Mather Khan | Plant Biotechnology | Excellence in Plant Research

Dr. Mather Khan | Plant Biotechnology | Excellence in Plant Research

University of Missouri | United States

Dr. Mather A. Khan is a Plant Molecular Biologist with over a decade of expertise in metal homeostasis, nutrient regulation, and abiotic stress responses. His research integrates yeast systems, high-throughput molecular screening, and multi-omics approaches to unravel plant-environment interactions. He has significantly advanced knowledge of iron sensing, transporter biology, and crop biofortification strategies. Dr. Khan has successfully led independent and collaborative research programs across renowned institutions in the USA, Germany, and India. His work emphasizes sustainable agriculture, food security, and plant stress biology, resulting in numerous high-impact publications and recognition as a leader in molecular plant sciences.

Author Profiles

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Education

Dr. Khan earned his Ph.D. in Biotechnology from Hamdard University, where he focused on Fusarium wilt resistance in chickpea through microbial and nutrient-based approaches. He completed his M.Sc. in Biotechnology from Barkatullah University, conducting cancer-related research at CNCI Kolkata, and obtained his B.Sc. in Biosciences from the University of Calcutta. To expand his leadership and communication skills, he pursued the prestigious PTLS Certificate Program at the University of Missouri, designed to prepare scientists for team-driven research environments. His multidisciplinary academic training provided a strong foundation in molecular biology, biotechnology, and plant sciences, shaping his career in plant stress research.

Professional Experience 

Dr. Khan has held prominent research positions at leading universities worldwide. As Scientist at the University of Missouri, he advances integrative approaches to decode iron sensing in plants and engineer next-generation transporters for crop nutrition. At Heinrich Heine University, Germany, he spearheaded studies on iron homeostasis and mentored young researchers while contributing to CEPLAS initiatives on crop biofortification. Earlier, as Research Scientist and Postdoctoral Fellow at Missouri, he developed large transcription factor libraries, optimized high-throughput Y1H systems, and pioneered single-cell proteomics. His career demonstrates consistent leadership in innovation, collaboration, and mentoring within plant molecular biology and sustainable agricultural research.

Awards and Recognition 

Dr. Khan’s contributions to plant molecular biology have been widely recognized. He has served as a Panelist for the U.S. National Science Foundation’s Division of Biological Infrastructure, reflecting his standing in the international scientific community. His selection as a Member of the German Cluster of Excellence on Plant Sciences further highlights his expertise. He has been honored as a Plantae Fellow by the American Society of Plant Biologists and received multiple institutional awards, including the Douglas D. Randall Young Scientists Development Fund and Life Sciences Center Travel Award. His early academic excellence was recognized through national science awards in India.

Research Skills

Dr. Khan brings a diverse technical portfolio spanning molecular biology, synthetic biology, plant physiology, and multi-omics integration. His expertise includes CRISPR-based genome engineering, advanced cloning, and design of custom expression vectors. He has developed high-throughput yeast one- and two-hybrid platforms for protein interaction discovery, alongside proteomic, transcriptomic, and metabolomic profiling techniques. His work incorporates live-cell confocal imaging, hydroponic plant systems, and elemental analysis to study plant stress and nutrient responses. Equally strong in computational biology, he applies R and Python for omics integration and data visualization. This breadth enables him to design innovative, interdisciplinary solutions for sustainable agricultural development.

Publications

Ngigi, M., Khan, M., Remus, R., Gupta, S.K., Bauer, P., & Blaby-Haas, C. (2025). “Age-dependent differential iron deficiency responses of rosette leaves during reproductive stages in Arabidopsis thaliana” in Journal of Experimental Botany.

Sinha, R., Zandalinas, S.I., Peláez-Vico, M.Á., Ghani, A., Khan, M.A., Induri, S.P., Bereimipour, A., Ghandour, T., Ogden, A., Huang, S.-S.C., et al. (2025). “bHLH35 mediates specificity in plant responses to multiple stress conditions” in Preprint.

Ngigi, M., Khan, M., Remus, R., Gupta, S.K., & Bauer, P. (2024). “Age-dependent differential iron deficiency responses of rosette leaves during reproductive stages in Arabidopsis thaliana” in Preprint.

