Kangyu Wang | Biology and Life Sciences | Best Researcher Award

Kangyu Wang | Biology and Life Sciences | Best Researcher Award

Kangyu Wang,Jilin Agricultural University,China

Assoc. Prof. Dr. Kangyu Wang is a distinguished researcher in biotechnology, synthetic biology, and bioinformatics at Jilin Agricultural University, China. He earned his Ph.D. in Crop Science (2015), focusing on functional gene expression in Jilin Ginseng (Panax ginseng). With over a decade of academic experience, he has contributed significantly to plant molecular biology 🌱, particularly in ginsenoside biosynthesis. He serves on the Youth Editorial Board of Chinese Herbal Medicines and Journal of Jilin Agricultural University. Dr. Wang has secured multiple research grants and has authored impactful publications πŸ“š in plant science journals.

publication profile

scopus

Education

Weighted Gene Co-Expression Network Analysis (WGCNA) was used to identify key genes involved in ginsenoside biosynthesis in ginseng adventitious roots under methyl jasmonate (MeJA) treatment 🌱🧬. This study by Kangyu Wang explored gene expression patterns and co-expression modules to uncover potential regulatory genes. The findings revealed significant gene clusters linked to ginsenoside production, offering insights into metabolic pathways and secondary metabolite regulation πŸ”¬πŸ§ͺ. The results provide a foundation for enhancing ginsenoside yield through genetic and biotechnological approaches, contributing to the pharmaceutical and agricultural industries πŸ’ŠπŸŒΏ. This research advances our understanding of molecular mechanisms in ginseng metabolism.

Employment History

Dr. Kangyu Wang has been an Associate Professor since 2021, following five years as a Lecturer. His expertise spans biotechnology 🧬, synthetic biology πŸ—οΈ, and bioinformatics πŸ’», reflecting his dedication to research-driven education. His rapid progression from Lecturer to Associate Professor within just five years highlights his strong research contributions πŸ“š and academic excellence πŸŽ“. Dr. Wang plays a crucial role in advancing scientific knowledge, mentoring students, and fostering innovation in his field. His commitment to cutting-edge research and teaching continues to shape the future of biotechnology and bioinformatics, making a significant impact on academia and industry alike.

Research Grant

Assoc. Prof. Dr. Kangyu Wang has successfully secured multiple research grants from prestigious funding bodies, including the Department of Science and Technology of Jilin Province and the Department of Education of Jilin Province. πŸ… His ability to attract research funding highlights his strong research capabilities, innovation, and leadership in executing significant scientific projects. πŸ”¬βœ¨ These grants not only reflect his expertise in advancing scientific knowledge but also his dedication to pioneering research that contributes to technological and academic progress. πŸ“šπŸ’‘ Dr. Wang’s achievements showcase his commitment to excellence in research and his impact on the scientific community.

Research Focus

Assoc. Prof. Dr. Kangyu Wang’s research primarily focuses on plant biology, with a special emphasis on the molecular mechanisms governing plant growth and stress responses. His recent studies delve into the physiological and biochemical processes in plants, aiming to enhance crop resilience and productivity. Dr. Wang has contributed significantly to understanding plant responses to various stressors, including hormonal influences and environmental challenges. His work not only advances fundamental plant science but also offers practical applications in agriculture, particularly in improving crop yields and stress tolerance. Through his leadership in research projects, Dr. Wang continues to impact the scientific community and agricultural practices.

Academic Service

Assoc. Prof. Dr. Kangyu Wang is a distinguished researcher known for his significant contributions across multiple disciplines, including plant biology 🌿, civil engineering πŸ—οΈ, and philosophy 🧠. His interdisciplinary expertise has led to groundbreaking research that has been published in high-impact journals πŸ“š, showcasing his ability to bridge diverse fields. With a keen interest in scientific exploration and innovation, Dr. Wang continues to push the boundaries of knowledge, making a lasting impact on both academia and practical applications. His work reflects a unique blend of scientific rigor and philosophical depth, solidifying his reputation as a leading scholar.

