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Genetics, Genomics, and Bioinformatics

Catalog pages 394-396

Subject abbreviation: GEN College of Natural and Agricultural Sciences

Thomas Girke, Ph.D., Director Program Office, 1140 Batchelor Hall

  • (800) 735-0717 or (951) 827-7378

ggb.ucr.edu

Professors Peter W. Atkinson, Ph.D. (Entomology) Julia N. Bailey-Serres, Ph.D. (Botany and Plant Sciences) Katherine A. Borkovich, Ph.D. (Microbiology and Plant Pathology) James Borneman, Ph.D. (Microbiology and Plant Pathology) Chia-en Angelina Chang, Ph.D. (Chemistry) Meng Chen, Ph.D. (Botany and Plant Sciences) Xuemei Chen, Ph.D. (Botany and Plant Sciences) Timothy J. Close, Ph.D. (Botany and Plant Sciences) Xinping Cui, Ph.D. (Statistics) Sean Cutler, Ph.D. (Botany and Plant Sciences) Shou-Wei Ding, Ph.D. (Microbiology and Plant Pathology) Norman C. Ellstrand, Ph.D. (Botany and Plant Sciences) Thomas Eulgem, Ph.D. (Botany and Plant Sciences) Brian A. Federici, Ph.D. (Entomology) Theodore Garland, Ph.D. (Evolution, Ecology and Organismal Biology) Sarjeet S. Gill, Ph.D. (Molecular, Cell and Systems Biology) Thomas Girke, Ph.D. (Botany and Plant Sciences) Adam Godzik, Ph.D. (Biomedical Sciences) Venugopala R. Gonehal, Ph.D. (Botany and Plant Sciences) John M. Heraty, Ph.D. (Entomology) Tao Jiang, Ph.D. (Computer Science and Engineering) Hailing Jin, Ph.D. (Microbiology and Plant Pathology) Howard S. Judelson, Ph.D. (Microbiology and Plant Pathology) Isgouhi Kaloshian, Ph.D. (Nematology) Paul B. Larsen, Ph.D. (Biochemistry) Karine G. Le Roch, Ph.D. (Molecular, Cell and Systems Biology) Bai-Lian “Larry” Li, Ph.D. (Botany and Plant Sciences) Xuan Liu, Ph.D. (Biochemistry) Stefano Lonardi, Ph.D. (Computer Science and Engineering) Wenbo Ma, Ph.D. (Microbiology and Plant Pathology) Morris F. Maduro, Ph.D. (Molecular, Cell and Systems Biology) Ernest Martinez, Ph.D. (Biochemistry) Manuela Martins-Green, Ph.D. (Molecular, Cell and Systems Biology) Dmitri A. Maslov, Ph.D. (Molecular, Cell and Systems Biology) Leonard P. Nunney, Ph.D. (Evolution, Ecology and Organismal Biology) Alexander S. Raikhel, Ph.D. (Entomology) A.L.N. Rao, Ph.D. (Microbiology and Plant Pathology) Anandasankar Ray, Ph.D. (Molecular, Cell and Systems Biology) David Reznick, Ph.D. (Evolution, Ecology and Organismal Biology) Mikeal L. Roose, Ph.D. (Botany and Plant Sciences) Joel Sachs, Ph.D., (Evolution, Ecology and Organismal Biology) Neal L. Schiller, Ph.D. (School of Medicine) Frances M. Sladek, Ph.D. (Molecular, Cell and Systems Biology) Stephen R. Spindler, Ph.D. (Biochemistry) Mark S. Springer, Ph.D, (Evolution, Ecology and Organismal Biology) Patricia S. Springer, Ph.D. (Botany and Plant Sciences) Jason Stajich, Ph.D. (Microbiology and Plant Pathology) Linda L. Walling, Ph.D. (Botany and Plant Sciences) Susan R. Wessler, Ph.D., Distinguished Professor of Genetics (Botany and Plant Sciences) Shizhong Xu, Ph.D. (Botany and Plant Sciences) Zhenbiao Yang, Ph.D. (Botany and Plant Sciences) Raphael Zldovetski, Ph.D. (Molecular, Cell and Systems Biology)

