Karim Kadr | Biotechnology | Excellence in Research

Dr. Karim Kadr | Biotechnology | Excellence in Research

Dr at Regional Research Center on Oasis Agriculture, Tunisia

Karim Kadri,Ā  has devoted his career to advancing agricultural science in arid regions. After starting as an engineer at the National Institute of Agronomic Research of Tunisia in 2004, he transitioned to the Regional Research Center for Oasis Agriculture (CRRAO) in Degache, Tozeur, in 2007. Here, he now leads the Date Palm Genetic Resources and Biotechnology Laboratory. Kadriā€™s work focuses on preserving and enhancing date palm genetic resources through morphological, physiological, and molecular studies. Passionate about adapting agriculture to climate change, his research targets sustainable practices for oasis systems. Beyond work, Karim enjoys tennis, travel, and cultural explorations.

Profile

Scopus

Scholar

Education šŸŽ“

PhD in Biology (2016): Faculty of Science of Tunisia, focusing on plant biotechnology. Master in Genetic and Molecular Biology (2005): Faculty of Sciences of Tunisia, specializing in molecular research methodologies. National Engineer Diploma in Bioindustry (2003): National Institute of Applied Sciences of Tunis, providing a foundation in applied bioindustrial processes. High School Graduation (1997): A-level in Natural Sciences from the Secondary School of Abou Kacem CHEBBI, Tozeur.

Ā Experience šŸ’¼

2004-2006: Contract Engineer at the National Institute of Agronomic Research of Tunisia, focusing on morpho-physiological evaluation of barley under salt stress. 2006-2007: Contract Researcher in the Biotechnology and Plant Physiology Laboratory, contributing to significant plant physiology projects. Since August 2007: Researcher and Laboratory Head at CRRAO, Degache, Tozeur, Tunisia. Overseeing research in date palm genetic resources, Kadri has led numerous initiatives on genetic preservation and climate resilience.

Awards and Honors šŸ†

Recognition for significant contributions to date palm research and conservation efforts. Acknowledged as a leading researcher in Tunisia for advancements in agricultural biotechnology. Commended by various academic institutions for efforts in promoting sustainability in oasis ecosystems. Recipient of regional accolades for research addressing climate change adaptation strategies.

Research Focus šŸ”

Karim Kadriā€™s research primarily focuses on the genetic conservation and enhancement of date palms, crucial for sustainable agriculture in oasis systems. He delves into morphological, physiological, and molecular analyses to safeguard and improve date palm cultivars. With climate change posing increased threats, Kadriā€™s work has pivoted toward selecting resilient date palm pollinators to bolster the oasis ecosystem’s sustainability. His research aims at improving both the quality and quantity of date palm production to support regional agricultural resilience.

Conclusion šŸ“

Dr. Karim Kadriā€™s profound dedication to biotechnology, especially in the context of date palm genetic resources and climate change adaptation, makes him a strong candidate for the Excellence in Research Award. His leadership, innovative contributions, and sustainable focus are exemplary. With targeted improvements in language proficiency and international engagement, his already impactful career could achieve even greater recognition and influence.

Publications šŸ“š

  • Effect of Pollen Quantity on Fruit Set, Seed Germination, and Plantlet Vigor of Date Palm cv. Deglet Nour
    • Authors: M. Mesnoua, M. Roumani, M. Tahirine, K. Kadri, A. Parmar
    • Publication: Agricultural Research
    • Year: 2024
    • Key Insight: This study examines how varying pollen quantities impact the development of fruit and subsequent seed germination and vigor in the ‘Deglet Nour’ variety of date palm.

 

  • Genetic Analysis of Anthracnose Resistant and Heat Tolerant Chili Inbred Lines Based on Morpho-Physiological Characteristics
    • Authors: M. Chowdhury, F. Nazneen, M.Y. Rafii, S.I. Ismail, S.I. Ramlee, M. Hosen, et al.
    • Publication: Chilean Journal of Agricultural Research
    • Year: 2023
    • Focus: Highlights genetic resilience in chili lines, combining resistance to anthracnose and heat tolerance through morpho-physiological assessments.

 

  • The Genetic Diversity Analysis of Tunisian Male Date Palm Cultivars (Phoenix dactylifera L.) Revealed by Phenotypic and Molecular Markers
    • Authors: K. Karim, H. Hamza, H. Tiba, M. Elsafy
    • Publication: European Journal of Biology and Biotechnology
    • Year: 2022
    • Summary: Explores the genetic diversity of male date palm cultivars in Tunisia using phenotypic and molecular analysis.

