Zhihui Huang | Molecular Breeding | Best Researcher Award

Dr. Zhihui Huang | Molecular Breeding | Best Researcher Award

Associate Professor at Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, China

Dr. Huang, an Associate Professor and Master’s Supervisor, is a distinguished researcher in aquaculture genetics and molecular breeding. His work focuses on developing stress-resistant and heat-tolerant marine fish varieties, including the pioneering “Duobao No.1” and “Duobao No.2,” China’s first high-temperature-resistant species. With over 40 publications (including 21 SCI papers), five patents, and key national research grants, his contributions significantly advance sustainable aquaculture. He has also established official breeding standards and serves as a peer reviewer for renowned international journals. Recognized as a “Top-notch Talent” in Fisheries Science and actively involved in breeding programs across multiple Chinese provinces, Dr. Huang bridges scientific innovation with practical application. His strong research foundation, leadership in national projects, and tangible impact on the aquaculture industry make him a highly suitable candidate for the Best Researcher Award. Enhancing global visibility and citation metrics could further elevate his profile for international recognition.

Professional Profile 

Education🎓

Dr. Huang holds a Ph.D. in Aquaculture from the prestigious Ocean University of China, earned in 2014. His academic training laid a strong foundation in marine biology, aquaculture genetics, and fish physiology, which has since shaped his research trajectory in molecular breeding and environmental adaptability of marine species. Throughout his doctoral studies, he focused on the identification, evaluation, and development of core germplasm populations in marine fish, equipping him with advanced scientific and technical skills essential for modern aquaculture challenges. This education not only provided him with in-depth theoretical knowledge but also extensive practical experience in research methodologies, laboratory techniques, and data analysis. His Ph.D. work served as the launchpad for his later achievements in developing heat-tolerant and disease-resistant fish varieties. The rigorous academic environment and specialized training at Ocean University of China played a critical role in cultivating Dr. Huang’s innovative mindset and commitment to solving real-world aquaculture problems.

Professional Experience📝

Dr. Huang has amassed extensive professional experience in the field of aquaculture research and development. Since January 2020, he has served as an Associate Researcher at the Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, where he leads innovative projects in marine fish breeding and genetic improvement. His work emphasizes developing stress-resistant and environmentally adaptable fish varieties, with a strong focus on practical application. In addition to his research role, Dr. Huang serves as a Council Member of the China Aquatic Products Processing & Marketing Association (Turbot Branch), contributing to strategic decisions in aquaculture development. Since 2019, he has also been a designated Shandong Science & Technology Commissioner, implementing advanced breeding technologies across provinces like Shandong, Jiangxi, and Guizhou. These roles reflect his leadership in applying scientific advancements to regional aquaculture industries. Dr. Huang’s professional journey demonstrates a seamless integration of scientific research, industry collaboration, and regional development efforts.

Research Interest🔎

Dr. Huang’s research interests lie primarily in the fields of aquaculture genetics, molecular breeding, and environmental adaptability of marine fish species. He is deeply engaged in the identification, evaluation, and construction of core germplasm populations, particularly for species such as large turbot, flounder, and sole. His work focuses on uncovering the phenotypic, physiological, biochemical, and molecular responses of marine fish under stress conditions, including high temperatures and disease exposure. By investigating the genetic mechanisms underlying these adaptive traits, Dr. Huang aims to enhance the development of stress- and disease-resistant varieties to improve aquaculture sustainability. He has also explored breeding evaluation systems, developing technical standards and performance indicators for traits like heat tolerance. His research not only advances fundamental understanding in fish genetics and physiology but also delivers practical breeding strategies to address challenges posed by climate change and intensive aquaculture practices, making his work highly relevant and impactful in the field.

Award and Honor🏆

Dr. Huang has received notable awards and honors that underscore his excellence and impact in the field of aquaculture research. He was recognized as one of the “Top-notch Talents” in Fisheries Science, a prestigious title that highlights his leadership and innovative contributions to the development of stress-resistant marine fish varieties. Additionally, he earned the third prize in the Municipal “Data Element × Technology Application” Competition, where he served as the lead contributor (1/5), reflecting his ability to integrate data science with applied aquaculture solutions. His academic service further demonstrates his professional recognition, serving as a peer reviewer for respected international journals such as International Journal of Biological Macromolecules, Ecotoxicology and Environmental Safety, and Comparative Biochemistry and Physiology – Part D: Genomics and Proteomics. These honors and roles not only validate his scientific expertise but also affirm his standing as a trusted and respected figure within the global fisheries and aquaculture research community.

Research Skill🔬

Dr. Huang possesses a comprehensive set of research skills that make him a leading expert in aquaculture genetics and molecular breeding. He is highly skilled in the identification and evaluation of core germplasm resources, as well as in constructing breeding populations for marine fish such as turbot, flounder, and sole. His expertise extends to analyzing phenotypic, physiological, and biochemical traits under stress conditions, and he is proficient in using molecular biology techniques to investigate the genetic mechanisms behind environmental adaptability. Dr. Huang has developed and applied advanced breeding evaluation systems, including performance metrics for heat tolerance, which are crucial for selecting and propagating resilient fish strains. He is also experienced in patent writing, standards development, and software innovation, with several intellectual properties to his name. His ability to integrate laboratory research with field applications demonstrates a rare combination of theoretical depth and practical insight, making his research both innovative and impactful.