Associate Professors Emma Aronson, Ph.D. (Microbiology and Plant Pathology) Jeffrey B. Bachant, Ph.D. (Molecular, Cell and Systems Biology) Anupama Dahanukar, Ph.D. (Molecular, Cell and Systems Biology) Paul DeLey, Ph.D. (Nematology) Adler Dillman, Ph.D. (Nematology) Wefeng Gu, Ph.D. (Molecular, Cell and Systems Biology) Arthur Jia, Ph.D. (Botany and Plant Sciences) Ted Karginov, Ph.D. (Molecular, Cell and Systems Biology) Marcus Kaul, Ph.D. (Biomedical Sciences) Amy Litt, Ph.D. (Botany and Plant Sciences) Wenxiu Ma, Ph.D. (Statistics) Meera G. Nair, Ph.D. (Biomedical Sciences) David Nelson, Ph.D. (Botany and Plant Sciences) James Ng, Ph.D. (Microbiology and Plant Pathology) Constance I. Nugent, Ph.D. (Molecular, Cell and Systems Biology) Caroline Roper, Ph.D. (Microbiology and Plant Pathology) Sika Zheng, Ph.D. (Biomedical Sciences)

Assistant Professors Gregor Blaha, Ph.D. (Biochemistry) Alan Brelsford, Ph.D. (Evolution, Ecology and Organismal Biology) Sihem Cheloufi, Ph.D. (Biochemistry) Patrick Hunt Degnan, Ph.D. (Microbiology and Plant Pathology) Sydney Glassman, Ph.D. (Microbiology and Plant Pathology) Rong Hai, Ph.D. (Microbiology and Plant Pathology) Erica Heinrich, Ph.D. (Biomedical Sciences) Ansel Hsiao, Ph.D. (Microbiology and Plant Pathology) Arthur Jia, Ph.D. (Botany and Plant Sciences) Daniel Koenig, Ph.D. (Botany and Plant Sciences) Yanran Li, Ph.D. (Chemical and Environmental Engineering) Yujie Men, Ph.D. (Department of Chemical and Environmental Engineering) Patricia Manosalva, Ph.D. (Microbiology and Plant Pathology) Jernej Murn, Ph.D. (Biochemistry) Dawn H. Nagel, Ph.D. (Botany and Plant Sciences) Qi Chen, Ph.D. (Biomedical Sciences) Sean O’Leary, Ph.D. (Biochemistry) Jefferson Perry, Ph.D. (Biochemistry) Martín M. Riccomagno, Ph.D. (Molecular, Cell and Systems Biology) Jaimie Van Norman, Ph.D. (Botany and Plant Sciences) Naoki Yamanaka, Ph.D. (Entomology)

Graduate Program

The Genetics, Genomics, and Bioinformat- ics Graduate Program (GGB) administers a program leading to the Ph.D. in Genetics, Genomics, and Bioinformatics. GGB is an interdepartmental program that includes faculty from the departments of Biochemistry, Botany and Plant Sciences, Computer Science and Engineering, Entomology, Environmental Sciences, Molecular, Cell, and Systems Biology, Nematology, Plant Pathology and Microbiol- ogy, and Statistics, as well as the Division of Biomedical Sciences.

The program is structured to allow maxi- mum flexibility in the design of an individual student course program and research goals. A primary objective is to allow students to develop a capability in research as rapidly as possible, consistent with the student’s initial preparation.

Students are expected to meet all general re- quirements of the Graduate Division as printed in the Graduate Studies section of this catalog.

Admission Submission of GRE scores (verbal, quantitative and analytical) is mandatory for admission. Applicants with any B.A. or B.S. degree and an adequate background in the biological and/ or computational sciences will be considered. The specific entry requirements include cours- es in genetics, biology, chemistry, calculus, computer science, and statistics. Please refer to the Program Guidelines for details. GGB evaluates applications on a continual basis from October to May, however, it normally con- siders applications for teaching and research assistantships at the same time as fellowships; therefore, students are strongly encouraged to complete their applications for admission and support as early as possible. Normally, fel- lowships are awarded in January, for students entering the following fall quarter.

Doctoral Degree

The program offers the Ph.D. degree in Genet- ics, Genomics, and Bioinformatics.

