About B.Sc. Biotechnology syllabus
B.Sc. Biotechnology syllabus usually involves the study of organisms and biological systems, together with the cutting-edge technologies associated with such research. It is a three-year undergraduate Bachelor of Science in Biotechnology program, which is broken up into six semesters. The B.Sc. Biotechnology syllabus covers biological chemistry, microbiology, molecular biology, genetics, analytical methods, bioinformatics, computer programming, and other topics that support a thorough understanding of biology and computer science.
- Candidates must receive at least 55–60% on their 12th grade or comparable exam. Admission examinations are used by several institutions to determine admission.
- The curriculum for the BSc in Biotechnology combines lab work, computer applications, research, and themes from disciplines like biology, chemistry, and mathematics.
- Among the leading employers of BSc Biotechnology graduates are Cadila Healthcare, GSK, Biocon, Biocon, Cipla, Reliance Life Sciences, and more.
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BSc Biotechnology Subjects
Semester - 1 | |
Subject | Subject Details |
Macromolecular Structure and Analysis | Students learn about the definition of a cell. Large molecules called biological macromolecules, which are made up of smaller organic molecules and are necessary for life. |
Biophysics & Instrumentation | The application of physical principles to biological issues is known as biophysics. It makes use of computer and mathematical languages in an effort to quantify biology. |
Cell Structure & Dynamics | Students learn all about the structure of cells and their fundamental responsibility to keep a mortal body. |
Mathematics – I | The main focus of math is problem solving. In addition to learning how to solve challenging mathematical puzzles, working with mathematical functions will provide you with problem-solving techniques. |
Chemistry | The study of matter and how it changes is called chemistry. It is the study of extended solids, molecules, and nanostructures along with their uses, reactions, and characteristics. |
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Semester - 2 | |
Subject | Subject Details |
Organic Mechanisms in Biology | These intermediary phases and the formation and breaking of bonds are demonstrated by the reaction process. The mechanism of the reaction is important since it clarifies what will and how will not occur as products. |
Principles of Transmission Genetics | It covers basic genetic concepts such gene mapping, the relationship between chromosomes and heredity, and the arrangement of genes on chromosomes. |
Principles of Microbiology | A key component of this topic is outlining some of the ways that bacteria can cause illness, as well as the immune system's defense mechanisms for preventing illness. |
Introduction to C-Programming & Digital Logic | Understanding memory allocation, data structures and types, how a computer handles and stores different types of data, and memory management are all necessary for programming in C. |
Biomathematics – II | The main focus of math is problem solving. In addition to learning how to solve challenging mathematical puzzles, working with mathematical functions will provide you with problem-solving techniques. |
Semester - 3 | |
Subject | Subject Details |
Microbial Genetics | It is the study of heritable information systems found in certain protozoa, fungi, viruses, bacteria, and archaea. |
Principles of Immunology | The development, operation, and regulation of immune system cells, immunoglobulins, cytokines, immunological mechanisms underlying immunity to infectious diseases, autoimmune, hypersensitivity, transplantation, and tumor immunology will all be covered in this course. |
Plant Biotechnology | In-depth studies of genetic, physiological, and pathological components will be offered by the Plant Biotechnology Program, along with an examination of contemporary technical procedures pertaining to plant development, production, preservation, and utilization sciences. |
Plant and Animal Tissue Culture Techniques and applications | Utilizing plant tissue culture, one can genetically alter a plant or just increase its yield. It is possible to genetically modify plant cells to create plants with desired traits. |
Introduction to Data Structure & Computer Organization | A specific format called a data structure is used to store, retrieve, arrange, and process data. Data structures come in a variety of simple and sophisticated forms, all aimed at organizing data for a particular use. |
Semester - 4 | |
Subject | Subject Details |
Molecular Genetics | The way these substances work and how they affect cell activity will be studied by the students. They will learn about the evolution and changes that molecules have undergone, as well as the reasons behind these changes. |
Biodiversity & Taxonomy | It also mirrors the several tiers of an organism's organizational system. |
Animal Biotechnology | The curriculum includes coursework in environmental engineering, animal genomics, and nutrition science. |
