Dr. Vijayata Singh | Genetics and Plant Breeding | Excellence in Research

Dr. Vijayata Singh | Genetics and Plant Breeding | Excellence in Research

Senior Scientist, ICAR – Central Soil Salinity Research Institute, India

Dr. Vijayata Singh is a dedicated researcher in the field of genetics and plant breeding, with a strong focus on improving crop resilience to salt-affected areas. With a robust academic background and extensive research experience, Dr. Singh has made significant contributions to the development of salt-tolerant varieties of lentil, soybean, and mustard. His work has led to the release of two lentil varieties, PDL-1 and PSL-9, suitable for cultivation in moderate salinity-affected soils. Dr. Singh’s research aims to enhance crop productivity and food security in salt-affected regions.

Professional Profile

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🎓Education

Dr. Vijayata Singh’s educational background includes:
– (link unavailable) in Applied Biotechnology from Sikkim Manipal University of Health, Medical and Technological Sciences, Gangtok (2007)
– (link unavailable) (Ag.) in Genetics and Plant Breeding from Bundelkhand University, Jhansi (2009)
– Ph.D. in Genetics and Plant Breeding from CCS Haryana Agriculture University, Hisar (2014)

💼Experience 

– Scientist at ICAR-Central Soil Salinity Research Institute, Karnal (April 2016 – present)- Scientist at ICAR-National Academy of Agricultural Research Management, Hyderabad (January 2016 – March 2016)His research experience spans various projects focused on genetic improvement of pulse crops for salt tolerance using conventional and molecular breeding approaches.

🔍Research Focus 

Dr. Singh’s research focuses on the genetic improvement of pulses and oilseed crops for salt tolerance. His projects include:- Genetic improvement of lentil for salt tolerance- Development of salt-tolerant soybean genotypes- QTL mapping and marker identification for salinity tolerance in chickpea and lentil

🏅Awards and Honors 

– Recipient of the Best Young Scientist Award-2020- Best Poster Award in DAE-BRNS Life Sciences Symposium- Developed and released two lentil varieties (PDL-1 and PSL-9) for salt-affected areas

 Publications 📚

1. Genetic improvement of Lentil (Lens culinaris Medikus) for salt tolerance using conventional and molecular breeding approaches 📝
2. Development of high-density linkage map and tagging salinity tolerance in lentil using genotyping-by-sequencing approach 🔬
3. Molecular genetic analysis of resistance/tolerance in rice, wheat, chickpea, and mustard including sheath blight complex genomics 🌟
4. QTL mapping and identification of markers linked to salinity tolerance in chickpea (Cicer arietinum L.) 🌿
5. Development of Soybean [Glycine max (L.) Merrill] genotypes for higher yield under Salt Stress 💪
6. Development of Salt Tolerant and High Yielding Indian Mustard (Brassica juncea L. Czern & Coss) Genotypes Using Classical and Modern Breeding Approaches 🌼
7. Genetic improvement of chickpea for salt tolerance through conventional and molecular breeding approaches 🔝
8. Enhancement of genetic potential of Moongbean and Lentil in multi-season and different cropping system adaptation 🌱
9. Development and validation of Multi-trait allele specific SNP panel for high throughput genotyping of breeding populations in Soybean 💻

Conclusion

Dr. Vijayata Singh’s impressive academic background, prolific research output, and significant contributions to crop improvement for salt tolerance make him a strong and suitable candidate for the Young Researcher Award. His ability to tackle complex problems in crop genetics and breeding, coupled with his passion for research, positions him well for future contributions in agricultural science.

Nicolette Houreld | Photobiomodulation in wound healing | Best Researcher Award

Prof. Nicolette Houreld |  Photobiomodulation in wound healing | Best Researcher Award

Professor at Laser Research Centre, Faculty of Health Sciences, University of Johannesburg, South Africa

Nicolette Houreld is a distinguished professor of Biomedical Technology at the University of Johannesburg, with extensive expertise in photobiomodulation and cellular regeneration. 📚 She completed her secondary education at Bracken High School (1995) and pursued higher education at Technikon Witwatersrand, where she earned her National Diploma, B.Tech, and M.Tech degrees, followed by a D.Tech from the University of Johannesburg. 🎓 Her groundbreaking research on low-level laser therapy (LLLT) has significantly advanced diabetic wound healing and cancer treatment. 🔬 As Deputy Chairholder of the SARChI Chair in Laser Applications in Health, she has led numerous research initiatives and supervised various postgraduate projects. ✍️ In addition to her academic roles, she serves as an Adjunct Professor at Manipal Academy of Higher Education. 🌍 Passionate about science and leadership, Nicolette is dedicated to mentoring the next generation of researchers and advancing biomedical science. 🌟