Publication Top Notes

1️⃣ Regulation of ginseng adventitious root growth – Plant Physiology and Biochemistry, 2024 (πŸ“– 3 citations)
2️⃣ FAR1/FHY3 gene family & MeJA treatment – BMC Plant Biology, 2024 (πŸ“– 3 citations)
3️⃣ PgERF120 & ginsenoside biosynthesis – Biomolecules, 2024 (πŸ“– 2 citations)
4️⃣ TCP genes & ginsenoside biosynthesis – BMC Plant Biology, 2024 (πŸ“– 5 citations)
5️⃣ Small RNA-seq & miRNA expression in ginseng – Plants, 2023 (πŸ“– 5 citations)
6️⃣ Trihelix transcription factors & MeJA treatment – BMC Plant Biology, 2023 (πŸ“– 5 citations)
7️⃣ PgGT25-04 & ginsenoside biosynthesis – Plants, 2023 (πŸ“– 2 citations)
8️⃣ NF-Y transcription factors & salt stress response – BMC Plant Biology, 2022 (πŸ“– 13 citations)
9️⃣ WRKY gene family & salt stress response – Horticulturae, 2022 (πŸ“– 6 citations)
πŸ”Ÿ Ginsenoside Rb3 synthesis & MeJA treatment – Life, 2021 (πŸ“– 5 citations)
1️⃣1️⃣ SPL gene family & network interaction – Plants, 2020 (πŸ“– 5 citations)
1️⃣2️⃣ GRAS gene family & GA stress response – Plants, 2020 (πŸ“– 18 citations)
1️⃣3️⃣ Spatial & temporal transcriptomic landscapes of ginseng – Scientific Reports, 2015 (πŸ“– 64 citations)

πŸ“œ Patents:
πŸ”Ή PgMYC24 Gene Function & Application in Ginseng – Patent No. ZL 202310794775.X (2024)
πŸ”Ή PgJAZ12 Gene Function & Application in Ginseng – Patent No. ZL 202310794490.6 (2024)

xuekun Zhang | Biology and Life Sciences | Best Researcher Award

xuekun Zhang | Biology and Life Sciences | Best Researcher Award

Prof xuekun Zhang, Shihezi University, China

Prof. Xuekun Zhang is an Associate Professor at Shihezi University, specializing in crop resistance/susceptibility genes and biological control of plant diseases 🌱🧬. He holds a doctoral degree from Huazhong Agricultural University and a master’s from Shihezi University. His research focuses on utilizing bioinformatics and molecular biology to identify key genes related to crop disease resistance, and studying pathogenic fungi for biocontrol potential πŸ¦ πŸ”¬. He has led multiple provincial and university-level projects and published over 20 papers, including in top journals like Viruses and Front Plant Sci πŸ“š. He also teaches advanced plant immunology and plant pathology courses πŸ“–.

Publication Profile

Scopus

Research Interests

Professor Xuekun Zhang specializes in the mining and utilization of crop resistance and susceptibility genes, aiming to enhance agricultural resilience. His research focuses on understanding plant responses to diseases and improving crop protection. He also investigates the biological control of plant diseases, employing natural mechanisms to reduce reliance on chemical treatments. His work aims to create sustainable agricultural practices, ensuring better crop yields and healthier ecosystems. Prof. Zhang’s expertise is integral in advancing crop science and plant pathology. πŸŒ±πŸŒΎπŸ”¬πŸ§¬πŸŒ

Experience

Prof. Xuekun Zhang holds a doctoral degree and serves as an associate professor and master’s thesis supervisor. He graduated with a master’s degree from Shihezi University in 2013 and worked at the Cotton Research Institute of Xinjiang Agricultural Reclamation Science Academy from 2013 to 2017. In 2021, he obtained his doctoral degree from Huazhong Agricultural University. Following this, he joined the College of Agriculture at Shihezi University, where he continues to contribute to academic research and mentoring. πŸŒ±πŸŽ“πŸ“šπŸŒΎ

Research Field

Prof. Xuekun Zhang specializes in bioinformatics and molecular biology to identify key genes linked to crop resistance and susceptibility to diseases. πŸŒ±πŸ”¬ He explores the mechanisms behind these genes’ actions and investigates harmful pathogenic fungi and viruses to find low-virulence strains with biocontrol potential. 🦠πŸ’ͺ Prof. Zhang has led three provincial-level scientific research projects and two university-level ones, contributing significantly to the field. He has also participated in three National Natural Science Foundation projects, the “Comprehensive Scientific Expedition to Xinjiang” by the National Ministry of Science and Technology, and several other national and regional research programs. πŸŒπŸ”

