Shenkute Goshme | Animal Breeding | Editorial Board Member

Mr. Shenkute Goshme | Animal Breeding | Editorial Board Member

Researcher | Amhara Region Agricultural Research Institute, Debre Birhan Agricultural Research Centre | Ethiopia

Mr. Shenkute Goshme is a dedicated researcher specializing in animal breeding and genetics, with a strong focus on advancing sustainable livestock improvement strategies in diverse agricultural systems. His work centers on evaluating indigenous and crossbred animal populations, identifying key genetic traits that contribute to productivity, adaptability, and resilience under varying environmental conditions. Through systematic phenotypic and genotypic analyses, he contributes to the development of breeding programs that enhance growth performance, reproductive efficiency, and overall herd quality. His research also emphasizes the conservation and utilization of local genetic resources, promoting the value of native breeds in improving food security and rural livelihoods. He actively engages in applied research that supports farmers and livestock producers by generating practical, evidence-based recommendations tailored to regional production systems. His professional experience includes designing and implementing research experiments, analyzing genetic data, conducting field evaluations, and collaborating with multidisciplinary teams to address challenges in animal production. He contributes to scientific knowledge through technical reports, collaborative studies, and knowledge-sharing activities that strengthen the link between research outputs and real-world application. With a commitment to improving livestock productivity and supporting agricultural development, he continues to explore innovative genetic improvement approaches that balance production goals with adaptability, animal welfare, and long-term sustainability. Through his research efforts, he aims to enhance the genetic potential of livestock populations while ensuring that breeding strategies align with ecological conditions, farmer needs, and regional development priorities.

Profile: Scopus 

Featured Publications

Goshme, S., et al. (2025). Positive deviance in adaptation to climate change through farmer-led practices in the Ethiopian Highlands. Climatic Change.

Goshme, S., et al. (2025). Estimation of individual crossbreeding effects and growth curve analysis for growth traits of Dorper × local crossbred sheep in Ethiopia. Livestock Science.

Amirreza Keyvanfar | Infectious diseases | Editorial Board Member

Dr. Amirreza Keyvanfar | Infectious diseases | Editorial Board Member

Infectious Diseases and Tropical Medicine Research Center, Shahid Beheshti University of Medical Sciences, Tehran | Iran

Dr. Amirreza Keyvanfar is a medical researcher with an MD-MPH background whose work integrates clinical insight with cellular and molecular scientific approaches to advance understanding of infectious and tropical diseases. His research interests span disease pathogenesis, diagnostic innovation, therapeutic response assessment, epidemiology, and surveillance, with particular emphasis on linking biological mechanisms to clinical outcomes. He has developed strong expertise in scientific writing, research methodology, study design, biostatistics, and data analysis using platforms such as PRISM, SPSS, R, and STATA. His early achievements in competitive biology inspired a sustained commitment to exploring the molecular foundations of human disease, a pursuit strengthened through rigorous medical and public health training. Dr. Keyvanfar’s work bridges clinical and laboratory sciences, contributing publications derived from aligning patient characteristics with emerging evidence. In addition to his experience in clinical research, he possesses hands-on proficiency in core laboratory techniques, including gene extraction, PCR, gel documentation, blotting, electrophoresis, ELISA, hemagglutination assays, chromatography, microbiological culture, and spectrophotometry, enabling him to investigate disease mechanisms across multiple scales. His research philosophy centers on integrating practical clinical problem-solving with robust analytical and molecular methods to generate meaningful insights that improve diagnostic accuracy, therapeutic strategies, and public health decision-making. Through his role in infectious disease research, he continues to contribute to multidisciplinary efforts aimed at understanding emerging health threats and enhancing evidence-based approaches to disease prevention and management.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

Najafiarab, H., Farzaneh, F., Keyvanfar, A., & Talebian, N. (2025). Application of amniotic membrane to effectively treat chronic cervicitis: A case series. Cell Journal (Yakhteh).

Yadegarynia, D., Keyvanfar, A., Keramati, A., Najafiarab, H., Norouzi, S., Soleimani, S., Bodaghi, A., Arshi, S., Tehrani, S., Sharafi, F., et al. (2025). A national report on 2024 dengue fever outbreak in Iran: Has the game changed? BMC Infectious Diseases.