 

  • Transcriptional Changes in Salt-Responsive Genes of Barley Subjected to Salt Stress
    • Authors: K. Karim, N. Amani Ben, N. Mā€™Barek Ben
    • Journal: International Journal of Innovation and Applied Studies
    • Year: 2014
    • Findings: Investigates gene expression changes in barley in response to salt stress, contributing to understanding stress tolerance mechanisms.

 

  • RAPD Markers and Morpho-Physiological Characterization of Some Tunisian Barley Ecotypes
    • Authors: K. Karim, A. Rawda, C.M. Hatem, B.N. Mā€™barek
    • Publication: Biological Diversity and Conservation
    • Year: 2010
    • Details: Utilizes RAPD markers to characterize barley ecotypes, shedding light on genetic variation within the species.

 

  • Study on the Effects of Pollen Sources on the Agronomic, Biochemical, Mineral, and Pomological Traits of Date Palm (Phoenix dactylifera L.) cv ‘Deglet Nour’ Fruits
    • Authors: K. Kadri, M. Jemni, M. Mesnoua, S.S. Sharma, A.A. Malik, S. Makhlouf, et al.
    • Publication: Genetic Resources and Crop Evolution
    • Year: 2024
    • Implication: Analyzes how different pollen sources affect key traits of the ‘Deglet Nour’ variety.

 

  • Genetic Diversity of Tunisian and Indian Date Palm Cultivars and Genotypes Revealed by AFLP Markers
    • Authors: K. Karim, A.A. Malik, H. Hamza, E. Mohamed, S.S. Sharma
    • Year: 2023
    • Contribution: Uses AFLP markers to explore genetic diversity across Tunisian and Indian date palm cultivars.

 

 

  • Effect of Pollination Technique on Agronomic and Physicochemical Characteristics of Date Palm Fruits (Phoenix dactylifera L.) cv. ‘Deglet Nour’
    • Authors: K. Karim, A. Karim, H. Hamza, A. Manar, C. Karmous, T. Bettaieb
    • Publication: Horticultural Science and Technology
    • Year: 2022
    • Outcome: Discusses the impacts of various pollination techniques on fruit quality and yield.

 

 

Rahul Kumar | Genetics and Plant Breeding | Best Researcher Award

Dr. Rahul Kumar | Genetics and Plant Breeding | Best Researcher Award

Dr atĀ ICAR Research Complex for NEH Region, Tripura Centre, Lembucherra India

Dr. Rahul Kumar is a researcher at ICAR Research Complex for NEH Region, Tripura Centre, specializing in Genetics and Plant Breeding. He earned his Ph.D. (2023) and M.Sc. (2018) from ICAR-IARI, New Delhi, securing first-class honors. His research focuses on molecular mapping of seed traits in soybean, with 12 research publications. Rahul has filed patents on software innovations like “SEEDFIG” and actively engages in seminars and workshops on genomics and biotechnology. A recipient of multiple awards, including the IARI Ph.D. Best Student Award and Young Scientist Award, he also holds leadership roles in professional societies.

 

Publication profile

Scholar

Education

PhD in Genetics and Plant Breeding (ICAR-IARI, 2023). MSc in Genetics and Plant Breeding (ICAR-IARI, 2018). BSc in Agriculture (GBPUA&T, Pantnagar, 2016)

Achievements & Awards:

Best Ph.D. Student Award at ICAR-IARI, New Delhi (2022). Young Scientist Award (2023, APSR & AEEFWS). Best Paper & Poster Awards at national and international conferences

Research Contributions:

  • 12 Research Papers published, with a focus on seed traits in Soybean
  • 2 Patents filed (Software: ‘SEEDFIG’ and Entrepreneurial Climate Estimation)

Professional Involvement:

  • Former President of Post Graduate School Student Union, ICAR-IARI
  • Life member of various scientific societies, including APSR and ISGPB

Extracurricular Achievements:

  • Winner of singing and badminton competitions at ICAR

Trainings & Workshops:

  • Attended numerous seminars and training programs, including intellectual property rights and advanced agricultural techniques.

Publication

  1. Breeding for herbicide tolerance in crops: a review
    PN Ranjan, CJ Ram, T Anurag, J Nilesh, PB Kumar, Y Suresh, K Rahul
    2020

 

  1. Identification of quantitative trait loci (QTLs) and candidate genes for seed shape and 100-seed weight in soybean [Glycine max (L.) Merr.]
    R Kumar, M Saini, M Taku, P Debbarma, RK Mahto, A Ramlal, D Sharma, et al.
    2023

 

  1. Accelerated ageing test reveals quantitative nature of inheritance of seed viability in soybean [Glycine max (L.) Merr.]
    M Saini, RR Yadav, S Chandra, A Kumar, R Kumar, S Sheoran, et al.
    2022

