Kajol B.M. Singh | Plant Epigenetics | Young Researcher Award

Young Researcher Award

Kajol B.M. Singh
Affiliation The International Centre for Genetic Engineering and Biotechnology (ICGEB)
Country India
Scopus ID 57219895796
Documents 4
Citations 40
h-index 1
Subject Area Plant Epigenetics
Event International Young Scientists Award
ORCID 0000-0002-5825-3145

Kajol B.M. Singh
The International Centre for Genetic Engineering and Biotechnology (ICGEB), India

Kajol B.M. Singh is affiliated with The International Centre for Genetic Engineering and Biotechnology (ICGEB), India, and has contributed to research within the field of plant abiotic stress. The available scholarly metrics indicate publications indexed in Scopus together with citation activity reflecting research dissemination and academic engagement. The profile demonstrates participation in studies focused on plant stress biology and related molecular research that contribute to scientific understanding within agricultural biotechnology.[1] [2]

Abstract

This academic profile summarizes the scholarly activities of Kajol B.M. Singh in the area of plant abiotic stress. The profile is based on publicly available academic indicators including indexed publications, citations, author identifiers, and institutional affiliation. The documented research reflects continued interest in understanding plant responses to environmental stresses through molecular and genetic approaches that contribute to agricultural resilience and biotechnology research.[1] [3]

Keywords

  • Plant Abiotic Stress
  • Plant Biotechnology
  • Stress Physiology
  • Genetic Engineering
  • Crop Improvement
  • Molecular Biology
  • Gene Regulation
  • Agricultural Biotechnology

Introduction

Plant abiotic stress represents a significant area of agricultural research due to its influence on crop productivity under changing environmental conditions. Investigations into stress tolerance mechanisms support the development of resilient crop varieties through molecular genetics and biotechnology. Researchers working in this discipline contribute valuable scientific evidence that supports sustainable agriculture and food security.[3]

Research Profile

Kajol B.M. Singh is associated with The International Centre for Genetic Engineering and Biotechnology (ICGEB), an internationally recognized research organization dedicated to life sciences and biotechnology. The available bibliometric indicators show four indexed publications, forty citations, and an h-index of one according to the Scopus author profile. These indicators provide an overview of the researcher’s scholarly visibility and scientific contribution within the available indexed literature.[1]

Research Contributions

  • Research involving molecular mechanisms associated with plant abiotic stress responses.
  • Studies supporting genetic and biotechnological approaches for crop resilience.
  • Contribution to scientific publications indexed within recognized academic databases.
  • Participation in interdisciplinary plant science research with relevance to agricultural sustainability.

Publications

The researcher has four publications indexed in Scopus according to the available author profile. These publications contribute to the scientific literature related to plant biotechnology and stress biology. Individual articles are assigned persistent identifiers, including DOI records where applicable, enabling long-term accessibility and citation within the scholarly community.[1] [4]

Research Impact

Citation metrics provide one measure of scholarly influence by indicating how frequently research outputs are referenced by subsequent publications. With forty citations and an indexed publication record, the available metrics suggest measurable academic engagement and visibility within the relevant scientific community. Bibliometric indicators should be interpreted alongside qualitative assessment of research quality and scientific significance.[1]

Award Suitability

The available academic profile demonstrates active participation in plant biotechnology research supported by internationally recognized researcher identifiers and indexed scholarly publications. These characteristics align with evaluation criteria commonly considered for early-career academic recognition programs, including publication record, research impact, institutional affiliation, and contribution to specialized scientific disciplines. Final award decisions remain subject to independent peer evaluation and the official assessment criteria established by the awarding organization.[1] [5]

Conclusion

Kajol B.M. Singh’s academic profile reflects research activity in plant abiotic stress supported by recognized institutional affiliation and internationally indexed scholarly records. The available bibliometric indicators provide evidence of research dissemination and contribute to an objective overview of academic achievements within the field of plant biotechnology.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Kajol B.M. Singh, Author ID 57219895796. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57219895796
  2. ORCID. (n.d.). ORCID record: Kajol B.M. Singh.
    https://orcid.org/0000-0002-5825-3145
  3. International Centre for Genetic Engineering and Biotechnology. (n.d.). Research activities in biotechnology and life sciences.
    https://www.icgeb.org/
  4. Google Scholar author details: Kajol B.M. Singh.
    https://scholar.google.com/citations?user=7vtsTaUAAAAJ&hl=en
  5. Young Scientist Awards. (n.d.). International Young Scientists Award.
    https://youngscientistawards.com/

Muhammad Fuad Anshori | Plant Breeding | Young Scientist Award

Muhammad Fuad Anshori | Plant Breeding | Young Scientist Award

Dr Muhammad Fuad Anshori , Hasanuddin University Indonesia

Dr. Muhammad Fuad Anshori is a distinguished researcher and lecturer in Plant Breeding at Hasanuddin University, Makassar, Indonesia. Born on November 15, 1992, in Jakarta, he specializes in rice plant breeding, plant adaptation to environmental stress, and plant biometrics. With a strong academic background, including a Ph.D. and M.Sc. in Plant Breeding from IPB University, his research focuses on developing rice varieties resistant to salinity and drought stress. He has contributed significantly to scientific literature, and his work is well-recognized in the field. Dr. Anshori is an active member of various professional societies and has received numerous awards for his academic achievements.