Mardani, M., Keyvanfar, A., & Mardani, S. (2025). Measles resurgence in Iran: A preventable public health crisis. Archives of Clinical Infectious Diseases.

Abolghasemi, S., Ghazi, M., Ziaie, S., Mahboubi, A., Gachkar, L., Keyvanfar, A., & Naeimipoor, M. (2025).

Comparison of the efficacy of povidone-iodine with mupirocin in decolonizing Staphylococcus aureus from the nasal cavity of healthcare workers: A single-blinded randomized controlled trial. Infectious Disorders – Drug Targets.

Brad Farmilo | Ecology | Editorial Board Member

Dr. Brad Farmilo | Ecology | Editorial Board Member

Senior Scientist | Arthur Rylah Institute for Environmental Research | Australia

Dr. Brad Farmilo is a dedicated environmental scientist whose work spans ecological conservation, biodiversity management, and the study of plant community dynamics in fragmented landscapes. With a strong academic foundation in biological and environmental sciences, he has built a career marked by scientific leadership, field-based research, and collaborative problem-solving. His professional experience includes guiding multidisciplinary teams, designing and delivering ecological monitoring programs, conducting advanced data analyses, and contributing to conservation strategy development. His research has explored themes such as weed management in sensitive habitats, ecological responses within forest fragments, and patterns of species distribution across altered landscapes. Through publications in respected scientific journals, he has provided evidence-based insights that support conservation planning and environmental policy. Dr. Farmilo’s influence is reflected not only in his scientific outputs but also in his commitment to mentoring emerging researchers and fostering collaborative projects that bridge science and practice. His expertise with statistical analysis and geospatial tools enhances the precision and impact of his findings, while his contributions to grant development underscore his role in advancing innovative environmental research. Widely regarded for his thoughtful approach to ecological challenges, Dr. Farmilo continues to shape the understanding of landscape-scale biodiversity processes and supports the development of sustainable conservation initiatives that benefit both ecosystems and the scientific community.

Profiles: Scopus | Google Scholar

Featured Publications

Farmilo, B. J., Melbourne, B. A., Camac, J. S., & Morgan, J. W. (2014). Changes in plant species density in an experimentally fragmented forest landscape: Are the effects scale-dependent? Austral Ecology, 39(4), 416–423.

Farmilo, B. J., & Nimmo, D. G., & Morgan, J. W. (2013). Pine plantations modify local conditions in forest fragments in southeastern Australia: Insights from a fragmentation experiment. Forest Ecology and Management, 305, 264–272.

Schultz, N., Keatley, M., Antos, M., Wong, N., Moxham, C., Farmilo, B., … (2017). The golf ball method for rapid assessment of grassland structure. Ecological Management & Restoration, 18(2), 134–140.

Morgan, J. W., & Farmilo, B. J. (2012). Community (re)organization in an experimentally fragmented forest landscape: Insights from occupancy–scale patterns of common plant species. Journal of Vegetation Science, 23(5), 962–969.

Moxham, C., Dorrough, J., Bramwell, M., & Farmilo, B. J. (2016). Fire exclusion and soil texture interact to influence temperate grassland flora in south-eastern Australia. Australian Journal of Botany, 64(5), 417–426.

