Manisha Thapliyal | Plant Science | Best Researcher Award

Ms. Manisha Thapliyal | Plant Science | Best Researcher Award

Patanjali Research Foundation, India

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🌟  Suitable for this Best Researcher Award

Dr. Manisha Thapliyal is a distinguished Scientist-B at Patanjali Research Foundation, Haridwar, with six years of research excellence in computational drug design, bioinformatics, and plant genetic transformation. Her groundbreaking contributions to interdisciplinary research, nanoparticle synthesis, and government-led scientific initiatives position her as an outstanding candidate for the Best Researcher Award. Dr. Thapliyal has mentored young researchers, organized numerous scientific events, and contributed to high-impact publications, enhancing the field of plant biotechnology and bioinformatics. Her leadership in capacity-building initiatives and extensive work on computational drug discovery for various diseases make her a valuable asset to scientific progress.

🎓 Education 

Dr. Manisha Thapliyal holds a Master of Technology (M.Tech) in Biotechnology from Govind Ballabh Pant Engineering College, where she researched antibacterial proteins/peptides from Ficus glomerata leaves. She also earned a Bachelor of Technology (B.Tech) in Biotechnology from the same institution. Her academic foundation integrates molecular biology, computational research, and plant biotechnology, making her a versatile and highly skilled researcher.

 💼  Professional Experience

Scientist-B | Patanjali Research Foundation (2019-2024)

  • Led research in Computer-Aided Drug Designing (CADD) for disease therapeutics.
  • Supervised assistant scientists and mentored postgraduate students.
  • Managed government projects in collaboration with ministries.
  • Organized national and international conferences, workshops, and training programs.
  • Executed virtual screenings for potential drug candidates and bioinformatics research.

Junior Research Fellow | G.B. Pant University (2016-2017)

  • Conducted genetic transformation research on Eleusine coracana for drought resistance.
  • Studied nanoparticle synthesis and its impact on plant stress.

🏅 Awards and Recognition 

  • Outstanding Research Contribution Award for excellence in computational drug discovery.
  • Best Paper Presentation Award at international bioinformatics conferences.
  • Young Scientist Award for contributions to plant biotechnology and bioinformatics.
  • Government Research Grant Recognition for successfully executing interdisciplinary research projects.
  • Editorial Excellence Award for significant contributions to scientific publishing and proofreading.

🌍Research skills On Plant Science

  • Bioinformatics & Computational Biology: Expertise in molecular docking, homology modeling, network pharmacology, and ADMET prediction.
  • Molecular Techniques: Skilled in DNA/protein isolation, PCR, SDS-PAGE, and gene expression studies.
  • Plant Tissue Culture: Specialization in callus induction, Agrobacterium-mediated transformation, and hormonal response studies.
  • Nanotechnology Applications: Synthesized nanoparticles for agricultural and medical applications.
  • Project Management: Led multidisciplinary research teams in large-scale scientific projects.

📖Publications

Nature’s answer to thyroid cancer: unraveling Eclipta prostrata’s hidden potential through in silico molecular exploration
  • Journal: Journal of Biomolecular Structure and Dynamics
  • Year: 2025
  • Authors: Acharya Balkrishna, Himani Bhatt, Vedpriya Arya, Samridhi Verma, Sandeep Swargam, Manisha Thapliyal
Unraveling the therapeutic potential of Senna singueana phytochemicals to attenuate pancreatic cancer using protein–protein interactions, molecular docking, and MD simulation
  • Journal: In Silico Pharmacology
  • Year: 2023
  • Authors: Acharya Balkrishna, Darshita Sharma, Manisha Thapliyal, Vedpriya Arya, Anurag Dabas
Current Status of Indian Agriculture: Problems, Challenges and Solution
  • Journal: Biological Forum – An International Journal
  • Year: 2021
  • Authors: Manisha Thapliyal
Role of AP2/EREBP Transcription Factor Family in Environmental Stress Tolerance
  • Journal: Cell & Cellular Life Sciences Journal
  • Year: 2018
  • Authors: Manisha Thapliyal
Isolation and Identification of α-Amylase Activity Inhibiting Compounds from Bryophyllum Pinnatum
  • Journal: International Research Journal of Biological Sciences
  • Year: 2016
  • Authors: Manisha Thapliyal
Isolation of Antibacterial Protein/Peptide from Ficus glomerata Leaf
  • Journal: International Journal of Current Pharmaceutical Research
  • Year: 2016
  • Authors: Manisha Thapliyal
Screening and Isolation of Antibacterial Proteins/Peptides from Seeds of Millets
  • Journal: International Journal of Current Pharmaceutical Research
  • Year: 2016
  • Authors: Manisha Thapliyal

