Study Program Doctorate
The Doctoral Study Program in Plant Breeding and Biotechnology aspires to be an international center of excellence dedicated to cultivating human resources capable of advancing knowledge and pioneering new technologies in tropical plant breeding and biotechnology. Anchored by a forward-looking curriculum, the program equips students with superior intellectual abilities, fosters the development of 21st‑century competencies, and nurtures personal growth. By providing a dynamic and supportive academic environment, the program empowers scholars to become innovative leaders who contribute meaningfully to global agricultural sustainability and scientific progress.
As internationally recognized center of excellence, the Doctoral Program in Plant Breeding and Biotechnology is committed to the development of human resources capable of advancing knowledge and generating new technologies in tropical plant breeding and biotechnology. Through inter‑, multi‑, and transdisciplinary approaches, the program contributes to strengthening food and bioenergy sovereignty while promoting environmental sustainability, positioning itself as a leader in addressing global challenges in agriculture and biotechnology.
Mission1. Organizing a High-Quality Doctoral Education Program
in tropical plant breeding and biotechnology that is academically rigorous, innovative, globally competitive and recognized both nationally and internationally.
2. Conducting Research for Science and Humanity
to advance tropical plant breeding and biotechnology in ways that benefit both science and society.
3. Carrying out community service in plant breeding and biotechnology aspects through disseminating of knowledge and technology to support food sovereignity, bioenergy and environment sustainability.
| Num | Course | Credit | Precondition | Semester | Course Category | |
|---|---|---|---|---|---|---|
| Code | Name | |||||
| 1 | PBT1601 | Biotechnology in Plant Breeding | 3(2-1) | - | 1 | In-depth Courses |
| 2 | PBT1612 | Quantitative Method in Plant Breeding | 3(2-1) | - | 1 | In-depth Courses |
| 3 | PBT1613 | Plant Breeding for Stress Environment | 3(3-0) | - | 1 | In-depth Courses |
| 4 | PBT1614 | Plant Cytogenetics | 3(2-1) | - | 1 | In-depth Courses |
| 5 | PBT1631 | Plant Biotechnology | 3(2-1) | - | 1 | In-depth Courses |
| 6 | PBT1631 | Plant Biotechnology | 3(2-1) | - | 1 | In-depth Courses |
| 7 | PBT1632 | Plant Growth Regulator | 3(2-1) | - | 1 | In-depth Courses |
| 8 | PBT1634 | Molecular Analysis in Plant Breeding | 3(2-1) | - | 1 | In-depth Courses |
| 9 | PBT1701 | Plant Breeding Design | 3(3-0) | - | 1 | Academic Core Courses |
| 10 | PBT1702 | OMICS in Plant Breeding | 3(2-1) | - | 1 | Academic Core Courses |
| 11 | PBT1702 | OMICS in Plant Breeding | 3(2-1) | - | 1 | Academic Core Courses |
| 12 | PPS1703 | English Courses for Doctoral | 3(3-0) | - | 1 | PPKU/Common Core Courses |
| 13 | PPS1704 | Philosophy of Science | 2(2-0) | - | 1 | PPKU/Common Core Courses |
| 14 | PBT1602 | Plant Breeding | 3(2-1) | - | 2 | In-depth Courses |
| 15 | PBT1603 | Cellular Analysis in Plant Breeding | 3(2-1) | - | 2 | In-depth Courses |
| 16 | PBT1604 | Methods for Scientific Research and Publication | 3(2-1) | - | 2 | In-depth Courses |
| 17 | PBT1604 | Methods for Scientific Research and Publication | 3(2-1) | - | 2 | In-depth Courses |
| 18 | PBT1611 | Quantitative Genetics | 2(2-0) | - | 2 | In-depth Courses |
| 19 | PBT1615 | Mutation Breeding | 3(2-1) | - | 2 | In-depth Courses |
| 20 | PBT1633 | Plant Genetic Engineering | 3(2-1) | - | 2 | In-depth Courses |
| 21 | PBT1635 | Plant Cell Biology and Physiology | 3(2-1) | - | 2 | In-depth Courses |
| 22 | PBT1636 | Laboratory Technique for Plant Molecular Biology | 3(2-1) | - | 2 | In-depth Courses |
| 23 | PBT1636 | Laboratory Technique for Plant Molecular Biology | 3(2-1) | - | 2 | In-depth Courses |
| 24 | PBT1703 | Plant Genetic Resource Management | 2(2-0) | - | 2 | Foundational Literacies |
| 25 | PBT170A | Special Topic | 3(3-0) | - | 2 | Capstone |
| 26 | PBT1732 | Regulation of Plant Growth and Development | 3(3-0) | - | 2 | In-depth Courses |
| 27 | PBT1791 | Written Precualification Exam | 2(2-0) | - | 2 | Final Year Project |
| 28 | PBT1791 | Written Precualification Exam | 2(2-0) | - | 2 | Final Year Project |
| 29 | PBT1792 | Oral Prequalification Exam | 2(2-0) | - | 2 | Final Year Project |
| 30 | PBT1792 | Oral Prequalification Exam | 2(2-0) | - | 2 | Final Year Project |
| 31 | PBT1792 | Oral Prequalification Exam | 2(2-0) | - | 2 | Final Year Project |
| 32 | PBT1793 | Dissertation Colloquium | 1(1-0) | - | 2 | Final Year Project |
| 33 | PBT1793 | Dissertation Colloquium | 1(1-0) | - | 2 | Final Year Project |
| 34 | PBT1793 | Dissertation Colloquium | 1(1-0) | - | 2 | Final Year Project |
| 35 | PBT1794 | Dissertation Proposal | 2(2-0) | - | 2 | Final Year Project |
| 36 | PBT1794 | Dissertation Proposal | 2(2-0) | - | 2 | Final Year Project |
| 37 | PBT1794 | Dissertation Proposal | 2(2-0) | - | 2 | Final Year Project |
| 38 | PPS1792 | National Scientific Publication | 2(0-2) | - | 4 | Final Year Project |
| 39 | PPS1793 | International Scientific Publication | 3(0-3) | - | 4 | Final Year Project |
| 40 | PPS1794 | International Scientific Publications 1 | 3(0-3) | - | 4 | Final Year Project |
| 41 | PPS1795 | International Scientific Publications 2 | 3(0-3) | - | 4 | Final Year Project |
| 42 | PPS1798 | Publication in Proceedings of International Seminar | 2(0-2) | - | 4 | Final Year Project |
| 43 | PBT1794 | Final Examination | 3(3-0) | - | 5 | Final Year Project |
| 44 | PBT1795 | Dissertation | 12(12-0) | - | 5 | Final Year Project |
| 45 | PPS1791 | Disertation Seminar | 1(0-1) | - | 5 | Final Year Project |
Belum ada data
To be an organizer of doctoral education programs in tropical plant breeding and biotechnology that are of high quality, competitive, and recognized nationally and internationally; to conduct research that advances science, enhances the welfare of humanity, and achieves national and international recognition; and to carry out community service through the dissemination of science, technology, and superior plant varieties to strengthen food sovereignty, support bioenergy development, and promote environmental sustainability.