Rehan Abid | Clean and Renewable energy | Editorial Board Member

Mr. Rehan Abid | Clean and Renewable energy | Editorial Board Member

Research Scholar | International Islamic University Islamabad | Pakistan

Mr. Rehan Abid is a dedicated researcher in physics and materials science whose work centers on advanced materials, electrochemical energy storage, and device fabrication. His expertise spans the synthesis and modification of nanostructured materials, including conducting polymers, two-dimensional materials, and inorganic nanomaterials, applying techniques such as chemical oxidative polymerization, in-situ bulk polymerization, and bottom-up synthesis. He has contributed significantly to the development of supercapacitive materials and flexible energy-storage devices through hands-on experience in electrode design, electrolyte formulation, and device assembly, supported by strong capabilities in material characterization and laboratory instrumentation. His research involvement includes contributions to collaborative projects on energy harvesters and self-powered systems, where he played an active role in material preparation, device fabrication, data interpretation, and manuscript development. Alongside his research, he has demonstrated academic leadership through teaching and mentoring roles, guiding undergraduate and graduate learners in physics coursework and laboratory practices, and supporting students in experimental design and research execution. His scientific output includes multiple peer-reviewed publications in reputable journals, reflecting his commitment to advancing knowledge in energy materials and applied physics. Known for his multidisciplinary skill set, he effectively integrates theoretical understanding with practical experimentation, contributing to innovative material solutions for energy storage and sensing applications. Mr. Abid continues to build a strong research presence through his work on nanocomposites, electrochemical systems, and emerging materials, positioning himself as a promising contributor to the evolving landscape of materials science and applied physics.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

Khan, M. A., Siddique, M. A. R., Sajid, M., Karim, S., Ali, M. U., Abid, R., & Bokhari, S. A. I. (2023).
A comparative study of green and chemical cerium oxide nanoparticles (CeO₂-NPs): From synthesis, characterization, and electrochemical analysis to multifaceted biomedical applications. BioNanoScience.

Haider, S., Abid, R., Murtaza, I., & Shuja, A. (2023).
Unleashing enhanced energy density with PANI/NiO/graphene nanocomposite in a symmetric supercapacitor device, powered by the hybrid PVA/Na₂SO₄ electrolyte. ACS Omega.

Raza, A., Abid, R., Murtaza, I., & Fan, T. (2023).
Room temperature NH₃ gas sensor based on PMMA/RGO/ZnO nanocomposite films fabricated by in-situ solution polymerization. Ceramics International.

Fan, T., Jian, L., Liu, C., Murtaza, I., Abid, R., Shuja, A., Liu, Y., & Min, Y. (2022).
Controlled synthesis of the state-of-the-art quasi one-dimensional graphene nanostructure for high performance supercapacitor. Synthetic Metals.

Muhammad, G., Murtaza, I., Abid, R., & Ahmad, N. (2022).
Effect of different catalysts and growth temperature on the photoluminescence properties of zinc silicate nanostructures grown via vapor-liquid-solid method. Chinese Physics B.

Yueping Bao | Water Treatment | Editorial Board Member

Dr. Yueping Bao | Water Treatment | Editorial Board Member

Associate Professor | Nankai University | China

Dr. Yueping Bao is an environmental scientist and engineer whose work centers on advancing sustainable water treatment technologies through innovative catalytic and membrane-based approaches. Her research integrates materials science, environmental engineering, and analytical chemistry, with a strong focus on advanced oxidation processes, catalytic ceramic membrane development, pollutant degradation mechanisms, and electrochemical treatment strategies. She has contributed to major national research initiatives, including work on enzyme-assisted photocatalytic degradation of chlorophenol pollutants, where she played a key role in catalyst synthesis, system design, and analytical method development. Her expertise spans catalyst fabrication, membrane optimization, water purification system enhancement, and the application of chromatography-based pollutant detection methods. Professionally, she has held research and academic positions in leading institutions, contributing to interdisciplinary projects aimed at improving the efficiency and sustainability of wastewater treatment. Her teaching experience includes supporting postgraduate laboratory instruction and materials science courses, reflecting a commitment to both scientific innovation and student development. Dr. Bao has also engaged with the global research community, sharing her work at international scientific forums. Through her combined research, academic service, and professional engagement, she continues to advance environmentally resilient technologies with the potential to mitigate complex pollution challenges and support long-term water resource protection.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

Chen, X., Zhang, H., Xu, S., Du, X., Zhang, K., Hu, C.-P., Zhan, S., Mi, X., Oh, W. D., Hu, X., et al. (2023). A recyclable Co–Fe bimetallic immobilized cellulose hydrogel bead (CoFeO@CHB) to boost singlet oxygen evolution for tetracycline degradation. Catalysts, 13(8), 1150.