Khalid Masoodi | Molecular biology | Best Researcher Award

 Prof. Dr. Khalid Masoodi | Molecular biology | Best Researcher Award

Skuast-Kashmir | India

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INTRODUCTION

Khalid Zaffar Masoodi, PhD, is an acclaimed scientist and educator specializing in biotechnology. With an academic foundation built at prominent institutions, Dr. Masoodi has made significant contributions to plant biotechnology, entrepreneurship, and scientific research. He holds a prestigious position as an Associate Professor and Senior Scientist at Sher-e-Kashmir University of Agricultural Sciences and Technology of Kashmir (SKUAST-Kashmir), contributing to both academia and the broader scientific community.

📚 EARLY ACADEMIC PURSUITS

Dr. Masoodi’s academic journey began with a BSc. Honors in Botany from Aligarh Muslim University, followed by an MSc. in Biotechnology from the University of Jammu. His passion for biotechnology deepened during his Ph.D. at the University of Jammu, under the mentorship of Prof. Manoj Kumar, focusing on cutting-edge research in biotechnology. His dedication to scientific exploration continued with a post-doctoral fellowship at the University of Pittsburgh, USA, where he worked under the guidance of Prof. Zhou Wang, further honing his expertise in biotechnology.

🧪 PROFESSIONAL ENDEAVORS

Dr. Masoodi’s professional career has been marked by a series of impactful academic and research positions. Since 2014, he has served at SKUAST-Kashmir, progressing from Assistant Professor to Associate Professor/Senior Scientist. His leadership extends beyond the classroom, where he contributes significantly to the institution’s research initiatives, including his involvement in innovative startups and biotechnology-related projects. Dr. Masoodi’s early career also included postdoctoral research at the University of Pittsburgh and a senior residency at the Sher-e-Kashmir Institute of Medical Sciences.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS ON Molecular biology

Dr. Masoodi’s research is at the intersection of plant biotechnology, agricultural innovation, and health sciences. He has contributed to groundbreaking work on plant genomics, biotechnology applications, and novel therapeutic approaches for diseases like prostate cancer. His work on designing anticancer “Magic Food” has garnered attention for its potential to revolutionize cancer treatment. He has also developed several technologies that bridge the gap between agriculture, health, and technology.

🌍 IMPACT AND INFLUENCE

Dr. Masoodi’s work has had a lasting impact on agricultural science, biotechnology, and medical research. His involvement in developing high-impact publications and his patents has solidified his position as a thought leader in the field. Furthermore, he has played a crucial role in establishing the first faculty startup at SKUAST-Kashmir, contributing to the entrepreneurial ecosystem in the region. His influence extends to the global scientific community, where he is an active member of prestigious organizations such as the Society for Basic Urologic Research (SBUR), USA.

📈 ACADEMIC CITATIONS AND PUBLICATIONS

Dr. Masoodi’s research is widely recognized, with numerous citations and publications in reputable journals. His contributions to biotechnology, cancer research, and agricultural innovation have been published in international journals, contributing significantly to the scientific community’s understanding of these fields. His work is also frequently cited, indicating the broad impact of his research.