Computational Biology & Bioinformatics | The interdisciplinary sciences of bioinformatics and computer biology create and use computational techniques to analyze large amounts of biological data, including genetic sequences, cell populations, and protein samples. |
Introduction to DBMS, Computer Network & Numerical Analysis | A database is an organized set of linked data that makes it possible to insert, remove, and retrieve data quickly and effectively. |
Semester - 5 | |
Subject | Subject Details |
DNA Typing, Proteomics & Beyond | Proteomics research makes it possible to find new molecular targets for drug discovery as well as new protein markers for diagnostic purposes. |
Recombinant DNA Technology | Through the use of recombinant DNA technology, genetic material from outside of an organism can be modified to provide living things or their products improved and desirable qualities. |
Environmental Biotechnology | Environmental biotechnology is widely employed in a number of ways to identify, stop, and clean up pollutant discharges into the environment. |
Industrial Biotechnology | The goal of the course is to impart basic knowledge about the use of microbes and enzymes in the synthesis of products that have broad industrial applications. |
Semester - 6 | |
Subject | Subject Details |
Medical Biotechnology | In order to improve medicine, this field looks into how genetics, cell biology, and other sciences interact. |
Model Organisms in Human Genome Project | Numerous model organisms have the capacity for massive reproduction. Mutants provide scientists with the ability to study certain traits or illnesses. |
Biotechnology- Social, Legal and Ethical issues | Biotechnology raises a number of ethical issues, such as those pertaining to medicine, science and technology, justice and human dignity, and related concerns. |
Elements of Management Introduction and Entrepreneurship | An entrepreneur is a person who establishes, oversees, and assumes the many risks associated with operating a business. |
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BSc Biotechnology Core Subjects
The following are the main topics covered in the BSc Biotechnology program -
Subjects | Subject Details |
Introductory Biological Chemistry | The organic chemistry of atoms and molecules is combined with the biological functions that molecules perform in our daily lives in the integrated topic "Introduction to Biological Chemistry". |
Animal and Plant Physiology | Numerous organizational levels are covered in the course, including herbivory, biotic interactions, plant chemistry, striking a balance between defense and growth, and using plants as chemical detectors. |
Recombinant DNA Technology | Through the use of recombinant DNA technology, genetic material from outside of an organism can be modified to provide living things or their products improved and desirable qualities. |
DNA Typing, Proteomics and Beyond | DNA typing's medical diagnostic use is expanded upon in the forensic domain by comparing a patient's DNA to those of family members to investigate gene inheritance patterns or to reference standards to identify changes. |
Biodiversity and Taxonomy | A fundamental understanding of biodiversity components is provided by taxonomy, which is necessary for efficient conservation and sustainable use decision-making. |
Microbiology and Macromolecule | Microbiology is the study of microscopic creatures, including bacteria, fungus, viruses, slime molds, algae, and protozoa. |
Biostatistics | Methods for performing assumptions on population means and proportions using sample data, instruments for characterizing central tendency and variability in data, and other topics are presented. |
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The following are the BSc Biotechnology course elective subjects -
Subjects | Subject Details |
Nanotechnology | The study of controlling matter at the atomic, molecular, and supramolecular levels is known as nanotechnology. |
Biofertilizer Technology | Restoring soil fertility requires the use of biofertilizers. Biofertilizers supply vital nutrients like nitrogen, vitamins, and proteins to the soil and improve its ability to retain water. |
Ecology | It is the study of living things and how they interact with their environment. |
Biotechnology for Forensics | Biotechnology is used by forensic scientists to gather and handle traces of evidence, such as skin, blood, hair, or sperm samples, that are discovered at crime scenes. |
Scientific Writing | - |
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Biotechnology Entrance Exam Syllabus 2024: Important Books
Following are some of the important books for Biotechnology Entrance Exam Syllabus -
Books | Authors |
Biotechnology | B. D Singh |
Lehninger Principles of Biochemistry | David L. Nelson |
Molecular Biology of the Gene | J D Watson |
Principles of Gene Manipulation and Genomics | Sandy B. Primrose, Richard M. Twyman |
Gene Cloning and DNA Analysis | T. A. Brown |
Top BSc Biotechnology Colleges in India
Entrance Exams for BSc Biotechnology
The B. Sc. in Biotechnology Entrance Exam, which will be given by universities that offer the program, must be taken and passed by candidates. These tests are listed below -