FAZL ULLAH | Agronomy | Best Researcher Award

Mr. FAZL ULLAH | Agronomy | Best Researcher Award

Mr. Fazl Ullah, Huazhong agricultural University, Pakistan

Mr. Fazl Ullah is a dedicated researcher from Pakistan with a Master’s degree in Agronomy from Yanbian University, China. His academic and research background spans crop physiology, plant nutrition, soil microbiology, and sustainable agricultural practices. He has contributed to multiple peer-reviewed publications focusing on phosphorus management, microbial interactions in soil, and biogas production. Fluent in English, Chinese, Urdu, and Pashto, Mr. Ullah is passionate about advancing crop science and is currently seeking opportunities to pursue a Ph.D. in a research-driven environment.

Profile

Orcid

Summary:

Mr. Fazl Ullah is a promising early-career researcher with a strong foundation in agronomic research, particularly in the areas of plant-soil interactions, biofertilizers, and environmental stress management. His work demonstrates originality, technical depth, and alignment with contemporary global agricultural challenges. He has already contributed to the scientific community through quality publications and shows significant potential for further growth.

🎓 Education

Fazl Ullah holds a Master’s degree in Agronomy from Yanbian University, China, where he studied from 2019 to 2024. Prior to that, he completed a year of intensive Chinese language studies at the same university’s College of International Cultural Exchange in 2018–2019. His academic foundation in agriculture was laid at the University of Swabi in Pakistan, where he earned a Bachelor of Science degree in Agriculture between 2013 and 2017.

💼Experience

Fazl Ullah has been actively involved in academic research throughout his studies. His work includes studies on phosphorus application and phosphate-solubilizing bacteria to enhance maize and wheat yields, contributing to improved nutrient uptake in alkaline soils. He has co-authored multiple peer-reviewed journal articles and engaged in interdisciplinary research on soil microbial communities, greenhouse gas emissions, and biogas production under psychrophilic conditions. Most recently, he conducted research on the effect of iron ion addition on saline-alkali soil properties and microbial dynamics during soybean cultivation, which is currently ready for submission.

🔬Research Focus

His core research interests are centered around crop science and environmental sustainability. He is passionate about plant physiology, crop management, and plant nutrition, particularly in rice, maize, and soybean systems. He is also interested in biofertilizers, photosynthesis, plant hormones, weed control, and the integration of biotechnology and fermentation science in sustainable agriculture. His work extends to greenhouse gas mitigation, biogas production from lignocellulosic materials, and improving soil health in challenging environments.

🛠️Skills

Fazl Ullah possesses a strong skill set in modern agricultural science and research. His expertise includes crop phenotyping, nutrient and soil microbiology analysis, seed testing, and sustainable farming practices. He is proficient in statistical analysis, experimental design, herbicide application, laboratory safety, and scientific data management. His excellent communication and collaboration skills are complemented by his command of Microsoft Word, Excel, and PowerPoint, which he has further refined through professional certification courses.

🏆Awards

He has been the recipient of the prestigious Chinese Government Scholarship awarded by the China Scholarship Council, which fully funded both his Chinese language studies and his Master’s program. Additionally, during his undergraduate studies, he was awarded a merit-based laptop by the Prime Minister of Pakistan in recognition of academic excellence in 2015.

📚 Publications

Title: Effects of FeSO₄ and Organic Additives on Soil Properties and Microbiota during Model Soybean Planting in Saline-Alkali Soil
Authors: Fazl Ullah
Year: 2024
Journal: Agronomy

 

Title: Impact of Temperature on the Performance and Character of the Methanogenic Community of a Fixed-Bed Anaerobic Reactor at Psychrophilic Temperature
Authors: Hongyan Z., Liu H., Sun Y., Zhang L., Ullah F., Piao R., Wang W., Cui Z.
Year: 2021
Journal: Water

 

Title: Combining Phosphorus (P) with Phosphate Solubilizing Bacteria (PSB) Improved Wheat Yield and P Uptake in Alkaline Soil
Authors: Hussain A., Adnan M., Iqbal S., Fahad S., Saeed M., Mian I. A., Muhammad M. W., Romman M., Perveez R., Wahid F., Ullah F.
Year: 2019
Journal: Pure and Applied Biology

 

Title: Integrated Application of Phosphorus (P) and Phosphate Solubilizing Bacteria (PSB) Improves Maize Yield
Authors: Fazl Ullah, Adnan M., Fahad S., Iqbal S., Arshad M., Muhammad D., Wahid F., Noor M.
Year: 2018
Journal: Pure and Applied Biology

Conclusion:

Mr. Fazl Ullah is a highly suitable candidate for the Best Researcher Award at Huazhong Agricultural University. While he is still in the early stages of his academic career, his trajectory is upward, and this recognition would serve to encourage continued excellence and leadership in agricultural research. With further opportunities for leading projects and expanding collaborations, he is well-positioned to make impactful contributions to the field.