🏅 HONORS & AWARDS

Dr. Masoodi’s career is decorated with numerous accolades, including national and international honors. Notable international awards include the Certificate of Appreciation for his work at the International Conference on Coronavirus and the Journal Award from the Society of Endocrinology, Glasgow. Nationally, Dr. Masoodi has been recognized for his innovative contributions, including the “Achiever of the Year” award in 2024 for his high-impact publications and patented technologies. His awards, spanning across scientific, entrepreneurial, and educational domains, highlight his exceptional career trajectory.

🌐 LEGACY AND FUTURE CONTRIBUTIONS

As an academic and researcher, Dr. Masoodi’s legacy is defined by his impact on biotechnology, cancer treatment, and agricultural innovations. With his continued focus on research, technological advancements, and mentorship, he is poised to make significant contributions to the scientific community and beyond. His work, particularly in the realm of biotechnology startups, is expected to influence future developments in healthcare and agriculture.

🌠 FINAL NOTE

Khalid Zaffar Masoodi, PhD, continues to inspire the scientific community with his groundbreaking research and commitment to innovation. His multidisciplinary approach to biotechnology, combined with his entrepreneurial spirit, sets him apart as a leading figure in the fields of plant biotechnology and agricultural science. Dr. Masoodi’s contributions extend beyond academia, as he shapes the future of biotechnology and health sciences through his work.

📑 NOTABLE PUBLICATIONS 

Achyranthes aspera-derived compounds mitigate the pathogenesis of Meloidogyne incognita and in silico approach to determine interaction with nematode protein
  • Authors: A. Khan, Amir; M. Amir, Mohd; M. Jameel, Mohammed; S. Shahini, Shpend; F. Ahmad, Faheem
  • Journal: Physiological and Molecular Plant Pathology,
  • 2025
Investigating the antioxidant and anticancer potential of Daucus spp. extracts against human prostate cancer cell line C4-2, and lung cancer cell line A549
  • Authors: S.M. Lone, Sameena Maqbool; S. Narayan, Sumati; K. Hussain, Khursheed; A.A. Ahmad, Ajaz A.; K.Z. Masoodi, Khalid Z.
  • Journal: Journal of Ethnopharmacology,
  • 2025
Mapping phenotypic performance and novel SNPs for cold tolerance in tomato (Solanum lycopersicum) genotypes through GWAS and population genetics
  • Authors: L.R. Shah, Labiba Riyaz; N. Ahmed, Nazeer; K. Hussain, Khursheed; B.A. Bhat, Basharat A.; K.Z. Masoodi, Khalid Z.
  • Journal: BMC Genomic Data,
  • 2024
Benzothiazole-Piperazine Hybrids Effectively Target C4-2 Castration-Resistant Prostate Cancer Cells in vitro Implicated through Computational Studies
  • Authors: A. Amin, Andleeb; B.A. Bhat, Basharat A.; Z. Ul-Khazir, Zubaid; P.K. Sharma, Praveen Kumar; K.Z. Masoodi, Khalid Z.
  • Journal: ChemistrySelect,
  • 2024
Phenotypic, biochemical and genetic diversity of pepper (Capsicum spp.) germplasm reflects selection for cultivar types and spatial distribution
  • Authors: S.A. Indrabi, Sayed Azrah; A.A. Malik, Ajaz Ahmed; G. Malik, Geetika; S. Mansoor, Sheikh; K.Z. Masoodi, Khalid Z.
  • Journal: Plant Biotechnology Reports,
  • 2024

 

Xinjian Shi | Plant Biochemistry | Best Researcher Award

Prof. Dr. Xinjian Shi | Plant Biochemistry | Best Researcher Award

Henan University | China

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🌟 Biography of Dr. Shi X.

📚 EARLY ACADEMIC PURSUITS

Dr. Shi X. began their illustrious academic journey in Chemistry, earning a Bachelor of Science (B.S.) degree from Shandong University, China (2006–2010). Their pursuit of higher education led them to South Korea, where they obtained a Master of Science (M.S.) in Chemical Engineering from Sungkyunkwan University (2011–2013). Their academic excellence culminated in a Ph.D. in Mechanical Engineering from the prestigious Stanford University, USA (2015–2020), where they specialized in cutting-edge research areas including electrocatalysis and advanced nanomaterials.