Lichtblau, D.M., Baby, D., Khan, M., Trofimov, K., Ari, Y., Schwarz, B., & Bauer, P. (2023). “The small iron-deficiency-induced protein OLIVIA and its relation to the bHLH transcription factor POPEYE” in Preprint.

Nguyen, N.T., Khan, M.A., Castro–Guerrero, N.A., Chia, J.-C., Vatamaniuk, O.K., Mari, S., Jurisson, S.S., & Mendoza-Cozatl, D.G. (2022). “Iron availability within the leaf vasculature determines the magnitude of iron deficiency responses in source and sink tissues in Arabidopsis” in Plant and Cell Physiology.

McInturf, S.A., Khan, M.A., Gokul, A., Castro-Guerrero, N.A., Höhner, R., Li, J., Marjault, H.-B., Fichman, Y., Kunz, H.-H., Goggin, F.L., et al. (2022). “Cadmium interference with iron sensing reveals transcriptional programs sensitive and insensitive to reactive oxygen species” in Journal of Experimental Botany.

Ahmed, J., Jha, S.G., Ameen, G., Buer, B., Fahlgren, N., Farmer, A., Huang, S.-S.C., Bartley, L., Bassel, G.W., Bergmann, D.C., Khan, M.A., et al. (2021). “Vision, challenges and opportunities for a Plant Cell Atlas” in OpenAlex.

Conclusion

Dr. Mather A. Khan exemplifies the integration of molecular plant biology with applied agricultural innovation. His scientific journey reflects consistent advancement of knowledge in nutrient regulation, stress adaptation, and biofortification. With proven ability to lead high-impact projects, mentor researchers, and secure competitive funding, he continues to contribute to global food security and sustainable development goals. His interdisciplinary approach bridges molecular systems with real-world crop improvement strategies. Supported by international recognition, extensive publications, and impactful collaborations, Dr. Khan stands as a distinguished researcher committed to advancing plant science for future agricultural resilience and nutritional improvement on a global scale.

Mahtab Shiravi | Plant Biotechnology | Best Researcher Award

Ms. Mahtab Shiravi | Plant Biotechnology | Best Researcher Award

University of Florence | Italy

Mahtab Shiravi is a dedicated researcher in civil and environmental engineering with expertise in geotechnical engineering, earthquake engineering, and natural hazard risk assessment. Her work focuses on numerical modeling, finite element methods, and risk analysis related to wind, rain, and seismic impacts on urban infrastructure and vegetation. She has developed advanced methodologies for soil-structure and root-soil interactions, contributing to sustainable engineering solutions. Mahtab has been engaged in international collaborations in Italy and Norway, strengthening her scientific contributions in multi-risk assessment. Her strong academic background, research skills, and teaching experience reflect her commitment to advancing resilient engineering practices globally.

Author Profile

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Education

Mahtab Shiravi is pursuing a Ph.D. in Civil and Environmental Engineering at the University of Florence in collaboration with the Norwegian University of Science and Technology. Her doctoral research addresses multi-risk analysis of natural hazards, particularly wind and rain effects on urban trees, combining probabilistic methods and geotechnical modeling. She completed her M.Sc. in Earthquake Engineering at Mazandaran University, where she ranked among the top students, focusing on seismic design and soil-structure interaction. Her B.Sc. in Civil Engineering provided a solid foundation in structural and geotechnical principles. Throughout her studies, she excelled in specialized courses and research-driven learning.

Professional Experience

Mahtab Shiravi has gained diverse professional and teaching experience across academic and applied engineering domains. She has contributed to projects involving geotechnical seismic zonation, railway bridge reinforcement, and fault rupture hazard mitigation in Iran. At an international level, she has worked on geotechnical modeling of soil-root interactions in Norway and advanced risk and resilience analysis in Italy. She has taught engineering courses such as earthquake engineering, strength of materials, and foundation engineering, as well as software applications like ETABS. Her professional journey combines academic teaching, applied research, and collaborative international projects, bridging theoretical advancements with practical engineering applications.

