#PlantBiotechnology

Plant Biotechnology and Molecular biology

Embark on a transformative journey in Plant Biotechnology and Molecular Biology at Heredity Biosciences. Our comprehensive hands-on training program is designed for aspiring scientists seeking practical experience in cutting-edge techniques. Participants will engage in various laboratory practices, including DNA extraction, plant tissue culture, gene expression analysis, and molecular cloning.

In addition to the training, we offer opportunities for internships and dissertation projects, allowing students to delve deeper into research and gain invaluable experience. With expert guidance and state-of-the-art facilities, you will enhance your skills and prepare for a successful career in biotechnology.

Call to Action:

Don’t miss out on this opportunity to advance your knowledge and skills in Plant Biotechnology and Molecular Biology!

Enroll now at Heredity Biosciences and take the first step towards a rewarding career in the life sciences. Visit our website for more information and to register today!

Duration: 1 to 3 Months

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Course Details

Course Title: Plant Biotechnology and Molecular Biology - Hands-On Training

Duration: 3 Months


Program Highlights:

This comprehensive course is designed to provide students with a thorough understanding of plant biotechnology and molecular biology techniques. Participants will gain practical experience and theoretical knowledge essential for research and development in the field.


Modules Overview:

Module 1: Phytocompounds Extraction

  • Objective: Learn techniques for extracting bioactive compounds from plants.
    • Collection of Herbal Plant Samples: Identification of suitable species and proper sample collection.
    • Plant Sample Processing: Techniques for preparing fresh material, including drying and grinding.
    • Crude Extraction Techniques: Methods such as Soxhlet extraction and cold maceration.
    • Secondary Metabolites Extraction: Isolate flavonoids, alkaloids, and terpenoids.
    • Phytochemical Analysis: Conduct qualitative and quantitative analysis of extracts.

Module 2: In-Vitro Bio-assays of Phytocompounds

  • Objective: Evaluate the biological activity of extracted phytocompounds.
    • Phytocompounds Extract Preparation: Standardization of extract concentrations.
    • Anti-bacterial Activity: Assess efficacy using disc diffusion and broth dilution methods.
    • Anti-fungal Activity: Techniques to test antifungal properties against pathogens.
    • Anti-candidal Activity: Evaluate extracts against Candida species.
    • Anti-oxidant Activity by DPPH Method: Application of the DPPH assay to determine antioxidant capacity.

Module 3: Nanomaterial Synthesis

  • Objective: Explore green synthesis methods for producing nanoparticles.
    • Plant Sample Processing: Preparation of extracts for nanoparticle synthesis.
    • Green Synthesis of Nanoparticles: Principles and benefits of using green chemistry.
    • Synthesis of Silver Nanoparticles Using Neem Leaf Extract: Methodology and analysis.
    • Synthesis of Zinc Oxide Nanoparticles Using Aloe Vera Gel: Protocol for extraction and characterization.
    • Synthesis of Copper Nanoparticles Using Mint Extract: Step-by-step synthesis and applications.

Module 4: Bio-active Compounds Extraction

  • Objective: Refine techniques for extracting and analyzing bioactive compounds.
    • Reagents and Stock Solution Preparations: Preparation of solutions for extraction.
    • Advanced Extraction Techniques: Crude extraction methods focused on specific classes of compounds.
    • UV-VIS Analysis: Use UV-VIS spectroscopy for compound identification.
    • Anti-bacterial Activity of Crude Extract: Conduct bioassays to evaluate extract efficacy.
    • Minimum Inhibitory Concentration (MIC) Test: Determine effectiveness against bacterial strains.

Module 5: Molecular Biology

  • Objective: Apply molecular biology techniques in plant research.
    • Isolation of Plant DNA: Techniques for extracting high-quality DNA from plant tissues.
    • PCR Techniques for Plant Pathogens: Apply PCR for detection and characterization.
    • cDNA Synthesis: Extraction protocols for genomic and complementary DNA.
    • Gene Expression Analysis: Methods for assessing gene expression levels in transgenic plants.
    • Gel Electrophoresis of Plant DNA Fragments: Separation and visualization of PCR products.

Module 6: Chromatographic Techniques

  • Objective: Learn chromatography methods for separating plant pigments and compounds.
    • Separation of Plant Pigments Using Paper Chromatography: Techniques for analyzing pigment composition.
    • Analyzing Leaf Extracts by Thin Layer Chromatography (TLC): Application of TLC for various extracts.
    • Chromatographic Separation of Chlorophyll and Carotenoids: Techniques specific to spinach extracts.
    • Identifying Plant Pigments in Flower Petals Using Chromatography: Analyze pigments in ornamental plants.

Call to Action:

Join our hands-on training program in Plant Biotechnology and Molecular Biology at Heredity Biosciences! Enhance your skills, gain valuable practical experience, and prepare for a successful career in research and development. Enroll today and take the first step towards a rewarding future in the life sciences! Visit our website for more information and registration.

Curriculum

FAQ

Certificate

  • Upon completing a course, you may receive a certification or a certificate of completion. This document typically validates your participation and successful completion of the course requirements.

  • Certification serves as evidence of your newly acquired skills or knowledge in a particular subject area and can be valuable for career advancement or further education.

  • Depending on the course provider or institution, the certification may vary in format, recognition, and credibility.

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We offers training programs in Clinical Microbiology and genetics, Clinical nanotechnology and genetics, Molecular Genetics, Food microbiology and Genetics - both for Life Sciences graduates as well as Medical Professionals.

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