Bao, Y., Chen, Y., Lim, T.-T., Wang, R., & Hu, X. (2019). A novel metal–organic framework (MOF)-mediated interfacial polymerization for direct deposition of polyamide layer on ceramic substrates for nanofiltration. Advanced Materials Interfaces, 6(201900132).

Bao, Y., Oh, W.-D., Lim, T.-T., Wang, R., Webster, R. D., & Hu, X. (2019). Elucidation of stoichiometric efficiency, radical generation and transformation pathway during catalytic oxidation of sulfamethoxazole via peroxymonosulfate activation. Water Research, 149, 1–12.

Lee, W. J., Bao, Y., Hu, X., & Lim, T.-T. (2019). Hybrid catalytic ozonation–membrane filtration process with CeOₓ and MnOₓ impregnated catalytic ceramic membranes for micropollutants degradation. Chemical Engineering Journal, 368, 109–118.

Xing, J., Liang, H., Chuah, C. J., Bao, Y., Luo, X., Wang, T., Wang, J., Li, G., & Snyder, S. A. (2019). Insight into Fe(II)/UV/chlorine pretreatment for reducing ultrafiltration (UF) membrane fouling: Effects of different natural organic fractions and comparison with coagulation. Water Research, 161, 115112.

Yifei Zhang | Materials Science | Best Academic Researcher Award

Prof. Yifei Zhang | Materials Science | Best Academic Researcher Award

Professor | Hebei University | China

Prof. Yifei Zhang is a materials scientist specializing in metallurgical physical chemistry, with a strong interdisciplinary focus on non-destructive testing technologies, material surface treatment, modification engineering, and machine vision–assisted evaluation methods. Her research advances the understanding of microstructural evolution, surface behavior, and damage mechanisms in advanced metallic and composite materials, bridging fundamental metallurgical principles with applied diagnostics. She has made notable contributions to the study of oxide-film dynamics in additively manufactured titanium alloys, the microstructural and electrochemical responses of heat-treated metal systems, and the adhesion performance of functional coatings under residual stress conditions. Her work extends into intelligent materials characterization, where she integrates acoustic emission analysis, signal decomposition, and deep-learning frameworks to enhance damage-mode identification in complex composites and metal components. Through innovative combinations of variational mode decomposition, convolutional neural networks, and optimized non-destructive evaluation methods, she has improved the precision and reliability of structural integrity assessments. Her professional experience includes extensive involvement in designing and validating advanced diagnostic techniques, contributing to the development of next-generation material performance evaluation tools. She collaborates across disciplines to connect materials processing, mechanical behavior, and sensing technologies, supporting safer, more efficient applications in engineering structures and manufacturing environments. Her scientific output reflects a commitment to integrating experimental research with computational enhancement, contributing significantly to the fields of material surface engineering, structural health monitoring, and intelligent testing systems.

Profile: Scopus

Featured Publications

Zhang, Y., Li, J., Xu, H., & others. (2020). Dynamic evolution of oxide film on selective laser melted Ti-Al-4V alloy. Journal of Alloys and Compounds, 849, 156622.

Zhang, Y., Feng, L., Zhang, T., & others. (2021). Heat treatment of additively manufactured Ti-6Al-4V alloy: Microstructure and electrochemical properties. Journal of Alloys and Compounds, 888, 161602.

Zhou, W., Li, D., Su, Y., & Zhang, Y.* (2024). Experimental study on the static strain aging of Q345 steel using complementary in-situ non-destructive testing techniques. International Journal of Steel Structures, 24(3), 591–606.

Zhang, Y., Yao, Y., Li, J., & others. (2025). Effect of residual stress on adhesion behaviour of TiN coating. Bulletin of Materials Science, 48, 72.

Zhang, Y., Ge, X., Su, Y., & others. (2025). Damage mode identification in 2D triaxial carbon fiber braided composites via acoustic emission segmentation and variational mode decomposition optimization. Polymer Composites, 1–16.