Sher Shah Hassan | Agricultural | Best Researcher Award

Mr. Sher Shah Hassan | Agricultural | Best Researcher Award

Mr. Sher Shah Hassan, Ministry of Climate Change, Pakistan

Sher Shah Hassan is an Agricultural Engineer and climate expert currently serving as a Team Lead and MRV/GIS Expert at the Global Climate-Change Impact Studies Centre (GCISC), Ministry of Climate Change, Pakistan. With extensive experience in GIS, remote sensing, climate risk assessment, and energy efficiency, he has played a key role in Pakistan’s GHG inventory, mitigation policies, and adaptation monitoring. He has collaborated with international organizations, including CITEPA (France), the World Bank, UNDP, and PIK (Germany), contributing to climate transparency frameworks and sustainable agricultural strategies. His research focuses on geospatial data analysis, machine learning applications in climate science, and sustainable land and water management.

Profile

Scopus

Summary:

Mr. Sher Shah Hassan is a strong candidate for the Best Researcher Award due to his contributions to air pollution and climate change research in Pakistan, his use of geospatial techniques, and his work’s direct impact on policymaking. However, to enhance his profile further, he could focus on expanding his research globally, publishing more independent work, and increasing international collaborations.

🎓 Education

Sher Shah Hassan holds a BSc (Hons) in Agricultural Engineering from the University of Engineering & Technology, Peshawar, Pakistan, graduating in 2017 with a CGPA of 3.58/4.00. His undergraduate thesis focused on “Spatial Flood Risk Analysis of Chenab River from Marala to Qadirabad Based on Multi-Criteria Decision Analysis (MCDA).” He is currently completing an MSc in Soil and Water Engineering at the same university, with a CGPA of 3.18/4.00. His master’s research integrates geospatial machine learning and multi-criteria decision-making for sustainable mangrove management in the Indus Delta, Pakistan.

💼Experience

Sher Shah Hassan has extensive experience in climate impact research, GIS applications, and agricultural engineering. He currently serves as Team Lead and MRV/GIS Expert at the Global Climate-Change Impact Studies Centre (GCISC), Ministry of Climate Change & Environmental Coordination, Pakistan, where he specializes in data collection, stakeholder engagement, and climate impact analysis. Since May 2021, he has also been the Team Leader for Mitigation & Adaptation at the Centre Interprofessionnel Technique d’Etudes de la Pollution Atmosphérique (CITEPA), France, where he contributes to GHG inventory management, climate transparency, and adaptation monitoring in Pakistan.

🔬Research Focus

Sher Shah Hassan’s research focuses on climate change mitigation and adaptation, sustainable agricultural practices, GIS-based environmental monitoring, energy efficiency in agriculture, and water resource management. His work integrates geospatial technologies and machine learning for sustainable land-use planning and climate resilience.

🛠️Skills

His expertise in GIS and remote sensing applications, climate risk assessment, agricultural engineering, geospatial data analysis, energy efficiency strategies, mitigation and adaptation policy development, stakeholder engagement, and technical report writing. He is also proficient in multi-criteria decision analysis, machine learning applications in climate science, and institutional capacity building.

🏆Awards

Throughout his career, he has been engaged in national and international climate research collaborations, contributing to policy frameworks and transparency mechanisms for climate adaptation. His contributions to Pakistan’s climate action strategies, particularly in MRV systems and energy efficiency, have been instrumental in shaping policy interventions.

📚 Publications

  • Title: Assessing smog trends and sources of air pollutants across northeastern districts of Punjab, Pakistan using geospatial techniques 
  • Authors: M.A. Goheer (Muhammad Arif), S.S. Hassan (Sher Shah Hassan), A.S. Sheikh (A. S.), M.A. Uzair (Muhammad Ali), T.N. Satti (T. N.)
  • Journal: International Journal of Environmental Science and Technology 
  • Year of Publication: 2025

Conclusion:

 Mr. Sher Shah Hassan is a suitable candidate for the Best Researcher Award. His research aligns with pressing environmental challenges, and his findings have both scientific merit and policy implications. However, strengthening his global reach and independent research contributions could make his candidacy even stronger.

Muhammad Asad Ullah | Agricultural | Best Researcher Award

Mr. Muhammad Asad Ullah | Agricultural | Best Researcher Award

Mr. Muhammad Asad Ullah, University of the Punjab, Pakistan

Muhammad Asad Ullah is an MSc (Hons.) student in Plant Breeding and Genetics at the University of the Punjab, Pakistan. His research at the National Institute for Genomics and Advanced Biotechnology (NIGAB) focuses on integrating UAV-based high-throughput phenotyping with genome-wide association studies (GWAS) to enhance wheat breeding for drought tolerance. He has expertise in fieldwork, laboratory techniques, bioinformatics, and computational statistics. His work contributes to precision breeding and crop resilience under abiotic stress. He has published research on plant genomics and actively participates in international conferences and scientific discussions.