Research Achievements

Prof. Xuekun Zhang is an accomplished researcher with over 20 publications, including 12 SCI papers where he served as the first or corresponding author. His work has been featured in prestigious journals such as Plant Biotechnology Journal, Viruses, Plants, and Agronomy. Notably, one of his papers was published in a top-tier journal, and since 2019, he has consistently published papers with an impact factor (IF) greater than 7.0. His research contributions continue to advance the field, demonstrating his expertise and influence in plant biotechnology and related areas. πŸ“šπŸŒ±πŸ”¬πŸŒΏ

Research Focus

Prof. Xuekun Zhang’s research primarily focuses on plant-pathogen interactions, particularly in the context of parasitic plants like broomrape (Orobanche) and their impact on crop health. His work involves the identification and genetic diversity of broomrape species in Xinjiang, China, as well as exploring plant resistance mechanisms, such as jasmonate signaling pathways and cell wall activity, to combat parasitic infestation. Zhang also investigates the role of mycoviruses in pathogens affecting fragrant pears and cotton plants, aiming to develop better disease management strategies. His interdisciplinary studies incorporate molecular biology, genomics, and plant pathology. πŸŒ±πŸ”¬πŸ§¬πŸŒΎ

Publication Top Notes

Identification and genetic diversity analysis of broomrape in Xinjiang, China

Jasmonate ZIM Domain Protein (JAZ) Gene SLJAZ15 Increases Resistance to Orobanche aegyptiaca in Tomato

Integrated Transcriptome and Proteome Analysis Reveals That Cell Wall Activity Affects Phelipanche aegyptiaca Parasitism

Identification of Mycoviruses in the Pathogens of Fragrant Pear Valsa Canker from Xinjiang in China

MAPK and phenylpropanoid metabolism pathways involved in regulating the resistance of upland cotton plants to Verticillium dahliae

First Report of Karelinia caspia as a New Host of Orobanche cumana in Xinjiang, China

 

 

Shu-Nong Bai | Biology and Life Sciences | Best Researcher Award

Shu-Nong Bai | Biology and Life Sciences | Best Researcher Award

Prof Shu-Nong Bai, Peking University, China

Prof. Shu-Nong Bai is a distinguished plant physiologist specializing in plant development and morphogenesis. He earned his Ph.D. from the Institute of Botany, CAS (1990) and held key academic positions at UC Berkeley and Peking University. His pioneering research explores plant reproductive mechanisms, gene regulation, and integron theory. A celebrated educator, he received multiple teaching excellence awards πŸŒŸπŸ†. He has authored influential books and numerous high-impact publications πŸ“–πŸ§¬. As a mentor and thought leader, he continues to shape plant science with groundbreaking insights. His legacy in education and research inspires future generations of biologists πŸŒπŸŽ“.

Publication Profile

Orcid

Education

Prof. Shu-Nong Bai πŸŽ“πŸŒΏ is a distinguished plant physiologist with a strong academic background in agronomy and plant sciences. He earned his Ph.D. in Plant Physiology from the Institute of Botany, CAS, in 1990 πŸ…πŸŒ±, following his M.S. in Plant Physiology from Wuhan University in 1986 πŸ“šπŸ”¬. His academic journey began with a B.A. in Agronomy from Anhui Agricultural College in 1982 πŸšœπŸŽ“. With extensive expertise in plant physiology, Prof. Bai has contributed significantly to the field, advancing research on plant growth, adaptation, and development. His work continues to inspire advancements in agricultural and botanical sciences πŸŒΎπŸ”.