Muhammad Ibrahim | Environmental Science | Best Researcher Award

Dr. Muhammad Ibrahim | Environmental Science | Best Researcher Award

Researcher | Hohai University | China

Dr. Muhammad Ibrahim is an environmental scientist whose research focuses on emerging pollutants, water quality, ecological risk assessment, and nature-based remediation strategies. His work spans the toxicological behavior of PFAS, heavy metals, antibiotics, and nutrient pollution, with special emphasis on their interactions, dispersal pathways, and ecological consequences in freshwater systems. He investigates semiconductor-based photocatalysis, bio-electrochemical remediation, phytoremediation, and biogeochemical processes in reservoirs, advancing innovative approaches for pollution control and sustainable water-environment management. His scholarship also extends to environmental modeling, microalgal bloom dynamics, atmospheric pollution assessment, and the ecological impacts of industrial effluents. In parallel, he contributes to interdisciplinary studies linking environmental protection with public health, climate indicators, agricultural sustainability, and data-driven solutions such as federated learning frameworks for environmental and healthcare applications. Professionally, he has developed strong expertise in scientific analysis, laboratory research, data interpretation, environmental monitoring, and team leadership. He has participated in multiple international conferences, contributed to collaborative research networks, and published extensively in high-impact journals across environmental science, engineering, and sustainability. His work is recognized through several competitive awards for academic excellence, innovative research, and global environmental solutions, reflecting his commitment to advancing scientific understanding and real-world applications that support cleaner ecosystems and resilient communities.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

Li, Y., Ibrahim, M., Yue, C., Wang, Y., Hongzhe, P., Hassan, A. W., & Chunmin, Y. (2025). Exploring the impact of seasonal variation on the toxicological profile of Σ2PFAS in surface water bacterioplankton communities. Journal of Hazardous Materials, 140464.

Li, Y., Wang, Y., Hu, X., Cheng, Y., Zhu, Y., Zhou, Y., Pan, H., Li, R., Ibrahim, M., & Gualtieri, C. (2025). Reservoir water-level operations to manage biogeochemical turnover. Water Research, 124225.

Ibrahim, M., Li, Y., Usman, M., Adnan, M., Danjaji, H. A., & Jibo, A. U. (2025). Effect of nitrate on the semiconductor-based photocatalytic degradation of azithromycin. Journal of Environmental Engineering, EEENG-8063.

Li, Y., Zhu, Y., Chen, Y., Wang, C., Zhao, G., Pan, H., Wang, C., Bao, H., Ibrahim, M., & Norgbey, E. (2025). Heavy metals contamination in water-sediment systems of a large drinking water reservoir in southern China: Large-scale assessment and risk-based management. Journal of Cleaner Production, 146557.

Chen, D., Ibrahim, M., Soroma, M., Danjaji, H. A., Jibo, A. U., & Yang, Y. (2025). Season-based phytoremediation potential of brown mustard for lead decontamination: effect of EDTA chelation and antioxidant enzyme activity. International Journal of Phytoremediation.

Ana M. Gonzalez Ramos | Gender and Health | Best Researcher Award

Dr. Ana M. Gonzalez Ramos | Gender and Health | Best Researcher Award

Instituto de Estudios Sociales Avanzados – Consejo Superior de Investigaciones Científicas | Spain

Dr. Ana M. Gonzalez Ramos is an accomplished sociologist whose research illuminates the intersections of gender, technology, health, and professional careers within contemporary societies. Her work integrates gender studies with socio-technology, examining how digital environments, biomedical frameworks, workplace structures, and mobility patterns shape the experiences and well-being of diverse populations. She has led and contributed to influential research on sex and gender perspectives in clinical practice, inequalities in health systems, digital culture, feminist technoscience, and gendered transformations in labour markets and academia. An active contributor to international projects, she has advanced knowledge on social determinants of health, psychosocial risks in academic institutions, feminist digital activism, and the implications of technological change for equality. Her scholarship includes a substantial body of publications in high-impact journals and multiple contributions to books addressing gender, leadership, social research methodologies, and contemporary social challenges. She has supervised doctoral research on gender, ICT, care practices, and women’s empowerment, strengthening the next generation of feminist scholarship. Her professional experience includes leadership roles in scientific associations, editorial responsibilities in respected sociology journals, and participation in expert committees shaping the field of gender studies. Through interdisciplinary collaborations, research leadership, and public engagement, she has contributed to advancing equitable scientific practices, enriching sociological theory, and informing policies aimed at reducing gendered inequalities in health, technology, and knowledge production.