Publication Profile

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Education 🎓

Bracken High School, completed in 1995 with top grades in Biology and Mathematics. 📘 Earned a National Diploma (1998), B.Tech (1999), and M.Tech (2002) in Biomedical Technology from Technikon Witwatersrand. 📖 Her M.Tech research focused on DNA damage in South African mineworkers. 🏆 In 2006, she completed her D.Tech at the University of Johannesburg, specializing in the effect of low-level laser therapy on diabetic wound healing. 🌟 She continued with a Postdoctoral Fellowship (2007-2009), researching cellular redox potential and collagen production under laser irradiation. 🔬 Recently, she completed the UJ Women’s Leadership Development Programme in 2023, addressing student retention. 🌟

Experience👩‍🏫

Started lecturing in 2001 at Technikon Witwatersrand/University of Johannesburg, covering subjects like Chemical Pathology and Haematology. 🧪 Progressed to Lecturer (2009-2011), Senior Lecturer (2011-2016), Associate Professor (2016-2020), and Professor (2020-present). 🌍 Currently, Deputy Chairholder of the SARChI Chair in Laser Applications in Health. 💼 Serving as Adjunct Professor at Manipal Academy of Higher Education (2023-2025), specializing in podiatric and diabetic foot care. 🦶 Supervised numerous undergraduate and postgraduate students, focusing on photobiomodulation, cancer, and diabetic wound healing. 🌟

Awards and Honors 🏆

UJ Vice-Chancellor’s Distinguished Award for Research Excellence (2018) 🌟 Recipient of NRF C2 Rating for research impact 🎖 Nominated for UJ Women’s Leadership Development Programme (2023) 🎓 Multiple postgraduate supervision awards, including cum laude graduates 🏅 Recognition for contributions to photobiomodulation research and diabetic wound healing. 📚

Research Focus 🔬 

Nicolette’s research focuses on photobiomodulation (PBM), particularly the effects of low-level laser therapy (LLLT) on wound healing and cancer treatment. 🧬 Her work investigates cellular redox potential, collagen production, and DNA repair mechanisms in diabetic wounds. 🌱 She explores the JAK/STAT signaling pathway in diabetic cells, nitric oxide production, and cancer cell proliferation under PBM. 🌍 Recently, she has expanded into laser-induced changes in skin fibroblasts and podiatric interventions for chronic ulcers. 📊 Her contributions are integral to developing non-invasive therapies in healthcare. 🌟

Publication  Top Notes

 

Nanoparticles and Wound Healing:

“A review on nanoparticle-based treatment for wound healing” (2018) explores how nanoparticles can be used for enhancing wound healing, with an emphasis on silver nanoparticles and biopolymers.

“Recent advances on silver nanoparticle and biopolymer-based biomaterials for wound healing applications” (2018) delves into the use of silver nanoparticles combined with biopolymers as promising materials for wound healing.

Low-Level Laser Therapy (LLLT):

“Low level laser therapy (LLLT) as an effective therapeutic modality for delayed wound healing” (2005) reviews LLLT as a method for improving wound healing, especially in cases of delayed healing.

“Collagen production in diabetic wounded fibroblasts in response to low-intensity laser irradiation at 660 nm” (2012) investigates how LLLT influences collagen production in diabetic wound healing.

Photobiomodulation (PBM) and Cellular Mechanisms:

“The role of photobiomodulation on gene expression of cell adhesion molecules in diabetic wounded fibroblasts” (2016) discusses how PBM affects gene expression related to wound healing in diabetic cells.

“The role of matrix metalloproteinases in diabetic wound healing in relation to photobiomodulation” (2016) examines the involvement of metalloproteinases in wound healing and how photobiomodulation affects their activity.

Oxidative Stress and Inflammation:

“Oxidative stress in ageing and chronic degenerative pathologies: molecular mechanisms involved in counteracting oxidative stress and chronic inflammation” (2022) explores how oxidative stress contributes to aging and chronic diseases, offering insights into therapeutic strategies.

Mechanisms of Action in Wound Healing:

“Role of the PI3K/AKT (mTOR and GSK3β) signalling pathway and photobiomodulation in diabetic wound healing” (2019) looks at how photobiomodulation interacts with key cellular signaling pathways involved in wound healing.

Other Phototherapy Insights:

“Shedding light on a new treatment for diabetic wound healing: a review on phototherapy” (2014) discusses various phototherapy approaches, including the use of lasers and light to accelerate wound healing.