Professional Experience

Prof. Shu-Nong Bai πŸŒ±πŸ“š had a distinguished career in plant biology. He earned his MS from Wuhan University (1983-1986) and a PhD from the Institute of Botany, CAS (1987-1990). He was a postdoctoral fellow at UC Berkeley (1991-1994) before becoming a professor at the Institute of Botany, CAS (1996-1998). He later joined Peking University as a Professor (1998-2021). His early roles included research at Huaibei Seed Corporation (1982-1983) and education strategy work (1986-1987). With expertise in plant development πŸŒΎπŸ”¬, he made significant contributions to botanical sciences throughout his career. πŸŒπŸ“–

Awards

A distinguished educator and researcher, he has received numerous accolades for his contributions to life sciences πŸŒΏπŸ”¬. Honored with the 2019 KGKF Award for Mentoring Excellence πŸŽ“βœ¨, he was also a recipient of the 2016 PKU-BIO Zheng Changxue Education Fund. Twice recognized as the most popular teacher in the School of Life Sciences (2015, 2010) πŸ†πŸ“š, he earned the 2009 Excellence Award of Academician Yang Fuqin and Wang Yangyuan. His dedication was further acknowledged with the 2006 Dongbao Award for excellent teachers πŸ…. He has held prestigious roles, including NSFC panelist (2002), CAS panelist (1994-95), and Rockefeller Fellow (1991-93) πŸŒπŸ”Ž.

Service to Scientific Community

Prof. Shu-Nong Bai is a dedicated academic and researcher with a significant role in advancing plant science. His involvement as a panelist and steering committee member for national funding agencies and research programs highlights his commitment to supporting cutting-edge research. Through his contributions to shaping the direction of plant science research, Prof. Bai plays a pivotal role in fostering innovation and growth in the field. His expertise continues to influence national initiatives, ensuring that research efforts are effectively aligned with the needs of the scientific community and society. πŸŒ±πŸŒΎπŸ”¬πŸ’‘πŸŒ

Teaching Experience

Prof. Shu-Nong Bai has been a distinguished educator in plant biology at Peking University’s College of Life Sciences. From 1998 to 2019, he taught Plant Developmental Biology for graduate students. He led Introduction of Unique Phenomena in Plant Biology for undergraduates from 2004-2014, and taught Plant Morphogenesis from 2015-2019. Since 2016, he has co-led the general course A Logic of Life for undergraduates, collaborating with guest lecturers. Additionally, he has contributed to seminars and lectures across various courses, sharing his expertise and passion for plant biology πŸŒ±πŸ“šπŸŒΏπŸ‘¨β€πŸ«

Research Focus

Prof. Shu-Nong Bai’s research focuses on plant development and gene regulation, particularly in rice. In the paper “OsMADS58 Stabilizes Gene Regulatory Circuits during Rice Stamen Development,” Bai explores the molecular mechanisms that control stamen development in rice. His work contributes to understanding how transcription factors like OsMADS58 regulate complex gene networks during plant reproductive organ formation. This research has significant implications for crop breeding and improving agricultural productivity. His expertise lies in plant biology, molecular genetics, and functional genomics, aiming to enhance crop development and yield. πŸŒΎπŸ”¬πŸ§¬πŸŒ±

Publication Top Notes

 

 

Viktor Viglasky | Biology and Life Sciences | Best Researcher Award

Viktor Viglasky | Biology and Life Sciences | Best Researcher Award

Assoc Prof Dr Viktor Viglasky, P.J.Safarik University in Kosice, Slovakia

Based on the extensive qualifications and contributions of Associate Professor Dr. Viktor VΓ­glaskΓ½, he appears to be a highly suitable candidate for the Best Researcher Award.

Publication profile

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Research for Best Researcher Award: Assoc. Prof. Dr. Viktor VΓ­glaskΓ½

Training, Preparation, and Participation in International Projects
Dr. Viktor VΓ­glaskΓ½ has an impressive track record of representing Slovakia in numerous international research initiatives, including significant EU COST projects such as Epigenetic Chemical Biology and MP0802. He has also contributed to the MARCY project and completed scientific internships in prestigious institutions like INSERM in Paris. His academic journey includes a full university degree in Biochemistry from Charles University, equipping him with a solid foundation in biochemistry, molecular biology, and biophysics.

Awards and Recognitions

His commitment to research and education has been recognized through several awards, including the Young Researcher of the Year in the Slovak Republic (2000) and the Dean’s Award for Teaching Activity (2019).

Research and Educational Contributions

Dr. VΓ­glaskΓ½ has supervised a substantial number of graduate students, guiding 7 PhD candidates, 35 master’s theses, and 18 bachelor theses. His teaching encompasses a broad spectrum of subjects related to biochemistry and molecular biology, demonstrating his dedication to student education.