Publication Profile

Scopus

Orcid

Strengths for the Award

  1. Academic Excellence: Dr. Anshori holds advanced degrees with perfect GPAs (4.0) in both his Master’s and Doctoral studies, which demonstrates his strong academic foundation and dedication to his field.
  2. Research Focus and Impact: His research interests are well-aligned with critical issues in agricultural science, particularly in plant breeding and adaptation under environmental stress. His work on rice plant breeding, salinity stress, and plant biometrics is highly relevant and timely.
  3. Publication Record: Dr. Anshori has an impressive publication record with numerous articles in reputable journals, including high-impact ones like Heliyon and Agronomy. His H-index of 12 indicates a significant level of citation and impact within his field.
  4. Diverse Research Topics: His research spans a variety of topics including plant adaptation, selection indexes, and image-based phenotyping, showcasing his versatility and broad expertise.
  5. Professional Affiliation and Teaching: His role as a lecturer and teaching assistant reflects his commitment to education and mentoring, which complements his research achievements.
  6. International Recognition: His work is featured in multiple international journals and platforms, indicating recognition beyond his local context.

Areas for Improvement

  1. Broader Research Scope: While Dr. Anshori has a strong focus on rice and stress adaptation, exploring additional crops or broader ecological contexts could enhance the applicability and impact of his research.
  2. Collaboration and Networking: Increasing collaborations with international researchers or participating in global research projects could further expand his influence and bring diverse perspectives to his work.
  3. Research Funding and Grants: Securing additional research funding or grants could provide more resources for his projects and increase the scale and scope of his research endeavors.
  4. Public Outreach and Engagement: Greater emphasis on public communication and outreach could improve the visibility of his research and its implications for broader agricultural practices and policies.

 

Education

Dr. Muhammad Fuad Anshori earned his Ph.D. in Plant Breeding from IPB University (2016-2019) with a perfect GPA of 4.0, focusing on developing salt-tolerant rice varieties. His M.Sc. degree from IPB University (2015-2018) also had a perfect GPA of 4.0, specializing in anther culture and salinity stress. He completed his B.A. in Agronomy and Horticulture at IPB University (2010-2014), graduating with high honors (GPA 3.92). His educational background is marked by excellence in plant breeding, statistical analysis, and plant physiology.

Experience

Dr. Anshori has a robust teaching and research background. He served as a Teaching Assistant at IPB University (2016-2019), instructing courses in Experimental Design, Plant Genetics, and Plant Breeding. Since 2020, he has been a Lecturer at Hasanuddin University, teaching Statistics, Experimental Design, and various Plant Breeding courses. His research focuses on rice plant breeding and adaptation under environmental stress, contributing to several high-impact publications. His expertise is evident in his numerous articles in renowned journals and his ongoing projects related to crop adaptation and breeding technologies.

Awards and Honors

Dr. Anshori’s academic excellence has been widely recognized. He received the Bosowa Foundation Award in 2010 for his undergraduate achievements and was named the Best Bachelor at IPB University’s graduation ceremony in 2015. He was honored with the Ministry of Research, Technology, and Higher Education scholarship for his Master’s and Doctoral degrees. In 2018 and 2020, he was celebrated as the Best Master’s and Doctoral graduate respectively at IPB University. These awards underscore his exceptional contributions to agricultural sciences.

Research Focus

Dr. Muhammad Fuad Anshori’s research is centered on enhancing rice plant breeding for better adaptation to environmental stresses such as salinity and drought. His work involves developing doubled-haploid rice lines and utilizing image-based phenotyping for stress screening. He is also focused on early-maturing rice varieties and mutation breeding. His research aims to improve crop resilience and yield, contributing to food security and agricultural sustainability.

Publications

  • Metabolite comparative variation related lipid metabolisms among fruit, leaf, and stem of Jatropha curcas 🌿
  • Combining Image-Based Phenotyping and Multivariate Analysis to Estimate Fruit Fresh Weight in Segregation Lines of Lowland Tomatoes 🍅
  • Sustainability approach in cropping intensity (CI) 400 through optimizing the dosage of compost and chemical fertilizers to early-maturing rice varieties based on multivariate analysis 🌾
  • Systematic selection to adaptive doubled haploid rice lines under different environments of submergence screening methods 🌱
  • An overview of image-based phenotyping as an adaptive 4.0 technology for studying plant abiotic stress: A bibliometric and literature review 📊
  • The Integrated Minapadi (Rice-Fish) Farming System: Compost and Local Liquid Organic Fertilizer Based on Multiple Evaluation Criteria 🐟
  • Selection criteria and index analysis for the S2 maize lines of double-crosses 🌽
  • Tomato F3 lines development and its selection index based on narrow-sense heritability and factor analysis 🍅
  • INTEGRATED CORN CULTIVATION TECHNOLOGY BASED ON MORPHOLOGY, DRONE IMAGING, AND PARTICIPATORY PLANT BREEDING 🚀
  • *Half diallel of F1 tomato hybrid and its

 

Conclusion

Dr. Muhammad Fuad Anshori is a highly suitable candidate for the Research for Young Scientist Award. His strong academic background, significant research contributions, and impressive publication record underscore his potential as a leading young scientist in his field. While there are areas for improvement, such as expanding his research scope and increasing international collaborations, his achievements and impact so far make him a deserving candidate for recognition and support.