in the development of fluorescent peptide biosensors that enable real-time monitoring of kinase activities in living cells and tumor tissues. Her research has also led to innovative peptide-based and allosteric kinase inhibitors with strong translational potential. Combining biophysics, peptide engineering, and advanced imaging, she bridges fundamental biology with precision medicine. She has made significant contributions to biomarker discovery and functional oncology. Dr. Morris is also a committed scientific leader and advocate for mentoring and equality in science.

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Visible and Near Infrared Absorption and Fluorescence Studies of the Adsorption and Coverage of Doxorubicin on Single-Walled Carbon Nanotubes

Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2026 · Open Access · 0 Citations

Ethaverine and Papaverine Target Cyclin-Dependent Kinase 5 and Inhibit Lung Cancer Cell Proliferation and Migration

ACS Pharmacology & Translational Science, 2024 · Open Access · 2 Citations

Fbxo7 Promotes Cdk6 Activity to Inhibit PFKP and Glycolysis in T Cells

Journal of Cell Biology, 2022 · Open Access

Assoc. Prof. Dr. Jian Gao | Functional Genomics | Research Excellence Award

Assoc. Prof. Dr. Jian Gao | Functional Genomics | Research Excellence Award

Lishui University | China

Jian Gao is a researcher in crop genetics and breeding with expertise in radish genomics and functional genomics. His research centers on the genetic regulation of anthocyanin biosynthesis and the molecular mechanisms of plant responses to heavy metal and abiotic stresses. He applies genome-wide analysis, transcriptomics, and bioinformatics to identify key functional genes and regulatory networks. His studies on gene families such as GST and GRAS have provided important insights into stress tolerance and quality trait formation in radish. He has also contributed to microRNA and regulatory gene research related to environmental stress responses in plants. Beyond plant science, his work extends to applied genomics using high-throughput sequencing technologies. His research has been published in leading international journals in plant science and molecular biology. He has played leading and collaborative roles in multiple competitive research projects. His work has resulted in authorized patents and the development of improved radish varieties. He is actively involved in graduate training and interdisciplinary teaching in genomics and bioinformatics.


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Ms. Victoria Akintayo | Genomics | Research Excellence Award 

Ms. Victoria Akintayo | Genomics | Research Excellence Award 

Fujian Agriculture and Forestry University | China

Victoria Oluwapelumi Akintayo is a plant breeding and genetics researcher with strong interdisciplinary expertise spanning crop improvement, molecular genetics, sustainability, and community-driven agricultural development. Her research focuses on understanding the genetic and molecular mechanisms underlying plant stress tolerance, nutrient efficiency, and heavy metal accumulation, with particular emphasis on economically important crops such as cassava, maize, and bast fiber crops. She has applied advanced genomic and molecular approaches, including marker development, BSA-seq, RNA-seq, and quantitative data analysis, to identify candidate genes relevant to crop resilience and productivity. Beyond laboratory and field-based research, she is deeply engaged in circular economy initiatives, youth capacity-building, and environmentally sustainable agriculture, integrating scientific innovation with social impact. Her work has been recognized through competitive international awards, peer-reviewed publications in high-impact journals, and leadership roles in global food systems and sustainability platforms.



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Prof. Valentina Feodorova | Bioinformatics | Research Excellence Award

Prof. Valentina Feodorova | Bioinformatics | Research Excellence Award

Saratov State University for Genetics, Biotechnology and Engineering named after N.I. Vavilov | Russia

Valentina A. Feodorova is a distinguished professor and laboratory head with internationally recognized expertise in microbiology, immunology, and infectious disease research. Her scientific work focuses on molecular immunology, zoonotic and anthroponotic infections, vaccine and immunodiagnostic development, and host–pathogen interactions, with particular emphasis on highly dangerous and emerging infectious agents. She has made significant contributions to understanding immune mechanisms, allergology, and microbial pathogenesis, integrating classical microbiology with modern molecular and bioinformatics approaches. Her research leadership spans academic, veterinary, and federal research institutions, where she has guided multidisciplinary teams and advanced translational research in biodefense, biosafety, and nanobiotechnology. Widely published and actively engaged in international scientific communities, Professor Feodorova is recognized for her impact on infectious disease prevention, diagnostics, and immunological innovation.

