Asif Iqbal | Agricultural and Biological Sciences | Most Cited Article Award

Asif Iqbal | Agricultural and Biological Sciences | Most Cited Article Award

Department of Agriculture, Hazara University Mansehra | Pakistan

Dr. Asif Iqbal is an accomplished agronomist specializing in crop production, plant nutrition, and plant stress physiology. He earned his B.Sc. (Hons) and M.Sc. (Hons) in Agronomy with a Gold Medal and completed his Ph.D. on nitrogen use efficiency in cotton from the Chinese Academy of Agricultural Sciences, followed by a postdoctoral fellowship on phosphorus use efficiency in cotton. He has held academic and research positions, including Associate Professor at Peking University Institute of Advanced Agricultural Sciences, and is currently serving as an Assistant Professor at Hazara University. His research focuses on genetic evaluation of crop germplasm and adaptive mechanisms under biotic and abiotic stresses. He has received multiple prestigious scholarships and awards and has contributed extensively to scientific literature with numerous journal articles, books, and conference publications, while also serving as a reviewer and editorial board member for international journals.

Citation Metrics (Scopus)

1100825

550

275

0

Citations
1,069
Documents
44
h-index
19

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Featured Publications


Sustainable enhancement of apricot (Prunus armeniaca L.) yield through foliar application of potassium silicate and glycine

– Journal of the Science of Food and Agriculture, 2026

Exogenous silicon enhances the salt tolerance of cotton seedlings by regulating water status through abscisic acid and aquaporin

– Journal of the Science of Food and Agriculture, 2026

Soil alkalinity and cotton production: Challenges, physiological effects, and sustainable solutions

– Review Article, 2026

Root-microbiome synergy drives phosphorus acquisition in cotton: Genotype-specific recruitment of beneficial taxa under low phosphorus stress

– Industrial Crops and Products, 2026

Darya Novopashina | Genetics and Molecular Biology | Research Excellence Award

Darya Novopashina | Genetics and Molecular Biology | Research Excellence Award

Institute of Chemical Biology and Fundamental Medicine SB RAS | Russia

Dr. Darya Novopashina, Ph.D., is a senior researcher at the Laboratory of RNA Chemistry, Institute of Chemical Biology and Fundamental Medicine, SB RAS, where she has built a distinguished career in nucleic acid chemistry and bioorganic research. Her scientific work spans the design, synthesis, and functional exploration of modified oligoribonucleotides, with early contributions focused on creating conjugates of chemically altered RNA fragments for targeted gene expression inhibition. Over the years, she has advanced this foundation by investigating hybrid structures formed between nucleic acid fragments and carbon nanotubes, offering new insights into nanobiotechnology and molecular detection technologies. She has also developed innovative fluorescent oligonucleotide probes aimed at improving the sensitivity and specificity of nucleic acid detection methods. Currently, her research centers on engineering modified guide RNAs for CRISPR/Cas9 systems, where she has contributed to the development of light- and small-molecule–regulatable genome-editing platforms that enhance precision, control, and versatility in genetic manipulation. Through her work, Dr. Novopashina has become a key contributor to the evolution of RNA-based tools in molecular biology, enabling improvements in gene regulation, diagnostic capabilities, and therapeutic strategies. With a publication record exceeding 60 scientific papers, she is recognized for her consistent contributions to the fields of chemical biology, RNA modification, and genome-engineering technologies.

Profile: Orcid | Scopus

Featured Publications

Gavrilova, A. A., Kuznetsova, A. A., Novopashina, D. S., Zheng, C., Sun, Q., & Kuznetsov, N. A. (2025).
Biochemical characterization of R-loop degradation by chloroplast-localized RNase H1 from Arabidopsis thaliana. International Journal of Molecular Sciences, 26(22),

Kamzeeva, P., Shepelev, N., Zabbarova, V., Brylev, V., Chistov, A., Ryazantsev, D., Kot, E., Novopashina, D., Rubtsova, M., & Aralov, A. (2025).
Structural characterization of DDX23 5′ UTR regulatory elements and their targeting by LNA-modified antisense oligonucleotides. International Journal of Molecular Sciences, 26(22),

Dolzhikova, O., Meschaninova, M., Endutkin, A., Golyshev, V., Vorobyeva, M., & Novopashina, D. (2024).
Design of theophylline binding guide RNA for allosteric regulation of CRISPR/Cas9 system [Preprint]. Preprints.

Sakovina, L., Vokhtantsev, I., Akhmetova, E., Vorobyeva, M., Vorobjev, P., Zharkov, D. O., & Novopashina, D. (2024).
Photocleavable guide crRNAs for a light-controllable CRISPR/Cas9 system. International Journal of Molecular Sciences, 25(22),

 Kuznetsova, A. A., Kosarev, I. A., Timofeyeva, N. A., Novopashina, D. S., & Kuznetsov, N. A. (2024).
Kinetic features of degradation of R-loops by RNase H1 from Escherichia coli. International Journal of Molecular Sciences, 25(22),