Conclusion💡

Dr. Huang clearly demonstrates excellence in research, innovation, and applied science with a substantial impact on aquaculture and molecular breeding in China. His achievements in developing climate-resilient marine species, securing national grants, publishing quality research, and serving the academic community strongly align with the standards of a Best Researcher Award.

Publications Top Noted✍️

  • Liu, Z., Yang, M., Shi, Y. L., Wang, H., Ma, A. (2025).
    Analysis of pigment cell differences and carotenoid content in the skin of golden turbot (Scophthalmus maximus) with color variation.
    Aquaculture Reports.

  • Cao, J., Huang, Z., Ma, A., Liu, Z., Xu, R. (2025).
    Development and evaluation of a haplotype reference panel for low-coverage whole genome sequencing genotype imputation in turbot (Scophthalmus maximus).
    Aquaculture Reports.

  • Sun, Z., Liu, S., Wang, X., Li, Z., Hong, Y. (2025).
    The research of nicotinamide and β-arbutin on reducing melanin content in the skin of leopard coral grouper (Plectropomus leopardus).
    Aquaculture.

  • Jiang, J., Wang, H., Xu, L., Xiao, Z., Li, J. (2025).
    Identification of a novel circovirus associated with turbot (Scophthalmus maximus) acute hemorrhage disease.
    Aquaculture.
    Citations: 1

Volodymyr Nadykto | Agricultural and Biological Sciences | Best Researcher Award

Prof. Volodymyr Nadykto | Agricultural and Biological Sciences | Best Researcher Award

Professor at Dmytro Motornyi Tavria State Agrotechnological University, Ukraine

Prof. Volodymyr Nadykto is a distinguished researcher and professor at Dmytro Motornyi Tavria State Agrotechnological University, Ukraine, specializing in the mechanization of agricultural production. With over four decades of academic and research experience, he has significantly contributed to the development of modular tractors, machine-tractor units, and controlled traffic farming. He has held key leadership positions, including Vice-Rector of Science and Head of Department, and is an active member of the Ukrainian Academy of Agrarian Sciences and the Academy of Engineering Sciences of Ukraine. Prof. Nadykto has an extensive publication record, collaborating with international researchers on innovative solutions for improving agricultural machinery efficiency. His research focuses on optimizing traction, reducing soil disturbance, and enhancing mechanized farming practices. While his work has had a profound academic impact, further emphasis on industry applications and mentorship could enhance his contributions. His dedication and expertise make him a strong candidate for the Best Researcher Award.

Professional Profile 

Education

Prof. Volodymyr Nadykto has a strong academic background in agricultural engineering, specializing in the mechanization of agricultural production. He earned his Engineer degree in 1977 from the Dnipropetrovsk Institute of Agriculture. He later pursued a PhD in Engineering from the Moscow Institute of Agricultural Engineers in 1989, focusing on mechanization in agriculture. In 2001, he obtained his Doctor of Science (Dr. Sci.) degree from the Agriculture Institute of Mechanization and Electrification of the Ukrainian Academy of Agrarian Science, further solidifying his expertise in agricultural engineering. Additionally, in 2016, he earned a degree as an Agronomist from Dmytro Motornyi Tavria State Agrotechnological University. His extensive education has provided him with a strong foundation for his research in mechanized farming, controlled traffic farming, and tractor-machine systems. His academic qualifications, combined with decades of research and teaching experience, have made him a leading expert in agricultural mechanization.

Professional Experience

Prof. Volodymyr Nadykto has an extensive professional background in agricultural engineering, spanning over four decades. He has been a professor at Dmytro Motornyi Tavria State Agrotechnological University since 2001, where he also served as Vice-Rector of Science from 2006 to 2020. His leadership roles include Head of the Department of Machines Use in Farming (2004–2006) and Head of the Department of Mechanization of Field Crop Cultivation (2000–2002). Prior to that, he was a senior researcher and later Head of the Laboratory of Machine Use at the South Office of the Agriculture Institute of Mechanization and Electrification. His career began as a senior engineer at the Ukrainian Scientific Research Institute of Mechanization and Electrification of Agriculture. Throughout his career, Prof. Nadykto has contributed significantly to the development of agricultural mechanization, specializing in modular tractors, controlled traffic farming, and machine-tractor systems, making him a key figure in the field.

Research Interest

Prof. Volodymyr Nadykto’s research interests focus on advancing agricultural mechanization, particularly in modular tractors, machine-tractor units, and controlled traffic farming. His work aims to enhance the efficiency, stability, and sustainability of mechanized farming operations by optimizing traction performance, reducing soil compaction, and improving the controllability of agricultural machinery. He has extensively studied the development of combination machine-tractor units, the impact of machine configurations on soil conditions, and innovative approaches to increase the traction efficiency of modular draft devices. His research also explores mathematical modeling and experimental investigations to improve the stability and maneuverability of machine-tractor systems. By integrating engineering principles with practical agricultural applications, Prof. Nadykto contributes to the development of more effective and environmentally friendly mechanized farming practices. His dedication to advancing agricultural engineering ensures that his research remains relevant to both academia and industry, addressing the evolving challenges of modern agriculture.