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Prof. Jabed Iqbal | Proteogenomics | Research Excellence Award 

Prof. Jabed Iqbal | Proteogenomics | Research Excellence Award 

Singapore General Hospital | Singapore

Dr. Jabed Iqbal is an academic pathologist and clinician-scientist whose research centers on the molecular and pathological basis of cancer, particularly hematological malignancies and breast cancer. His work integrates histopathology, molecular biology, and translational diagnostics to enhance precision in cancer classification and clinical decision-making. He has contributed to the development and application of biomarker-driven diagnostic strategies with relevance to personalized medicine. His research emphasizes translational pathways that bridge laboratory discoveries with clinical practice. Dr. Iqbal has authored numerous peer-reviewed publications that advance understanding of oncologic pathology. He is actively engaged in multidisciplinary and international research initiatives. His expertise supports innovation in diagnostic development and pathology-led research. Collectively, his work has strengthened the role of molecular pathology in modern cancer diagnostics.

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Dr. Shazia Rehman | Bioinformatics | Research Excellence Award 

Dr. Shazia Rehman | Bioinformatics | Research Excellence Award 

Rawalpindi Women University | Pakistan 

Dr. Shazia Rehman is a plant scientist specializing in Bioinformatics, molecular biology, and genetic research. Her work focuses on CRISPR-Cas9 gene editing, phylogenetic and genetic diversity studies, stress physiology, proteomics, metabolomics, and pharmaceutical applications of algae. She is skilled in molecular techniques, tissue culture, and bioinformatics tools for genome analysis and protein structure prediction. Dr. Rehman has published extensively in peer-reviewed journals, including research on plant transcription factors, proteinase inhibitor-II (PI-II) genes, and crop genetic diversity. She has contributed to national and international research projects and received recognition such as the Seal of Excellence from the European Commission. Her research integrates molecular biology, biotechnology, and bioinformatics to advance plant functional genomics and applied plant sciences.

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Citations 467

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Ms. Jingfang Zhang | Systems Biology | Best Researcher Award

Ms. Jingfang Zhang | Systems Biology | Best Researcher Award

Beijing University of Chinese Medicine | China

Dr. Jingfang Zhang, Associate Professor at the School of Life Sciences, Beijing University of Chinese Medicine, is a distinguished researcher in molecular biology, cancer biology, and genome editing. Her work focuses on understanding cellular behavior and disease mechanisms through advanced genetic and pharmacological tools. With expertise in cancer biology and stem cell research, she integrates stem cell biology, pharmacology, and gene regulation. Dr. Zhang has pioneered drug-inducible and multimode CRISPR/Cas systems, including the HIT-Cas9 platform, enabling precise control of gene expression and genome editing. Her groundbreaking innovations have expanded the versatility and safety of genome-editing technologies for therapeutic applications. Her research, published in Nucleic Acids Research, Blood, and Molecular Therapy – Nucleic Acids, advances epigenetics and therapeutic applications. She has also provided key insights into hematologic malignancies and acute myeloid leukemia. Supported by the National Natural Science Foundation of China, she fosters interdisciplinary research and mentors young scientists. Dr. Zhang’s projects bridge molecular biology and translational medicine, opening new avenues for targeted therapies. Her innovations in genome editing and cellular reprogramming are shaping precision medicine, regenerative therapeutics, and the future of molecular life sciences.

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Publications

Wang, Y., Hu, J., & Zhang, J. (2025). Evaluation of abnormal growth-related genes of hematopoietic stem and progenitor cells by combining CRISPR/Cas9 technology with cell counting. Journal of Visualized Experiments: JoVE, (219).

Zhang, J., Chen, L., Zhang, J., & Wang, Y. (2019). Drug inducible CRISPR/Cas systems. Computational and Structural Biotechnology Journal, 17, 1171–1177.