Profile

Orcid

Summary:

Mr. Muhammad Asad Ullah is a strong contender for the Best Researcher Award, given his diverse contributions to crop genetics, plant stress tolerance, and sustainable agriculture. His publications in high-quality journals and collaboration with international researchers make him a valuable asset to the scientific community. However, improving research funding, citation impact, conference engagement, and policy-oriented contributions could further strengthen his profile.

🎓 Education

Muhammad Asad Ullah is currently pursuing an MSc (Hons.) in Plant Breeding and Genetics at the University of the Punjab, Lahore, with a CGPA of 3.40/4.00. His master’s research focuses on unraveling genetic factors associated with early-stage drought tolerance in wheat using multispectral imaging. He previously earned a BSc (Hons.) in Agriculture with a specialization in Plant Breeding and Genetics from Bahauddin Zakariya University, Multan, achieving a CGPA of 3.50/4.00. His undergraduate thesis explored the responsiveness of wheat genotypes to zinc application under drought conditions.

💼Experience

Muhammad Asad Ullah is currently conducting his MSc research at the National Institute for Genomics and Advanced Biotechnology (NIGAB), NARC, Pakistan, where he specializes in UAV-based high-throughput phenomics and genomic research. His work integrates multispectral imaging, machine learning models, and genomic analyses such as genome-wide association studies (GWAS) to identify key QTLs and potential candidate genes regulating important traits. Previously, he was involved in breeding and evaluating exotic tomato genotypes in the arid climate of Layyah, sourcing germplasm from the Netherlands Genebank and crossing them with local varieties to enhance adaptation.

🔬Research Focus

His research primarily focuses on integrating advanced high-throughput phenomics and genomics approaches to improve crop breeding. He employs UAV-based high-throughput phenotyping techniques combined with GWAS to accelerate breeding and enhance genomic selection accuracy, particularly in wheat. His work contributes to understanding plant responses to abiotic stress and improving crop resilience through precision breeding.

🏆Awards

Muhammad Asad Ullah has received several accolades, including a Certificate of Appreciation for being the best Class Representative during his BSc (Hons.) studies in 2023. He won the college sports gala badminton tournament in 2018 and was awarded a merit-based solar panel by the Punjab Provincial Government in 2014. In 2012, he secured first position in the English speech competition at the Punjab Youth Festival.

🛠️Skills

He possesses extensive expertise in laboratory techniques, including DNA and RNA extraction, PCR, gel electrophoresis, and microplate spectroscopy. His field experimentation skills include digital phenotyping through UAV-based imaging, root system analysis, and floral trait assessment. He is proficient in R, Python, MATLAB, SAS, and Origin Lab for statistical and genomic data analysis, along with software such as PiX4D mapper, Agisoft Metashape, and GIS for UAV-based phenotyping. His experience extends to machine learning regression models and genomic analysis tools like Structure, Tassel, and TB tools.

Publications

  • Screening and Assessment of Genetic Diversity of Rice (Oryza sativa L.) Germplasm in Response to Soil Salinity Stress at Germination Stage

    • Journal: Agronomy
    • Authors: Alia Anwar, Javaria Tabassum, Shakeel Ahmad, Muhammad Ashfaq, Adil Hussain, Muhammad Asad Ullah, Nur Shuhadah Binti Mohd Saad, Abdelhalim I. Ghazy, Muhammad Arshad Javed
    • Year: 2025
  • Comprehensive Identification of GASA Genes in Sunflower and Expression Profiling in Response to Drought

    • Journal: BMC Genomics
    • Authors: Muhammad Asad Ullah, Muhammad Awais Ahmed, Latifa AlHusnain, Muhammad Abu Bakar Zia, Muneera D. F. AlKahtani, Kotb A. Attia, Mohammed Hawash
    • Year: 2024
  • Genetically Modified Crops Global Regulation: Implications for Food Security and Environmental Sustainability

    • Journal: Not Specified
    • Authors: Muhammad Asad Ullah
    • Year: 2024
  • Unveiling Genetic Threads: Phenotypic Exploration of Chickpea (Cicer arietinum L.) Germplasms for Heritability and Trait Associations

    • Journal: Journal of Physical, Biomedical and Biological Sciences
    • Authors: Muhammad Asad Ullah
    • Year: 2024
  • Morphological Characterization of Diverse Wheat Genotypes for Yield and Related Traits Under Drought Condition

    • Journal: International Journal of Natural and Engineering Sciences
    • Authors: Muhammad Asad Ullah
    • Year: 2023
  • Physiological Response of Wheat Genotypes Toward Zinc Regimens

    • Journal: International Journal of Natural and Engineering Sciences
    • Authors: Muhammad Asad Ullah
    • Year: 2023

Conclusion:

Mr. Muhammad Asad Ullah is an outstanding researcher with significant contributions to plant sciences, his chances of winning the Best Researcher Award would be further enhanced by securing grants, improving citation impact, and increasing international visibility. If these areas are addressed, he would be an excellent choice for the award.