🧪 PROFESSIONAL ENDEAVORS

Dr. Shi’s career spans various roles in academia and research. From 2013 to 2015, they served as an Independent Researcher at Yonsei University, delving into projects on nanomaterials for energy storage and photovoltaic cells. Subsequently, as a Postdoctoral Associate at Stanford University (2020–2021), Dr. Shi contributed to groundbreaking electrocatalysis research with applications ranging from biology to daily-use technologies.

In parallel, they demonstrated their dedication to education by serving as a Graduate Teaching Assistant during their master’s and doctoral studies, teaching courses on Energy and Nanomaterials, Thermodynamics, and General Physics.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS ON PLANT BIOCHEMISTRY

Dr. Shi’s research portfolio is a testament to their commitment to sustainable and innovative technologies. They have made significant contributions in:

  • Photoelectrochemical Water Splitting: Enhancing hydrogen production efficiency using advanced nanostructures.
  • Electrocatalysis: Developing efficient catalysts for water oxidation and hydrogen peroxide synthesis.
  • Nanomaterials: Innovating in the synthesis and application of embedded and homogeneous nanomaterials.

🌍 IMPACT AND INFLUENCE

Dr. Shi’s work has far-reaching implications, driving advancements in renewable energy technologies and green chemistry. Their contributions have enhanced the efficiency of energy conversion systems, enabling sustainable solutions for global challenges.

📈 ACADEMIC CITATIONS AND PUBLICATIONS

Dr. Shi has published extensively in high-impact journals such as Nature Catalysis, ACS Energy Letters, and Advanced Energy Materials. Some key publications include:

  1. Efficient and Stable Acidic Water Oxidation Enabled by Low Concentration, High-Valence Iridium Sites (ACS Energy Letters, 2022).
  2. Understanding Activity Trends in Electrochemical Water Oxidation to Form Hydrogen Peroxide (Nature Communications, 2017).
  3. Photoelectrochemical Hydrogen Production from BiVO4-WO3 Helix Nanostructures (Nature Communications, 2014).

With over 20 peer-reviewed articles, many of Dr. Shi’s works are ESI Highly Cited.

🏅 HONORS & AWARDS

  • Highly Cited Researcher Recognition for impactful publications.
  • Awards for contributions to energy and environmental sciences at international conferences.
  • Participation in the prestigious Preparing Future Professors Program at Stanford University.

🌐 LEGACY AND FUTURE CONTRIBUTIONS

With their robust academic foundation and impactful research, Dr. Shi continues to inspire the next generation of scientists. They aim to further their contributions in clean energy technologies, catalyzing a sustainable future through groundbreaking research and collaborative endeavors.

🌠 FINAL NOTE

Dr. Shi X.’s journey reflects an unyielding commitment to scientific discovery and education. Their work bridges the gap between theoretical insights and practical applications, driving innovation in energy and sustainability.

📑 NOTABLE PUBLICATIONS 

Ignition and Combustion of Perfluoroalkyl-Functionalized Aluminum Nanoparticles and Nanothermite

  • Authors: Jiang, Y., Wang, Y., Baek, J., Zachariah, M.R., Zheng, X.
  • Journal: Combustion and Flame
  • Year: 2022

Ultrahigh-Quality Infrared Polaritonic Resonators Based on Bottom-Up-Synthesized van der Waals Nanoribbons

  • Authors: Yu, S.-J., Jiang, Y., Roberts, J.A., Zheng, X., Fan, J.A.
  • Journal: ACS Nano
  • Year: 2022

Facilitating Laser Ignition and Combustion of Boron with a Mixture of Graphene Oxide and Graphite Fluoride

  • Authors: Jiang, Y., Demko, A.R., Baek, J., Ning, R., Zheng, X.
  • Journal: Applications in Energy and Combustion Science
  • Year: 2020