Zhao, C., Zhao, Y., Zhang, J., Lu, J., Chen, L., Zhang, Y., Ying, Y., Xu, J., Wei, S., & Wang, Y. (2018). HIT-Cas9: A CRISPR/Cas9 genome-editing device under tight and effective drug control. Molecular Therapy – Nucleic Acids, 13, 208–219.

Lu, J., Zhao, C., Zhao, Y., Zhang, J., Zhang, Y., Chen, L., Han, Q., Ying, Y., Peng, S., Ai, R., et al. (2018). Multimode drug inducible CRISPR/Cas9 devices for transcriptional activation and genome editing. Nucleic Acids Research, 46(5), e25.

Zhang, J., Kong, G., Rajagopalan, A., Lu, L., Song, J., Hussaini, M., Zhang, X., Ranheim, E. A., Liu, Y., Wang, J., et al. (2016). p53-/- synergizes with enhanced NrasG12D signaling to transform megakaryocyte-erythroid progenitors in acute myeloid leukemia. Blood, 129(3), 358–370.

 

Dr. Jennifer Deger | Alzheimer’s Disease | Young Scientist Award

Dr. Jennifer Deger | Alzheimer's Disease | Young Scientist Award

Baylor College of Medicine | United States

Jennifer Deger is a medical scientist in training at Baylor College of Medicine, pursuing an MD-PhD with a primary research focus on uncovering the genetic and molecular mechanisms driving neurodegenerative diseases such as Alzheimer’s and Parkinson’s. Her work integrates molecular biology, genetics, and neuroscience to better understand neuronal degeneration and identify therapeutic targets for neurological disorders. Under the mentorship of Hugo Bellen and Joshua Shulman, she investigates genetic risk factors and molecular pathways that contribute to brain aging and cognitive decline. With a strong foundation in neuroscience and writing from The University of Texas at Austin, she combines analytical precision with effective scientific communication. Her research experience spans model organism studies and translational approaches linking molecular findings to clinical relevance. Jennifer’s contributions have been recognized through numerous honors, including the BRASS Scholarship and the Sharon E. Plot Mentorship Award for outstanding scientific promise and leadership. Her creative and technical excellence was highlighted when her immunofluorescence images were featured on the BCM MSTP symposium abstract book cover. She has earned top presentation and poster awards at institutional and national symposia, demonstrating her clarity and impact as a communicator of science. Dedicated to mentorship and service, Jennifer plays an active role in fostering collaboration and inclusivity within the scientific community. Her leadership has been acknowledged through awards for community service and educational contributions. She continues to pursue research that bridges discovery and clinical practice, aiming to advance therapeutic strategies for neurodegenerative disease. Through her interdisciplinary approach and commitment to scientific progress, she represents the next generation of physician-scientists transforming neuroscience and precision medicine.

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Featured Publications

Deger, J. M., Hannan, S. B., Gu, M., Strohlein, C. E., Goodman, L. D., Pasupuleti, S., Shaik, Z., Ma, L., Li, Y., Li, J., et al. (2025). Revealing the nervous system requirements of Alzheimer disease risk genes in Drosophila. The American Journal of Human Genetics.

Deger, J. M., Hannan, S. B., Gu, M., Strohlein, C. E., Goodman, L. D., Pasupuleti, S., Shaik, Z., Ma, L., Li, Y., Li, J., et al. (2025, July 30). Revealing the nervous system requirements of Alzheimer’s disease risk genes in Drosophila.

Hill, E. J., Robak, L. A., Al-Ouran, R., Deger, J., Fong, J. C., Vandeventer, P. J., Schulman, E., Rao, S., Saade, H., Savitt, J. M., et al. (2022). Genome sequencing in the Parkinson disease clinic. Neurology Genetics.

Deger, J., Goethe, E. A., LoPresti, M. A., & Lam, S. (2021). Intraventricular hemorrhage in premature infants: A historical review. World Neurosurgery.

Deger, J. (2018). A druggable genome screen identifies modifiers of alpha-synuclein levels via a tiered cross-species validation approach. Journal of Neuroscience.

Deger, J. (2015). The interrelationship of proteasome impairment and oligomeric intermediates in neurodegeneration. Undergraduate Research Symposium, University of Texas at Austin.