“Irradiation at 830 nm stimulates nitric oxide production and inhibits pro‐inflammatory cytokines in diabetic wounded fibroblast cells” (2010) reports on how specific wavelengths of light influence cellular processes to reduce inflammation and promote healing.

Additional Research on Nanoparticles:

“Synthesis of Zinc Oxide Nanoparticles Using Rubus fairholmianus Root Extract and Their Activity against Pathogenic Bacteria” (2021) highlights the antibacterial properties of zinc oxide nanoparticles, synthesized using plant extracts, for therapeutic use.

Conclusion

The researcher is highly suitable for the Best Researcher Award due to their strong academic foundation, impactful research, leadership roles, and global collaborations. Their work on photobiomodulation in wound healing is innovative, and their commitment to advancing the field through mentorship and international engagements adds considerable value. By expanding their reach into clinical applications and securing greater cross-disciplinary partnerships, they could further elevate their research’s impact.

Mehdi Rahimi | Plant breeding | Best Researcher Award

Assoc. Prof. Dr. Mehdi Rahimi |  Plant breeding | Best Researcher Award

Associate prof. of Plant Breeding at Graduate University of Advanced Technology, Iran

Mehdi Rahimi, born in 1978 in Shiraz, Iran, is an Associate Professor in the Department of Biotechnology at the Graduate University of Advanced Technology, Kerman, Iran. 🌱📊 His expertise spans plant breeding, genomics, gene expression, and stress tolerance. 🌾🔬 He earned his Ph.D. in Plant Breeding from Tarbiat Modares University (2013), M.Sc. from Guilan University (2007), and B.Sc. from Shiraz University (2001). 🎓📖 Dr. Rahimi has contributed significantly to crop improvement through classical and molecular breeding and has published widely in these areas. 📑🌐 His dedication to agricultural research has earned him numerous accolades, positioning him as a leading figure in plant biotechnology. 🏅🌟

Publication Profile

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Education  🎓📜

B.Sc. in Agronomy & Plant Breeding (1997-2001) 🌱🌾, Shiraz University, Iran.M.Sc. in Plant Breeding (2004-2007) 🌾📈, Guilan University, Iran.Thesis: Diallel Cross for Evaluating Heterosis & Combining Ability in Rice Cultivars. 🍚🔬Ph.D. in Plant Breeding (2008-2013) 🌾🧬, Tarbiat Modares University, Iran.Thesis: Identification of QTLs for Yield Traits in Different Irrigation Conditions. 💧🌾Visiting Scientist (2012-2013) 🇮🇹🧬, CREA – Genomics Research Centre, Italy.

Experience 👨‍🏫🔬

Associate Professor 🌾📚, Graduate University of Advanced Technology, Kerman, Iran.Visiting Scientist 🇮🇹🧬, CREA – Genomics Research Centre, Italy (2012-2013).Researcher & Educator 🌍📊, specializing in plant breeding, molecular genetics, and QTL mapping.

Awards & Honors  🏆🌟

Top M.Sc. Student 🎓🥇, Guilan University, GPA: 18.71/20.Best Researcher (Agriculture) 🌾🏅, Kerman Province, 2019.Top Educational Professor 👨‍🏫🌟, Graduate University of Advanced Technology, 2020.Best Agricultural Researcher 🌱🏆, Graduate University of Advanced Technology, 2021.Top Researcher 🏅🌍, Institute of Environmental Sciences, 2022.

Research Focus  🔬🌾

Crop & Horticulture Improvement 🌱🧬 using classical & molecular genetics.Plant Biotechnology & Genetic Engineering 🧬🔬.Molecular Markers & Genetic Diversity 🌿🧪.QTL Mapping & Association Studies 📊🧬.Biometry & Statistical Genetic Analysis 📈📉.Plant Stress Resistance 🌦️🦠 (Abiotic & Biotic).

Publication  Top Notes

 

“Combining ability and heterosis in rice cultivars” (JAST, 2010) 🌾

“Salinity stress and antioxidant responses in Moringa oleifera” (Scientific Reports, 2023) 🌿

“Molecular markers in plants” (Genet. 3rd Millenn, 2015) 🧬

“Genetic diversity in wild hops” (Euphytica, 2020) 🍃

“QTL mapping for drought tolerance in rice” (IJACS, 2013) 💧

Conclusion

Mehdi Rahimi is a strong candidate for the Best Researcher Award due to his significant contributions to plant breeding and biotechnology, a diverse research portfolio, and a proven track record of excellence. Enhancing his international collaboration and outreach efforts could further solidify his candidacy and position him as a global leader in agricultural research. Overall, his innovative work and dedication to advancing plant science make him well-suited for this prestigious recognition.