Award and Honor

Prof. Volodymyr Nadykto has received numerous honors and recognitions for his outstanding contributions to agricultural engineering and mechanization. He is a Corresponding Member of the Ukrainian Academy of Agrarian Sciences (since 2010) and an Active Member of the Academy of Engineering Sciences of Ukraine (since 2008). His election to these prestigious institutions highlights his significant impact on the advancement of mechanized farming and agricultural machinery. Additionally, he has held key academic leadership roles, such as Vice-Rector of Science at Dmytro Motornyi Tavria State Agrotechnological University, further demonstrating his influence in the academic and research community. His extensive research publications and collaborations with international scientists reflect his commitment to innovation in agricultural mechanization. While specific awards are not listed in his curriculum vitae, his professional affiliations and long-standing contributions to the field solidify his reputation as a leading researcher, making him a strong contender for prestigious research awards.

Research Skill

Prof. Volodymyr Nadykto possesses exceptional research skills in agricultural mechanization, with expertise in modular tractors, machine-tractor units, and controlled traffic farming. His ability to develop and apply mathematical models for optimizing tractor performance and soil interaction demonstrates his strong analytical and problem-solving skills. He is proficient in experimental research, conducting field investigations to assess traction efficiency, movement stability, and the impact of mechanization on soil conditions. His extensive publication record highlights his ability to collaborate with international researchers, showcasing his expertise in scientific writing, data analysis, and engineering simulations. Additionally, his experience in leading research teams and supervising scientific projects reflects his leadership and project management skills. Prof. Nadykto integrates theoretical knowledge with practical applications, contributing to the advancement of sustainable and efficient mechanized farming. His research skills, combined with his vast academic experience, make him a distinguished expert in the field of agricultural engineering.

Conclusion

Prof. Volodymyr Nadykto is a highly accomplished researcher with a strong publication record, extensive academic experience, and significant contributions to agricultural mechanization. His international collaborations, leadership roles, and research impact make him a strong candidate for the Best Researcher Award. Addressing the areas for improvement, particularly in demonstrating broader research impact and industry applications, would further strengthen his candidacy.

Publications Top Noted

  • Nadykto, V. T., & Kryzhachkivskyi, M. L. (2005). Novі mobil’nі energetichnі zasobi Ukrainy. Teoretychni osnovy vykorystannia v zemlerobstvi.
  • Nadykto, V. T. (2003). Osnovy agregatyrovaniya modulekh energetycheskikh sredstv. Melitopol: KP “MMD”.
  • Nadykto, V. T., & Uleksin, V. O. (2008). Kolіina ta mostova systemy zemlerobstva. Melitopol: TOV «Vydavnychyi budynok MMD».
  • Bulgakov, V., Pascuzzi, S., Nadykto, V., & Ivanovs, S. (2018). A mathematical model of the plane-parallel movement of an asymmetric machine-and-tractor aggregate. Agriculture, 8(10), 151.
  • Nadykto, V., Arak, M., & Olt, J. (2015). Theoretical research into the frictional slipping of wheel-type undercarriage taking into account the limitation of their impact on the soil. Agronomy Research, 13(1), 148-157.
  • Bulgakov, V., Adamchuk, V., Nadykto, V., Kistechok, O., & Olt, J. (2017). Theoretical research into the stability of motion of the ploughing tractor-implement unit operating on the ‘push-pull’ principle.
  • Bulgakov, V., Pascuzzi, S., Ivanovs, S., Nadykto, V., & Nowak, J. (2020). Kinematic discrepancy between driving wheels evaluated for a modular traction device. Biosystems Engineering, 196, 88-96.
  • Nadykto, V. T. (2017). Osnovy naukovykh doslidzhen. Kherson: OLDI-PLUS.
  • Bulgakov, V. M., Kravchuk, V. I., & Nadykto, V. T. (2008). Agregatuvannia pluhiv.
  • Adamchuk, V., Bulgakov, V., Nadykto, V., Ihnatiev, Y., & Olt, J. (2016). Theoretical research into the power and energy performance of agricultural tractors. Agronomy Research, 14(5).
  • Kyurchev, V. M., Kyurchev, V. N., Boltianska, N. I., & Boltianska, N. I. (2020). Organizational forms of distance learning and their application in TDATU. TDATU.
  • Bulgakov, V., Adamchuk, V., Nadykto, V., & Kyurchev, V. (2017). Theoretical consideration of the controllability indicator of machine-tractor unit movement. Acta Technologica Agriculturae, 11-18.
  • Bulgakov, V., Adamchuk, V., Arak, M., Nadykto, V., Kyurchev, V., & Olt, J. (2016). Theory of vertical oscillations and dynamic stability of combined tractor-implement unit. Agronomy Research, 689-710.