Profiles: Scopus | Orcid

Featured Publications

González Ramos, A. M., Serrano del Rosal, R., & Padrón, A. G. (2025). Gender regimes influences on social perception of pain and illness among European citizens. European Sociological Association, Research Network 16 Sociology of Health & Medicine Mid-Term Conference: Health in the Anthropocene: Sociological Analysis, Reflections, and Implications.

González Ramos, A. M., Benazizi, I., & Toledo, A. (2025). Women in biomedical model: The case of the instruments of diagnosis and recommendations (CPG, Clinical Practice Guidelines). European Sociological Association, Research Network 16 Sociology of Health & Medicine Mid-Term Conference: Health in the Anthropocene: Sociological Analysis, Reflections, and Implications.

González Ramos, A. M. (2025). La cultura de la pornografía: del castillo a la pantalla. In La pornografía, un problema social global: Didáctica feminista (ISBN 978-84-1079-009-4). C.S.I.C.

Padrón Armas, A., González Ramos, A., & Serrano-del-Rosal, R. (2025). Understanding health and pain through the gender regime: A multilevel framework from a sociological view. Social Sciences, 14(11), Article 636.

González Ramos, A. M., Gavín Benavent, P., & Isern de Val, S. (2025). La incorporación de la perspectiva de sexo y género en las guías de práctica clínica. Revista Española de Salud Pública.

Congmian Zhen | Physics | Best Researcher Award

Prof. Congmian Zhen | Physics | Best Researcher Award

College of Physics Hebei Normal University | China

Prof. Congmian Zhen is a physicist specializing in magnetic and electrical materials, with a strong research focus on complex magnetism in transition-metal oxides. Her work explores the mechanisms governing magnetic interactions, orbital ordering, magnetic anisotropy, magnetocrystalline anisotropy, and the emergence of intrinsic and topological Hall effects driven by non-coplanar magnetic structures. She has developed extensive expertise in epitaxial thin films, spinel oxides, and nanostructured functional materials, contributing significantly to the understanding of structure–property relationships in systems such as NiCo₂O₄, CoV₂O₄, MnCo₂O₄, and FeCo₂O₄. Her earlier research includes impactful studies on ohmic contacts for wide-bandgap semiconductors, low-dielectric-constant nanoporous materials, and multilayer magnetic films for high-density recording technologies. Over her career, she has produced a substantial body of publications in high-quality journals, demonstrating her leadership in investigating magnetic phase transitions, strain-induced anisotropy, electronic transport behavior, metal–insulator transitions, cation inversion, and defect-driven electronic states. Her research group has revealed important insights into how microstructure, synthesis conditions, and epitaxial strain modulate magnetic, electrical, and optical properties, providing pathways for designing next-generation spintronic and multifunctional materials. She has also collaborated internationally as a visiting scholar, enhancing global academic exchange and contributing to advanced experimental and theoretical studies in condensed-matter physics. Alongside her research, she has experience teaching core physics courses and guiding experimental training, reinforcing her commitment to both scientific discovery and academic mentorship.

Profile: Scopus

Featured Publications

Zhen, C., Zhang, X., Wei, W., Guo, W., Pant, A., Xu, X., Shen, J., Ma, L., & Hou, D. (2018). Nanostructural origin of semiconductivity and large magnetoresistance in epitaxial NiCo₂O₄/Al₂O₃ thin films. Journal of Physics D: Applied Physics, 51(14), 145308.

Zhen, C., Zhang, X., Wei, W., Guo, W., Pant, A., Xu, X., Shen, J., Ma, L., & Hou, D. (2017). Absence of Metallic Behavior in Epitaxial NiCo₂O₄ Thin Films: Role of Microstructural Disorder [Preprint]. arXiv.

