Moreno Toselli | Agricultural and Biological Sciences | Best Researcher Award

Prof. Dr. Moreno Toselli | Agricultural and Biological Sciences | Best Researcher Award 

Full professor at University of Bologna |Italy

Prof. Dr. Moreno Toselli is a leading academic figure in Agricultural and Biological Sciences, widely recognized for his extensive contributions to plant nutrition, soil fertility, and sustainable fruit production. He earned his foundational training in Agricultural Sciences followed by doctoral specialization in fruit tree mineral nutrition, laying the groundwork for a career dedicated to improving orchard systems through evidence-based agronomic strategies. Over the years, he has advanced through academic ranks to become a senior faculty member at the University of Bologna, where he has played a central role in teaching, research, and laboratory leadership across multiple horticultural disciplines. His professional experience spans decades of impactful work on nutrient uptake, stress physiology, organic amendments, biochar interactions, root dynamics, soil contamination, carbon allocation, irrigation optimization, and physiological responses of perennial fruit crops. He has coordinated and contributed to numerous regional, national, and international research projects focused on digital agriculture, circular nutrient management, sustainable fertilization, carbon sequestration, and precision horticulture, collaborating with scientific partners and industry stakeholders to translate research findings into practical applications. His expertise extends to editorial responsibilities in respected journals and active participation in professional societies, reinforcing his influence in shaping contemporary agricultural practices. With a research portfolio comprising 2,274 citations by 1,887 documents, 125 published works, and an h-index of 27, his scholarly output demonstrates sustained global impact and authority in the field. His investigations have advanced understanding of key processes such as nutrient mobility in soil–plant systems, the effects of organic and mineral fertilizers on tree performance, the mitigation of abiotic stress, and the development of innovative fertilization and monitoring tools for improving orchard efficiency. He has also contributed to training future scholars through extensive supervision of student research and active involvement in academic program development. Overall, his career reflects a commitment to scientific excellence, sustainability, and innovation, positioning him as a prominent contributor to advancing knowledge and improving management strategies in modern horticulture.

Profile: Scopus | Orcid 

Featured Publications:

1. Toselli, M. (2025). Seasonal uptake and partitioning of macro- and micronutrients in yellow-fleshed kiwifruit Actinidia chinensis var. chinensis.

2. Toselli, M. (2025). Optimization of irrigation on walnut through the IRRIFRAME water balance model. Irrigation Science.

3. Toselli, M.(2025). The use of grape pomace residues as a nutrient source in subtropical viticulture. Agronomy.

4. Toselli, M.(2025). Proposal of nutritional standards for the assessment of the nutritional status of grapevines in subtropical and temperate regions. Plants.

5. Toselli, M.(2025). Agronomic strategies to manipulate kiwifruit calcium content to understand its role in fruit physiology.

6. Toselli, M. (2025). Understanding the role of calcium in kiwifruit: Ion transport, signaling, and fruit quality.

7. Toselli, M.(2024). Assessment of contribution of cover crop littering decomposition to the N uptake of bearing and non-bearing satsuma mandarin trees.

8. Toselli, M.(2024). Cu concentration in vegetable-cultivated soil: Comparison between open fields and protected environments in Brazil.

9. Toselli, M.(2024). Carbon and nitrogen stocks in vineyard soils amended with grape pomace residues. Agronomy.

10. Toselli, M.(2024). Molecular responses to drought and waterlogging stresses of kiwifruit Actinidia chinensis var. deliciosa potted vines.