Ze Zhang | Agricultural Science | Best Researcher Award

Prof. Ze Zhang | Agricultural Science | Best Researcher Award

Prof. Ze Zhang, Shihezi University, China

Prof. Ze Zhang is the Director of the Department of Smart Agriculture and an Associate Professor at the College of Agriculture, Shihezi University, China. He holds a Ph.D. in Crop Cultivation and Farming Systems from Shihezi University. His research focuses on smart agriculture, agricultural remote sensing, and precision farming technologies, particularly in cotton production. He has authored 57 research papers, multiple books, and holds several patents on nitrogen diagnosis and soil nutrient management. With an h-index of 13 and 1,179 citations, his contributions have significantly advanced precision agriculture and digital farming innovations.

Profile

Scopus

Summary:

Prof. Ze Zhang has made outstanding contributions to smart agriculture, particularly in remote sensing applications for cotton production. His research, patents, and leadership in digital farming demonstrate his excellence in precision agriculture. His ability to secure research funding and publish extensively highlights his commitment to advancing agricultural technology. While he is a strong candidate for the Best Researcher Award, enhancing global collaborations, industry engagement, and mentorship could further strengthen his profile.

 

🎓 Education

Ze Zhang received his Bachelor’s degree in Forestry from Shihezi University in 2008, followed by a Master’s degree in Plant Nutrition from the same university in 2011. He completed his Ph.D. in Crop Cultivation and Farming Systems at Shihezi University in 2015.

 

💼Experience

Ze Zhang is currently the Director of the Department of Smart Agriculture and an Associate Professor at the College of Agriculture, Shihezi University. He has been actively involved in research, teaching, and innovation, particularly in the fields of smart agriculture and agricultural remote sensing.

 

🔬Research Focus

His research primarily focuses on smart agriculture, agricultural remote sensing, and precision farming technologies. His work addresses key challenges in cotton production by developing innovative solutions for monitoring, decision-making, and management efficiency, reaching internationally recognized standards.

Awards

Ze Zhang has contributed significantly to agricultural science, as evidenced by his h-index of 13, 57 research papers, and 1,179 literature citations. He has published multiple books on digital agriculture, precision irrigation, and cotton monitoring. He has also developed patented methods for nitrogen nutrition diagnosis in cotton and soil nutrient management using GIS and remote sensing.

 

Skills

Ze Zhang specializes in precision agriculture, agricultural remote sensing, nitrogen diagnosis in crops, smart farming technologies, and cotton production management. His expertise extends to integrating Geographic Information Systems (GIS), remote sensing, and the Internet of Things (IoT) in agriculture.

 

Publications

  • A Model for Fat Content Detection in Walnuts Based on Near-Infrared Spectroscopy

    • Authors: L. Luo, H. Zhang, Y. Wang, C. Feng, Z. Zhang
    • Journal: Horticulturae
    • Year: 2024

 

  • Warming Effect of the Desert Regulates Spatio-Temporal Distribution of Cotton Verticillium Wilt for the Oasis Agriculture Ecosystem

    • Authors: Y. Gui, C. Huang, J. Zhou, X. Lv, L. Zhang
    • Journal: Industrial Crops and Products
    • Year: 2024

 

  • Comprehensive Growth Monitoring Index Using Sentinel-2A Data for Large-Scale Cotton Production

    • Authors: H. Wang, Q. Yao, Z. Zhang, X. Lv, L. Zhang
    • Journal: Field Crops Research
    • Year: 2024

 

  • “Image-Spectral” Fusion Monitoring of Small Cotton Samples Nitrogen Content Based on Improved Deep Forest

    • Authors: S. Qin, Y. Ding, T. Zhou, Z. Zhang, L. Zhang
    • Journal: Computers and Electronics in Agriculture
    • Year: 2024

 

  • Modeling of Cotton Yield Estimation Based on Canopy Sun-Induced Chlorophyll Fluorescence

    • Authors: H. Wang, Y. Ding, Q. Yao, Z. Zhang, Z. Gao
    • Journal: Agronomy
    • Year: 2024

Conclusion:

Prof. Ze Zhang is a highly suitable candidate for the Best Researcher Award. His extensive research, leadership, and technological advancements in smart agriculture position him as a top contender. Addressing minor areas for improvement could further elevate his impact and reinforce his contributions to agricultural science on a global scale.