On-Demand Production of Hydrogen by Reacting Porous Silicon Nanowires with Water

  • Authors: Ning, R., Jiang, Y., Zeng, Y., Gill, T.M., Zheng, X.
  • Journal: Nano Research
  • Year: 2020

Black Phosphorene as a Hole Extraction Layer Boosting Solar Water Splitting of Oxygen Evolution Catalysts

  • Authors: Zhang, K., Jin, B., Park, C., Zeng, H., Park, J.H.
  • Journal: Nature Communications
  • Year: 2019

 

Rongcan Luo | Alzheimer’s disease | Best Researcher Award

Prof . Rongcan Luo | Alzheimer’s disease | Best Researcher Award

Lanzhou University | China

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🎓 Dr. Rongcan Luo: A Beacon in Neurodegenerative Research 

📚 EARLY ACADEMIC PURSUITS

Dr. Rongcan Luo’s academic journey began with a strong foundation in life sciences. He earned his Bachelor of Science (B.S.) from Northwest A&F University in 2012. Pursuing his passion for advanced research, he completed his Master of Science (M.S.) at Lanzhou University in 2015. His exceptional dedication led him to a Ph.D. at the Kunming Institute of Zoology, Chinese Academy of Sciences, where he excelled as a visiting graduate student and assistant professor before ascending to professorship.

🧪 PROFESSIONAL ENDEAVORS

Dr. Luo has built an impressive career in academia and research:

  • 2024-Present: Professor and Cuiying Scholar, Lanzhou University
  • 2019-2023: Associate Professor, Kunming Institute of Zoology
  • 2015-2019: Research Assistant & Visiting Scholar, Chinese Academy of Sciences

His transition to a professorship at Lanzhou University marks a new chapter in his career, where he continues to mentor doctoral candidates and advance groundbreaking research.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS ON ALZHEIMERS DISEASE

Specializing in neurodegenerative diseases, Dr. Luo has focused on Alzheimer’s Disease (AD), exploring its molecular mechanisms and innovative therapeutic strategies. His research integrates multidisciplinary approaches such as:

  • Autophagy-Lysosome System Disorders
  • Gut Microbiota and Metabolic Disorders
  • Drug Target Identification and Small Molecule Drug Screening

This work not only addresses the scientific challenge of combating AD but also aligns with global efforts to improve healthy aging and quality of life.

🌍 IMPACT AND INFLUENCE

Dr. Luo‘s research has profound implications for neurodegenerative diseases. His discoveries, particularly in autophagy-mediated pathways, have opened new avenues for therapeutic interventions. By addressing the biological underpinnings of diseases, his work contributes to the global fight against cognitive decline in aging populations.

📈 ACADEMIC CITATIONS AND PUBLICATIONS

Dr. Luo has authored numerous high-impact publications, with notable works featured in prestigious journals such as Signal Transduction and Targeted Therapy and Autophagy. His groundbreaking studies include:

  1. “Novel A-seco-nortriterpenoids from Ganoderma cochlear” – Organic Chemistry Frontiers, 2024
  2. “Activation of PPARA-mediated autophagy reduces Alzheimer’s disease-like pathology” – Autophagy, 2020 (Cover Story)
  3. “A novel missense variant in ACAA1 and its role in Alzheimer’s disease” – Signal Transduction and Targeted Therapy, 2021

His publications are widely cited, reflecting his influence in the field of neurodegenerative disease research.

🏅 HONORS & AWARDS

Dr. Luo’s exemplary work has been recognized with numerous accolades:

  • 2024: Cuiying Scholar, Lanzhou University
  • 2022: Young Talent of Yunnan Province, Xing Dian Talent Support Programme
  • 2021: Excellent Doctoral Thesis of Yunnan Province
  • 2018: First Prize, Reward Scholarship in Basic Medicine
  • 2017: Zhu Li Yuehua Outstanding Doctoral Student Scholarship

These honors underscore his commitment to advancing science and his leadership in the academic community.