Zainib Babar | Agricultural and Biological Sciences | Best Researcher Award

Dr.Zainib Babar | Agricultural and Biological Sciences | Best Researcher Award 

PhD at Shanghai Jiao Tong University | China 

Dr. Zainib Babar is an emerging scholar in agricultural and biological sciences, specializing in plant–microbe interactions, molecular biology, and plant immunity. Her academic foundation includes advanced training in horticulture, molecular genetics, and plant biotechnology, culminating in a doctoral degree from a leading institution where her research focused on identifying and characterizing conserved RxLR effectors of Plasmopara viticola that target host proteins involved in grapevine immune signaling. Her work provides critical insights into the molecular basis of plant resistance, contributing to the development of sustainable strategies for crop protection and productivity improvement. She possesses strong expertise in both experimental and computational biology, including gene cloning, protein purification, quantitative reverse transcription PCR, yeast hybridization, protein modeling, and bioinformatics analysis using R-Studio, Tb-tools, and ITASSER. Her prior research experience includes work on CRISPR/Cas-mediated genome editing in cotton for viral resistance, reflecting her commitment to addressing global agricultural challenges through genetic innovation. Dr. Zainib Babar has served as a lecturer, sharing her knowledge in biochemistry and molecular sciences, and has participated in numerous international conferences, symposiums, and workshops on plant biotechnology and genomics. Her scholarly output includes publications in reputable journals such as the Journal of Biomolecular Structure and Dynamics and Frontiers in Molecular Biosciences, where she has contributed to studies on protein–pathogen interactions and computational drug discovery. She has been recognized with multiple academic awards, including prestigious scholarships for her research excellence and participation in global scientific training programs. With 226 citations by 189 documents, 5 publications, and an h-index of 5, Dr. Zainib Babar demonstrates a growing international reputation for scientific innovation and collaboration. Her research continues to focus on the molecular mechanisms of plant defense and the application of biotechnology to enhance crop resilience and food security. Through her dedication to advancing knowledge at the intersection of molecular biology and agricultural science, she exemplifies the next generation of researchers striving to create sustainable solutions for the global agricultural sector.

Featured Publications:

Babar, Z., Khan, A., Hussain, A., Liu, J., Wu, W., Fu, P., & Lu, J. A highly conserved oomycete effector PvRxLR15 hijacks Vv14-3-3ω to suppress plant immunity. Horticulture Research.

Babar, Z., Hussain, A., Khan, A., & Lu, J. NLR-driven plant immunity: Mechanisms, regulation, evolution, and application.

Khan, A., Babar, Z., & Lu, J. The LWY motif of PvRxLR111 is required for VvSGT1-mediated resistance in grapevines.

Babar, Z., Khan, M., Zahra, M., Anwar, M., Noor, K., Hashmi, H. F., Suleman, M., & Wei, D.-Q. (2020). Drug similarity and structure-based screening of medicinal compounds to target macrodomain-I from SARS-CoV-2 to rescue the host immune system: A molecular dynamics study. Journal of Biomolecular Structure and Dynamics, 39(18), 1–15.

Khan, A., Ali, S. S., Khan, M. T., Saleem, S., Ali, A., Suleman, M., Babar, Z., Shafiq, A., Khan, M., & Wei, D.-Q. (2020). Combined drug repurposing and virtual screening strategies with molecular dynamics simulation identified potent inhibitors for SARS-CoV-2 main protease (3CLpro). Journal of Biomolecular Structure and Dynamics, 39(10), 1–12.

Khan, A., Khan, M., Saleem, S., Babar, Z., Ali, A., Khan, A. A., Sardar, Z., Hamayun, F., Ali, S. S., & Wei, D.-Q. (2020). Phylogenetic analysis and structural perspectives of RNA-dependent RNA polymerase inhibition from SARS-CoV-2 with natural products. Interdisciplinary Sciences: Computational Life Sciences, 12(3), 1–14.

Khan, A., Junaid, M., Li, C.-D., Saleem, S., Hamayun, F., Shamas, S., Ali, S. S., Babar, Z., & Wei, D.-Q. (2020). Dynamics insights into the gain of flexibility by Helix-12 in ESR1 as a mechanism of resistance to drugs in breast cancer cell lines. Frontiers in Molecular Biosciences, 6, 159