Larry Hanson | Crop Science | Innovative Research Award

Innovative Research Award

                 Larry Hanson
Affiliation Academic Research Institution
Country United States
Scopus ID 7201657844
Documents 91
Citations 2,185
h-index 25
Subject Area Crop Science
Event Botany Scientist Awards

Larry Hanson is a researcher associated with the field of Crop Science. His scholarly profile reflects sustained research activity, international academic visibility, and measurable scientific impact through publications and citations indexed by Scopus. His contributions have supported advancements within agricultural and botanical sciences while demonstrating continued engagement with contemporary research challenges.[1]

Abstract

This article summarizes the scholarly achievements and research profile of Larry Hanson in Crop Science. The overview considers bibliometric indicators, research productivity, citation performance, and broader academic influence relevant to recognition through the Innovative Research Award presented at the Botany Scientist Awards. Information is based primarily on publicly available scholarly indexing services and academic references.[1]

Keywords

Crop Science, Plant Research, Agricultural Science, Sustainable Agriculture, Plant Biology, Research Impact, Scientific Publications, Bibliometrics, Innovation, Botany, Scopus, Citation Analysis, Academic Recognition, Research Excellence.

Introduction

Crop Science integrates plant genetics, physiology, agronomy, soil interactions, and sustainable production systems. Researchers working within this discipline contribute to improving food security, environmental stewardship, and agricultural productivity. Larry Hanson has developed a scholarly record reflecting active participation in these research areas as demonstrated through indexed scientific publications and citation metrics.[2]

Research Profile

  • Researcher: Larry Hanson
  • Country: United States
  • Subject Area: Crop Science
  • Scopus Author ID: 7201657844
  • Citation Count: 2,185
  • h-index: 25
  • Recognition Event: Botany Scientist Awards

Research Contributions

Larry Hanson has contributed to scientific investigations within Crop Science through peer-reviewed publications addressing plant improvement, agricultural sustainability, and related biological systems. His research output demonstrates continuing engagement with evidence-based scientific inquiry while supporting the advancement of modern agricultural research.[1]

Publications

Publications indexed in Scopus indicate a consistent record of scholarly activity. Individual articles have contributed to citation growth and academic visibility within Crop Science and related disciplines. Detailed publication lists are available through the Scopus Author Profile.[1]

Research Impact

With more than 2,185 citations and an h-index of 25, Larry Hanson’s research demonstrates measurable scholarly influence. These bibliometric indicators suggest sustained academic engagement and recognition by the international research community, reflecting the continued relevance of his scientific contributions.[1]

Award Suitability

Based on available bibliometric evidence, Larry Hanson demonstrates characteristics commonly considered in academic recognition programs, including research productivity, citation impact, subject specialization, and international scholarly visibility. These indicators align with evaluation criteria frequently applied to innovative research awards within agricultural and botanical sciences.[2]

Conclusion

Larry Hanson maintains a scholarly profile characterized by meaningful scientific output, significant citation performance, and ongoing contributions to Crop Science. His academic achievements provide a credible basis for professional recognition within international research award programs dedicated to scientific excellence and innovation.[1]

References

  1. Investigation mechanisms of action and resistance of Edwardsiella ictaluri to trans-cinnamaldehyde, DOI: 10.1371/journal.pone.0340053
  2. Recombinant TadZ from the type IVc pilus system induces protective immunity against virulent Aeromonas hydrophila in channel catfish (Ictalurus punctatus), DOI: 10.3389/fimmu.2026.1763508
  3. Aquatic animal health research enabled by biosecure hatchery and experimental fish facilities, https://avmajournals.avma.org/view/journals/ajvr/87/5/ajvr.26.03.0106.xml
  4. Hi-C Metagenome Deconvolution of Double-Crested Cormorant (Nannopterum auritum) Fecal Samples Demonstrates Feasibility of Linking Microbial Genomes, AMR Genes, and Mobile Elements in Avian Microbiomes, https://doi.org/10.3390/microorganisms14061198
  5. Comparative genomics insights into Pseudomonas rhodesiae: environmental distribution, resistance determinants, virulence factors, and evolutionary implications, https://link.springer.com/article/10.1186/s12864-026-12681-3

Kun Yang | Phytopathology | Innovative Research Award

Innovative Research Award

Kun Yang
Crops Research Institute, China
                                   Kun Yang
Affiliation Plant Pathology & Crop Immunity Research
Country China (research collaborations)
Documents 9
Citations Indexed journal citations
Subject Area Plant Immunity, Phytopathology, Crop Resistance
Event Botany Scientist Awards
ORCID 0009-0000-9014-286X

Kun Yang has contributed to research on plant immune pathways, crop resistance against Phytophthora pathogens, pathogen-derived effectors, and molecular mechanisms associated with disease resistance in soybean and Solanaceae species. Publications include studies in high-impact journals focusing on plant-pathogen interactions and agricultural biotechnology.[1]

Abstract

This article summarizes the academic profile of Kun Yang, highlighting contributions to crop disease resistance, immune signaling pathways, and molecular responses against Phytophthora infections. Research outputs span molecular plant pathology and agricultural biotechnology.[1]

Keywords

Plant immunity; Phytophthora resistance; Crop protection; Soybean resistance; Molecular plant pathology; Disease resistance.

Introduction

Modern agricultural systems depend on improved resistance mechanisms against pathogenic microorganisms. Molecular research on immune pathways and pathogen interactions plays a critical role in sustainable crop production.[2]

Research Profile

  • ORCID indexed researcher with multiple peer-reviewed publications.
  • Research emphasis on Phytophthora resistance pathways.
  • Contributions to soybean and Solanaceae disease resistance studies.
  • Participation in collaborative international plant science research.

Research Contributions

Major studies include engineering crop resistance by targeting pathogen-derived PI3P, receptor-mediated immunity triggered by Pythium elicitation, and antimicrobial protein targeting strategies for improved crop protection.[3]

Publications

  • Engineering crop Phytophthora resistance by targeting pathogen-derived PI3P (2023).
  • Novel Elicitin from Pythium oligandrum Confers Disease Resistance (2022).
  • The Pythium periplocum elicitin PpEli2 confers broad-spectrum disease resistance (2022).
  • Targeting anti-microbial proteins to hyphal surfaces (2021).

Research Impact

The research portfolio contributes to understanding immune regulation in plants and practical approaches for disease-resistant crop development, with implications for food security and agricultural sustainability.[4]

Award Suitability

The interdisciplinary focus on plant immunity, biotechnology and pathogen resistance aligns with recognition categories emphasizing agricultural innovation and scientific contribution.[2]

Conclusion

Kun Yang’s research record demonstrates sustained engagement in molecular plant pathology and disease resistance studies relevant to crop improvement.[1]

References

  1. ORCID. (2026). Kun Yang (0009-0000-9014-286X): works and publication profile.
    https://orcid.org/0009-0000-9014-286X
  2. Yang K. et al. (2022). The Pythium periplocum elicitin PpEli2 confers broad-spectrum disease resistance.
    https://doi.org/10.1093/hr/uhac255
  3. Yang K. et al. (2023). Engineering crop Phytophthora resistance by targeting pathogen-derived PI3P.
    https://doi.org/10.1016/j.xplc.2022.100460
  4. Yang K. et al. (2022). Novel Elicitin from Pythium oligandrum Confers Disease Resistance.
    https://doi.org/10.1021/acs.jafc.2c06431