Publications and Impact

He has authored 34 articles in esteemed scientific journals indexed in WoS and Scopus, accumulating around 900 citations, with a notable H-index of 18. His published works, such as research on G-quadruplexes, have contributed significantly to advancing knowledge in the field.

Research Projects

Dr. VΓ­glaskΓ½ has been the responsible investigator for several noteworthy projects, exploring innovative topics like self-assembling G-DNA structures and the role of hypoxia in cardiovascular risks. His collaborative efforts and contributions to projects involving G-quadruplexes have underscored his impact on both basic and applied research.

Publication top notes

G-QINDER Tool: Bioinformatically Predicted Formation of Different Four-Stranded DNA Motifs from (GT)n and (GA)n Repeats

Given Dr. VΓ­glaskΓ½’s extensive experience, significant research output, and dedication to education, he exemplifies the qualities of an exceptional researcher. His contributions not only advance scientific understanding but also inspire the next generation of scientists.

 

Stelios Vasilopoulos | Biology and Life Sciences | Best Researcher Award

Stelios Vasilopoulos | Biology and Life Sciences | Best Researcher Award

Mr Stelios Vasilopoulos, Aristotle University of Thessaloniki, Greece

Stelios Vasilopoulos, MSc in Food Technology and Quality Assurance from the University of Reading (2003), is a researcher at the University of Thessaly’s Telecommunications & Networks Laboratory since 2018 πŸ“šπŸ”¬. He has extensive experience in project management, focusing on smart specialization and technology development in the food and feed industry πŸŒ±πŸ”. Previously, he co-founded Mamasfood Catering Ltd and worked at DO & CO Event & Airline Catering Ltd as a Process Manager 🍴✈️. Stelios has participated in numerous international projects, published multiple research papers, and is a frequent speaker at academic conferences πŸ“‘πŸŒ.

Publication profile

orcid

Education

πŸ‘©β€πŸŽ“ In June 2003, I earned my MSc in Food Technology and Quality Assurance from the University of Reading, UK. Since January 2018, I have been a researcher at the University of Thessaly’s Telecommunications & Networks Laboratory, focusing on smart specialization and technology development in food and agriculture. πŸ§‘β€πŸ’Ό As co-founder and CEO of Mamasfood Catering Ltd (2015-2016), I managed an online restaurant in London. At DO & CO Event & Airline Catering Ltd (2011-2015), I was a Process Manager. πŸ₯— Previously, I held various roles at Bakkavor Group (2006-2011) and Katsouris Fresh Foods Ltd (2003-2006), enhancing production efficiency and quality assurance. πŸŒπŸ—£οΈ I speak English and French.

Research focus

Stelios Vasilopoulos’s research focuses on the use of insect larvae as sustainable feed additives in livestock production. Key studies include the effects of black soldier fly, mealworm, and superworm on broiler growth and antioxidant activity under heat stress. His work also examines the impact of whole insect larvae on intestinal morphology and microbiota of broilers. Notable publications cover broiler diets replaced with Tenebrio molitor larvae, as well as flaxseed and lupins in dairy cow diets. Vasilopoulos’s contributions highlight advancements in livestock nutrition and sustainability πŸ”πŸ›πŸŒΎπŸ“ˆ.

Publication top notes

Black soldier fly, mealworm and superworm: chemical composition and comparative effect on broiler growth

Effect of three different insect larvae on growth performance and antioxidant activity of thigh, breast, and liver tissues of chickens reared under mild heat stress

Diet replacement with whole insect larvae affects intestinal morphology and microbiota of broiler chickens

Sustainable Use of Feed Additives in Livestock

Growth performance, welfare traits and meat characteristics of broilers fed diets partly replaced with whole Tenebrio molitor larvae

Feeding Flaxseed and Lupins during the Transition Period in Dairy Cows: Effects on Production Performance, Fertility and Biochemical Blood Indices

Composition, Organoleptic Characteristics, Fatty Acid Profile and Oxidative Status of Cow’s Milk and White Cheese after Dietary Partial Replacement of Soybean Meal with Flaxseed and Lupin