🌐 LEGACY AND FUTURE CONTRIBUTIONS

Looking ahead, Dr. Luo aims to further refine therapeutic strategies for Alzheimer’s and related conditions. His vision is to create a world where aging populations can thrive, free from the burdens of neurodegenerative diseases. His work inspires future scientists to pursue impactful research, ensuring his legacy as a pioneer in medical science.

🌠 FINAL NOTE

Dr. Luo’s passion for research and his innovative approaches have set him apart as a leader in combating neurodegenerative diseases. His dedication to interdisciplinary methods ensures his work remains at the forefront of medical science.

📑 NOTABLE PUBLICATIONS 

Corydecusines A-H, new phthalideisoquinoline hemicetal alkaloids from the bulbs of Corydalis decumbens inhibit Tau pathology by activating autophagy mediated by AMPK-ULK1 pathway
  • Authors: Li, S.; Luo, R.-C.; Liang, Z.-Z.; … Li, N.; Zhang, Y.
  • Journal: Bioorganic Chemistry,
  • year :2024.
Novel A-seco-nortriterpenoids from Ganoderma cochlear inhibiting Tau pathology by activating AMPK-ULK1-mediated autophagy
  • Authors: Luo, R.-C.; Luo, Y.; Fang, D.-S.; … Qiu, M.-H.; Peng, X.-R.
  • Journal: Organic Chemistry Frontiers, 2024, 11(6), pp. 1765–1774
  • Year :2024.
Ganoapplins A and B with an unprecedented 6/6/6/5/6-fused pentacyclic skeleton from Ganoderma inhibit Tau pathology through activating autophagy
  • Authors: Peng, X.; Luo, R.; Ran, X.; … Yao, Y.-G.; Qiu, M.
  • Journal: Bioorganic Chemistry, 2023, 132, 106375.
  • Year :2023.
Euphejolkinolide A, a new ent-abietane lactone from Euphorbia peplus L. with promising biological activity in activating the autophagy-lysosomal pathway
  • Authors: Ran, X.; Lu, Q.-Y.; Li, Y.-Y.; … Hao, X.-J.; Luo, R.
  • Journal: Heliyon, 2023, 9(2), e13691.
  • Year :2023
Jatrophane Diterpenoids from Euphorbia peplus Linn. as Activators of Autophagy and Inhibitors of Tau Pathology
  • Authors: Yan, Y.; Zhou, Q.; Ran, X.; … Di, Y.; Hao, X.
  • Journal: International Journal of Molecular Sciences, 2023, 24(2), 1088.
  • Year :2023
Monoterpenoid indole alkaloid dimers from Kopsia arborea inhibit cyclin-dependent kinase 5 and tau phosphorylation
  • Authors: Chen, C.; Liu, J.-W.; Guo, L.-L.; … Luo, R.-C.; Zhang, Y.
  • Journal: Phytochemistry, 2022, 203, 113392.
  • Year :2022
GSNOR deficiency attenuates MPTP-induced neurotoxicity and autophagy by facilitating CDK5 S-nitrosation in a mouse model of Parkinson’s disease
  • Authors: Jiao, L.; Su, L.-Y.; Liu, Q.; … Chen, C.; Yao, Y.-G.
  • Journal: Free Radical Biology and Medicine, 2022, 189, pp. 111–121.
  • Year :2022

 

Shoubing Huang | Sustainable Agriculture | Best Researcher Award

Assoc. Prof. Dr. Shoubing Huang | Sustainable Agriculture | Best Researcher Award

China Agricultural University | China

Author Profile

📜  Shoubing Huang: A Pioneer in Crop Resilience and Innovation

📚 EARLY ACADEMIC PURSUITS

Dr. Shoubing Huang embarked on his academic journey with a steadfast commitment to crop science. He earned his Ph.D. from the University of Hohenheim, Germany, in 2016, where he delved into abiotic stresses affecting crop productivity. His research laid the foundation for understanding plant physiology under extreme environmental conditions, focusing on molecular mechanisms and strategies to enhance agricultural resilience.