 

  1. An insight into the nitrogen use efficiency and its importance in crop production
    R Kumar, NR Prakash, BK Padhan
    2019

 

  1. Meta-QTLs linked to nitrogen use efficiency are randomly distributed in Indian rice germplasm
    R Kumar, M Nagarajan, H Bollinedi, PK Bhowmick, AK Singh, RK Ellur, et al.
    2022

 

  1. Development of seed shape software ā€˜SEEDFIGā€™ and study of seed size and seed shape traits in soybean (Glycine max [L.] Merr.)
    R Kumar, RK Mahto, R Kumar, M Saini, A Talukdar
    2022

 

  1. Genetic studies and mapping of quantitative trait loci (QTL) for yield and yield-related traits in vegetable and seed soybean (Glycine max L.)-derived populations
    R Kumar, M Saini, M Taku, P Debbarma, D Sharma, R Pandey, et al.
    2023

 

  1. Autophagy: an important proteolytic process for the enhancement of post-anthesis nitrogen remobilization in food crops
    BK Padhan, PR Divte, N Sharma, R Kumar, S Nayak
    2020

 

  1. Exploration of miRNA diversity for nutrient use efficiency
    R Kumar, NR Prakash, RR Yadav, KK Rathore, M Saini
    2020

 

Flavia | Molecular Biology | Young Scientist Award

Dr. Flavia| Molecular Biology | Young Scientist Award

šŸ‘Øā€šŸ«Profile Summary

Flavia Scoyni is a highly accomplished researcher in molecular medicine, specializing in non-coding RNAs and their role in neurodegenerative diseases like Alzheimer’s and ischemic stroke. With a Ph.D. from the University of Eastern Finland under the Marie Skłodowska-Curie Programme, Flavia has extensive experience in experimental techniques such as scRNA-seq, FACS, and animal modeling. Their work has been published in prestigious journals and recognized with numerous grants and fellowships. Flavia’s expertise in molecular biology, cell culture, and animal work, coupled with a strong track record of securing research funding, positions them as a valuable asset in the field of translational medicine.

šŸŒ Professional Profiles

šŸŽ“Education:

Ph.D. in Molecular Medicine University of Eastern Finland, Kuopio, Finland Duration: Dec 2017 – Feb 2024 Marie Skłodowska-Curie Programme in Genetics and Mechanisms in Translational Medicine (GENOMMED) Advisor: Prof. Tarja Malm Dissertation: “Unlocking the potential of non-coding RNAs in regulating neurodegeneration – a glimpse into Alzheimerā€™s disease and ischemic stroke pathophysiology.” Ph.D. secondment Aarhus University, Aarhus, Denmark Duration: Sept 2018 – Feb 201 Advisor: Assoc. Prof. Thomas B. Hansen Funded by Saastamoinen Foundation travel grant FELASA accreditationUniversity of Eastern Finland, Kuopio, Finland May 2017 Federation of Laboratory Animal Science Associations (FELASA) Certificate in laboratory animal science for EU Functions A/D MSc in Molecular Biology “Sapienza” University of Rome, Rome, Italy Duration: Oct 2013 – Dec 2015 Master Degree in Molecular Biology Graduated magna cum laude (110/110 cum laude) Advisor: Prof. Alessandro Fatica Thesis title: “Identification of new transcriptional targets of p30 C/EBPĪ± transcription factor isoform in acute myeloid leukemia” MSc in Genetics University Paris-Diderot VII, Paris, France Duration: Oct 2013 – June 2015 BSc in Biotechnology “Sapienza” University of Rome, Rome, Italy Duration: Oct 2010 – July 2013 Bachelor degree in Biotechnology Graduated magna cum laude (110/110 cum laude) Advisor: Prof. Carlo Presutti Thesis title: “The role of the mir-200 family in the regulation of the expression of AP1 transcriptional factor”

šŸ”¬Research Experience:

Early stage researcher Professor Tarja Malm University of Eastern Finland, A.I. Virtanen Institute for Molecular Sciences Jan 2017 ā€“ Dec 2017 Investigated the role of microRNAs in phagocytic microglia isolated from adult Alzheimerā€™s mice. Developed techniques including ex-vivo FACS, low input RNA extraction, cloning, qPCR, and protocol for transfection for hard-to-transfect cell lines. Conducted animal procedures to harvest brain samples or acutely isolate adult microglia. Erasmus traineeship Biotech Research & Innovation Centre, Copenhagen, Denmark Oct 2016 – June 2016 Developed a transgenic stable cell line for long non-coding RNAs. Applied techniques such as cloning of long inserts, lentiviral vector production, and stable cell line development. Master thesis Professor Alessandro Fatica “Sapienza” University of Rome, Rome, Italy June 2014 – Dec 2015 Investigated the regulation of the long non-coding RNA UCA1 mediated by C/EBPĪ± transcription factor in the K562 lymphoblast cell line. Applied techniques including ChIP, cloning, RNA extraction, RT-qPCR, WB, transfection, CRISPR-Cas9, and stable cell line development. Master Internship Professor Giuseppe Macino “Sapienza” University of Rome, Rome, Italy Sept 2013 – March 2014 Studied microRNAs inducing epigenetic modifications in mammals.Applied techniques such as ChIP, cloning, mutagenesis, RNA extraction, RT-qPCR, WB, CRISPR-Cas9, and stable cell line development. Bachelor thesis Professor Carlo Presutti “Sapienza” University of Rome, Rome, Italy Oct 2012 – July 2013 Investigated the role of the miR-200a family in regulating c-JUN transcription factor expression. Utilized techniques including cloning, mutagenesis, bacterial transformation, and cell line culture.

šŸ’» Technical Skills:

Molecular biology techniques such as scRNA-seq, RNA-seq, FACS, cloning, RT-qPCR, WB, lentiviral vectors generation. Cell culture techniques including neuronal culture, primary microglial culture, transduction, transfection, and stable cell line development. Animal work including FELASA A/D certification, maintenance, and breeding of transgenic mouse models, animal procedures, and tamoxifen-induced recombination. Statistical analysis, basic Python, and R.

šŸ†Fellowships, Awards, and Honors:

  • Secured total grants of 99.000ā‚¬ during Ph.D., including grants from Pavo Nuermen Foundation, Finnish Cultural Foundation, Kuopio University Foundation, and others.

šŸ‘©ā€šŸ« Teaching Experience:

  • Mentored a Ph.D. student and post-graduate student, and supervised five master’s thesis students during the Ph.D. program.

šŸ“šTop Noted Publication

  1. ciRS-7 and miR-7 regulate ischemia-induced neuronal death via glutamatergic signaling
    • Journal: Cell Reports
    • Year: 2024-03
    • DOI: 10.1016/j.celrep.2024.113862
    • Contributors: Flavia Scoyni; Valeriia Sitnikova; Luca Giudice; Paula Korhonen; Davide M. Trevisan; Ana Hernandez de Sande; Mireia Gomez-Budia; Raisa Giniatullina; Irene F. Ugidos; Hiramani Dhungana et al.

 

  1. Alzheimer’s disease-induced phagocytic microglia express a specific profile of coding and non-coding RNAs
    • Journal: Alzheimer’s & Dementia
    • Year: 2024-02
    • DOI: 10.1002/alz.13502
    • Contributors: Flavia Scoyni; Luca Giudice; Mari-Anna VƤƤnƤnen; Nicholas Downes; Paula Korhonen; Xin Yi Choo; Nelli-Noora VƤlimƤki; Petri MƤkinen; Nea Korvenlaita; Annemieke J Rozemuller et al.

 

  1. ciRS-7 and miR-7 regulate ischemia induced neuronal death via glutamatergic signaling
    • Journal: Preprint
    • Year: 2023-01-24
    • DOI: 10.1101/2023.01.24.525136
    • Contributors: Flavia Scoyni; Valeriia Sitnikova; Luca Giudice; Paula Korhonen; Davide M Trevisan; Ana Hernandez de Sande; Mireia Gomez-Budia; Raisa Giniatullina; Irene F Ugidos; Hiramani Dhungana et al.

 

  1. Intracerebral overexpression of miR-669c is protective in mouse ischemic stroke model by targeting MyD88 and inducing alternative microglial/macrophage activation
    • Journal: Journal of Neuroinflammation
    • Year: 2020
    • DOI: 10.1186/s12974-020-01870-w
    • Contributors: Kolosowska, N.; Gotkiewicz, M.; Dhungana, H.; Giudice, L.; Giugno, R.; Box, D.; Huuskonen, M.T.; Korhonen, P.; Scoyni, F.; Kanninen, K.M. et al.

 

  1. PSEN1Ī”E9, APPswe, and APOE4 Confer Disparate Phenotypes in Human iPSC-Derived Microglia
    • Journal: Stem Cell Reports
    • Year: 2019
    • DOI: 10.1016/j.stemcr.2019.08.004
    • Contributors: Konttinen, H.; Cabral-da-Silva, M.E.C.; Ohtonen, S.; Wojciechowski, S.; Shakirzyanova, A.; Caligola, S.; Giugno, R.; Ishchenko, Y.; HernĆ”ndez, D.; Fazaludeen, M.F. et al.