Course Work The course curriculum consists of three core classes and one or more elective classes. The core curriculum is composed of one genetics, one genomics and one bioinformatics course, while one or more elective classes can be cho- sen from an area of a student’s specialization. Core Classes (breadth requirements) Students will take one course from each of the following three areas (A-C).

(A) Molecular Genetics GEN 203 – Advanced Genetic Analysis of Model Organisms or MCBL 221 – Microbial Genetics or BPSC/BCH 231 – Plant Genome

Students may choose other alternatives after approval by their guidance committee and graduate advisor.

(B) Genomics GEN 241 (former GEN 240A) – Advances in Genomics

(C) Bioinformatics GEN 242 (former GEN 240B) – Data Analysis in Genome Biology GDIV 403 – Research and Scholarship Ethics; must be taken within one year of advancement to candidacy

Elective Classes (areas of specialization) Students must take one or more classes from the following areas. Students can also choose elective courses other than the ones listed below after approval by their guidance com- mittee and graduate advisor.

Genetics

(RNA) Biology

Stability

Computational Biology and Statistics

  • • CS 141 – Intermediate Data Structures and

Algorithms

  • • CS 100 – Software Construction

CS 234 – Computational Methods for Biomolecular Data

  • • CS 238 – Algorithmic Techniques in

Computational Biology

  • • GEN 220 – Computational Analysis of High

Throughput Biological Data

  • • STAT 110 – Biostatistical Methods in Life

Sciences

  • • STAT 155 – Probability and Statistics for

Science and Engineering

  • • STAT 201A/B/C – Theory of Probability and

Statistics (replaces 160A/B)

  • • STAT 201A/B/C – Elements of Probability

and Statistical Theory

  • • STAT 160B – Elements of Probability and

Statistical Theory

  • • STAT 161 – Introduction to Probability

Models Seminars The GEN 261 seminar (Seminar in Genetics, Genomics, and Bioinformatics) must be taken every quarter.

Supplemental Courses Students may wish to take additional courses to supplement their graduate training. These courses will be tailored to the specific stu- dent’s needs and decided upon in consulta- tion with their major professors.

Classes that emphasize genetics, genomics, bioinformatics and other related areas are given in the List of Potential Courses in the GGB Graduate Student Handbook.

Students should consider some training in the ethics of use of genetically modified organisms, impact of patents on application of bioinformatics/genomics data, and/or use of databases with bioinformatics/genomics information in a clinical setting.

Additional Units taken to maintain 12-unit course load Graduate students will register for 12 units per quarter to maintain full-time status. These units will include any lecture and seminar courses taken for the quarter. Typically stu- dents will also register for Directed Research (GEN 297) prior to advancement to candidacy or Research for Dissertation (GEN 299) after passing the Qualifying Exam.

The Ph.D. is a research degree, and, according- ly, the goal of the program is to train students in the theoretical and experimental founda- tions of modern genetics. Students are strong- ly encouraged to participate in lab rotations, select a major professor and begin research work early in their training (during the first year of residence).

Written and Oral Qualifying Examinations Students are advanced to candidacy following successful completion of a written preliminary examination and an oral qualifying examination.

Dissertation and Final Oral Examination Successful completion of a final oral disserta- tion defense is also required.

Foreign Language Requirement None

Teaching Requirement Each student must have at least two quarters of teaching experience. This requirement may be satisfied by serving as a teaching assistant in a genetics-related course.

Professional Development Training Ph.D. graduate students fulfill their profession- al training requirement through enrollment in GEN 261 and GDIV 403.

Normative Time to Degree 15 quarters

Masters Degree

The multidisciplinary interdepartmental graduate program in Genetics, Genomics, and Bioinformatics offers instruction and research training leading to the M.S. degree in Genetics, Genomics, and Bioinformatics. A Thesis (Plan

  • I) or Comprehensive Exam (Plan II) M.S. degree

in Genetics, Genomics, and Bioinformatics is available under special circumstances, when the work leading to the Ph.D. degree cannot be completed. Whether either of these options is appropriate will be decided by the student’s Guidance Committee either at the end of the first year or the time of the oral qualifying examination. Reference the Minimum Degree Requirements for the Master’s degree (for Plan I and Plan II) in the Graduate Studies section of the General requirements.

Courses