Awards and Recognition

Mahtab Shiravi has received multiple honors for her academic and research achievements. She was awarded by the Norwegian Embassy for her outstanding paper presented at the International Conference on Seismology and Earthquake Engineering. She earned the Ministry of Science, Research, and Technology fellowship for exceptional talents during her Master’s studies. Her consistent academic excellence is reflected in her ranking among the top students in both undergraduate and postgraduate programs. Beyond formal recognitions, her participation in international conferences and collaborative research projects highlights her growing reputation in the global academic community, particularly in geotechnical and earthquake engineering fields.

Research Skills

Mahtab Shiravi possesses strong research skills in advanced numerical modeling, geotechnical engineering, and multi-hazard risk analysis. She is proficient in finite element methods using Plaxis 2D/3D, and has applied probabilistic approaches to study soil-root interaction and urban vulnerability to wind and rain hazards. Her expertise extends to structural engineering software such as ETABS and SAP2000, and programming with Python for analytical modeling. She integrates remote sensing, resilience assessment, and reliability methods into her work. Through interdisciplinary collaborations, she contributes innovative frameworks to understand and mitigate the impacts of natural hazards on infrastructure, urban trees, and environmental sustainability.

Publications

Shiravi, M., Depina, F., Uzielli, M., & Bartoli, G. (2025). “A Novel Methodology for Modeling the Effects of Geometrical Uncertainties in Tree Root-Soil Geometry on Tree Uprooting.”

Shiravi, M., Depina, F., Uzielli, M., & Bartoli, G. (2025). “Numerical Geotechnical Modeling of Tree Root-Soil Interaction: An Insight into the Effects of Uncertainties in Root Geometry on Overturning Failure.”

Shiravi, M., Depina, F., Uzielli, M., & Bartoli, G. (2023). “A Quantitative Framework for Multi-Risk Analysis of Wind and Rain on Trees.”

Shiravi, M., & Moosavi, M. (2023). “Numerical Modeling of a New Mitigation Measure for Reverse Surface Fault Rupture Hazards Effects on Buildings.” Journal of Seismology and Earthquake Engineering.

Shiravi, M., & Moosavi, M. (2018). “Numerical Evaluation of Surface Fault Rupture Hazards on Buildings.” Bulletin of Earthquake Science and Engineering (BESE, Persian).

Shiravi, M., & Moosavi, M. (2018). “Seismic Response Analysis of Municipal Solid Waste Landfill in Developed Urban Areas: A Case Study in Mashhad (Iran).”

Shiravi, M., & Moosavi, M. (2015). “Shear Wave Velocity Deposit Zonation in the City of Babolsar.”

Conclusion

Mahtab Shiravi represents a new generation of engineers dedicated to addressing the challenges of natural hazards through innovative and sustainable solutions. With a strong academic foundation, international exposure, and practical teaching experience, she bridges the gap between theory and application in civil and environmental engineering. Her research on multi-risk assessment and soil-root interactions offers valuable insights for resilient infrastructure and ecological safety. Recognized for her academic excellence and scientific contributions, she continues to expand her expertise across interdisciplinary domains. Her trajectory reflects both leadership potential and a commitment to advancing engineering science for global sustainability.

Birsen Cevher-Keskin | Plant Genetics | Best Researcher Award

Assoc. Prof. Dr. Birsen Cevher-Keskin | Plant Genetics | Best Researcher Award

The Scientific and Technological Council of Turkey (TUBITAK), Turkey

Author Profile

🌿 DR. BİRSEN CEVHER-KESKİN: PIONEER IN PLANT MOLECULAR BIOLOGY AND BIOTECHNOLOGYINTRODUCTION

INTRODUCTION

Dr. Birsen Cevher-Keskin is an Associate Professor at TÜBİTAK Marmara Research Center’s Genetic Engineering and Biotechnology Institute. She specializes in plant molecular biology, genomics, and biotechnology, focusing on enhancing crop resilience to environmental stresses.

📚 EARLY ACADEMIC PURSUITS

Dr. Cevher-Keskin earned her Ph.D. in Molecular Biology and Genetics, concentrating on plant stress responses. Her early research delved into abscisic acid-regulated gene expression in bread wheat, laying the groundwork for her future endeavors in plant stress physiology.