Zhen, C., Liu, L., Lu, J., Feng, J., Hou, D., & others. (2025). Effect of trigonal distortion induced by strain on the perpendicular magnetic anisotropy of CoV₂O₄. Applied Physics Letters, 127(7), 072401.

Li, X., Zhen, C., Liu, X., … & Hou, D. (2025). Effect of Jahn–Teller distortion on magnetic anisotropy of Co-doped NiFe₂O₄. Journal, Volume(Issue), pages.

Zhao, M., Guo, W., Wu, X., Ma, L., Song, P., Li, G., Zhen, C., Zhao, D., & Hou, D. (2023). Zero-field-cooling exchange bias up to room temperature in the strained kagome antiferromagnet Mn₃.₁Sn₀.₉. Materials Horizons, 10, 4597–4608.

Jayateertha Diwan | Genetics | Best Researcher Award

Prof. Dr. Jayateertha Diwan | Genetics | Best Researcher Award

University of Agricultural Sciences, Dharwad, Karnataka | India

Prof. Dr. Jayateertha Diwan is a distinguished agricultural scientist recognized for his extensive contributions to plant breeding, genetics, and crop improvement, with a strong focus on rice and other major field crops. His research integrates classical breeding, molecular biology, and biotechnology to enhance crop performance, develop stress-tolerant varieties, and improve resource-use efficiency. He has led and contributed to innovative studies on early vigor traits, yield-enhancing QTLs, nutrient-use efficiency, salinity tolerance, and direct-seeded rice systems, employing advanced tools such as SSR markers, MAS, genomic resources, and next-generation sequencing. His work spans germplasm characterization, multi-location trials, A/B/R line development, trait-specific molecular analysis, and breeding strategy design aligned with farmer and market needs. Professionally, he has held progressive leadership roles involving teaching, research, extension, academic management, and guidance of postgraduate and doctoral scholars across plant breeding, molecular breeding, crop genomics, and biotechnology. His experience also includes collaborative research in national and international programs, participation in multi-institutional projects, and contributions to genome sequencing initiatives involving wild rice and microbial species. He has served as a breeder, scheme head, research project investigator, and expert trainer in various advanced workshops and capacity-building programs, contributing to the scientific community through high-impact publications, project leadership, academic services, and active involvement in research on integrated farming systems, stress physiology, molecular diagnostics, and precision crop improvement. His professional journey reflects a deep commitment to advancing agricultural science, improving crop productivity, and translating research innovations for sustainable farming and societal benefit.

Profiles: Scopus | Orcid

Featured Publications

Diwan, J. R., Mahadevaswamy,., Patil, S., Bhanu, D., Devi, K. L., Hegde, S. N., Krishnaraj, P. U., Namitha, R., Pradhan, B. B., & Vashisht, D. (2025). Genome characterization of Acinetobacter species from the rice rhizosphere: A potential plant growth promoting rhizobacteria (PGPR). Current Genetics.

Kavyashree, N. M., Diwan, J. R., Mahantashivayogayya, K., Lokesha, R., & Naik, N. M. (2022). Micro-morphological diversity of rice (Oryza sativa L.) as seen under foldscope. Environment Conservation Journal.

Kariyanna, B., Prabhuraj, A., Mohan, M., Bheemanna, M., Kalmath, B., Pampanna, Y., & Diwan, J. R. (2020). Insecticide usage pattern and evolution of resistance in eggplant shoot and fruit borer, Leucinodes orbonalis Guenée (Lepidoptera: Crambidae) in India. Plant Archives. (EID: 2-s2.0-85090445715)

Umar Farooq, M. S., Diwan, J. R., Mahantashivayogayya, K., Kulkarni, V. V., & Shakuntala, N. M. (2019). Genetic evaluation of rice (Oryza sativa L.) genotypes for yield and nutritional quality traits. Journal of Experimental Biology and Agricultural Sciences, 7(2), 117–127.

Muniswamy, S., Lokesha, R., Yamanura, R., Ramesh,., & Diwan, J. R. (2017). Stability for disease, genotype × environment interaction for yield and its components in pigeonpea [Cajanus cajan (L.) Millsp.]. Legume Research.