🧪 PROFESSIONAL ENDEAVORS

Currently an Associate Professor at the College of Agronomy and Biotechnology, China Agricultural University, Dr. Huang has been instrumental in advancing crop science. His work encompasses teaching, collaborative research, and mentoring, all aimed at addressing pressing agricultural challenges. He actively collaborates with global experts, contributing groundbreaking insights to the scientific community.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS ON SUSTAINABLE AGRICULTURE

Dr. Huang’s pioneering research centers on the impact of abiotic stresses like high temperatures, drought, and cold on crop reproduction. His studies identified critical sensitivity stages in crops such as maize, elucidating physiological and molecular mechanisms. Through his work, he established the importance of breeding stress-resistant varieties to combat the adverse effects of climate change.

Achievements:

  • Developed insights into the threshold for spikelets per tassel (~700) to stabilize maize seed set ratio under warm conditions.
  • Highlighted the global maladaptation risks in maize-growing regions due to climate change.

🌍 IMPACT AND INFLUENCE

Dr. Huang’s contributions have far-reaching implications in addressing food security amid changing climates. His findings influence breeding programs worldwide, ensuring the development of crop varieties that withstand environmental adversities.

Collaborations:

  • Partnered with Prof. S. V. Krishna Jagadish (Texas Tech University, USA) to publish in Plant, Cell & Environment.
  • Collaborated with Chinese researchers on impactful studies in Nature Climate Change.

🏅 HONORS & AWARDS

Dr. Huang’s groundbreaking work has earned him recognition as a thought leader in crop science. His preferred award category is the Best Researcher Award, reflecting his dedication to innovation and excellence.

🌐 LEGACY AND FUTURE CONTRIBUTIONS

With a mission to tackle climate-induced challenges in agriculture, Dr. Huang’s legacy lies in his transformative approach to breeding and stress management strategies. His future endeavors will continue to shape sustainable agricultural practices and inspire generations of scientists.

🌠 FINAL NOTE

Dr. Shoubing Huang’s unwavering focus on enhancing crop resilience has cemented his reputation as a trailblazer in agricultural science. His ability to bridge theoretical research with practical solutions underscores his impact on global food security.

📑 NOTABLE PUBLICATIONS 

“Maize Breeding for Smaller Tassels Threatens Yield Under a Warming Climate”
  • Authors: Zhang, Y., Dong, X., Wang, H., Wang, B., Huang, S.
  • Journal: Nature Climate Change
  • Year: 2024
“Drip Irrigation Coupled with Appropriate N Input Increased Maize Yield and Lodging Resistance via Optimizing Root and Stem Traits”
  • Authors: Gao, J., Liu, Z., Wang, P., Huang, S.
  • Journal: European Journal of Agronomy
  • Year: 2024
“Molecular Mechanisms Underlying the Negative Effects of Transient Heatwaves on Crop Fertility”
  • Authors: Yao, Q., Li, P., Wang, X., Wang, P., Huang, S.
  • Journal: Plant Communications
  • Year: 2024
“Impacts of High Temperature, Relative Air Humidity, and Vapor Pressure Deficit on the Seed Set of Contrasting Maize Genotypes During Flowering”
  • Authors: Dong, X., Li, B., Yan, Z., Fu, Z., Yang, H.
  • Journal: Journal of Integrative Agriculture
  • Year: 2024
“Heat Stress and Sexual Reproduction in Maize: Unveiling the Most Pivotal Factors and the Greatest Opportunities”
  • Authors: Lv, X., Yao, Q., Mao, F., Wang, P., Huang, S.
  • Journal: Journal of Experimental Botany
  • Year: 2024
“Moderately Reducing N Input to Mitigate Heat Stress in Maize”
  • Authors: Zhou, Y., Liu, M., Chu, S., Wang, P., Huang, S.
  • Journal: Science of the Total Environment
  • Year: 2024
“Molecular Mechanisms Underlying Low Temperature Inhibition of Grain Filling in Maize: Coordination of Growth and Cold Responses”
  • Authors: Xu, C., Wang, X., Wu, Y., Wang, P., Huang, S.
  • Journal: Plant Journal
  • Year: 2024