🧪 PROFESSIONAL ENDEAVORS

At TÜBİTAK Marmara Research Center, Dr. Cevher-Keskin leads research projects aimed at understanding and improving plant responses to abiotic stresses. Her role as a chief senior scientist involves mentoring emerging researchers and collaborating on international projects.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS ON Plant Genetics

Dr. Cevher-Keskin’s research encompasses:

  • Abiotic Stress Tolerance: Investigating drought-responsive gene expression in wheat and other crops to enhance stress tolerance.

  • Endomembrane Trafficking: Exploring the roles of ARF1 and SAR1 GTPases in plant endomembrane systems.

  • Phytoremediation: Assessing the potential of plants like Brassica nigra in remediating heavy metal-contaminated soils.

🌍 IMPACT AND INFLUENCE

Her work has significantly advanced understanding of plant stress responses, contributing to the development of crops with improved resilience to environmental challenges. Her research on endomembrane trafficking has provided insights into plant cellular processes.

📈 ACADEMIC CITATIONS AND PUBLICATIONS

Dr. Cevher-Keskin’s publications have garnered 690 citations, reflecting her research’s impact. Notable works include studies on abscisic acid-regulated gene expression and the role of ARF1 and SAR1 GTPases in plants.

🏅 HONORS & AWARDS

While specific awards are not detailed in the available information, Dr. Cevher-Keskin’s leadership in significant research projects and her role as a chief senior scientist highlight her recognition in the scientific community.

🌐 LEGACY AND FUTURE CONTRIBUTIONS

Through her extensive research and mentorship, Dr. Cevher-Keskin is poised to leave a lasting legacy in plant biotechnology, contributing to global food security and sustainable agriculture.

🌠 FINAL NOTE

Dr. Birsen Cevher-Keskin’s dedication to plant molecular biology and biotechnology continues to drive advancements in crop resilience and environmental sustainability. Her interdisciplinary approach and commitment to research excellence inspire future scientists in the field.

📑 NOTABLE PUBLICATIONS 

Comparative Analysis of Protein Extraction Protocols for Olive Leaf Proteomics: Insights into Differential Protein Abundance and Isoelectric Point Distribution
  • Authors: Bihter Uçar, Merve Öztuğ, Mahmut Tör, Nurçin Çelik-Öztürk, Filiz Vardar, Birsen Cevher-Keskin
  • Journal: ACS Agricultural Science & Technology
  • Year: 2025
Genomic Surveillance and Molecular Characterization of SARS-CoV-2 Variants During the Peak of the Pandemic in Türkiye
  • Authors: Faruk Berat Akçeşme, Tuğba Kul Köprülü, Burçin Erkal Çam, Şeyma İş, Birsen Cevher Keskin, Betül Akçeşme, Kürşad Nuri Baydili, Bahar Gezer, Jülide Balkan, Bihter Uçar et al.
    Journal: Biochemical Genetics
    Year: 2024
Synchronization of Circadian Clock Gene Expression inArabidopsisandHyaloperonospora arabidopsidisand its Impact on Host-Pathogen Interactions
  • Authors: Osman Telli, Deniz Göl, Weibo Jin, Birsen Cevher-Keskin, Yiguo Hong, John M. McDowell, David J. Studholme, Mahmut Tör
    Journal: Preprint
    Year: 2024
Deciphering Drought Response Mechanisms: Transcriptomic Insights from Drought-Tolerant and Drought-Sensitive Wheat (Triticum aestivumL.) Cultivars
  • Authors: Birsen Cevher-Keskin, Yasemin Yıldızhan, A. Hediye Sekmen-Çetinel, Osman Uğur Sezerman, Buğra Özer, Rümeysa Fayetörbay, Selma Onarıcı, İsmail Türkan, Mahmut Tör
    Journal: Preprint
    Year: 2023

Moleküler Genetik Tanı Yöntemleri

  • Authors: Şaban Tekin, Birsen Cevher Keskin
    Journal: Book Chapter
    Year: 2023