Bùi Thanh Duyên
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Bùi Thanh Duyên (born April 22, 1987) is a Vietnamese tech entrepreneur, scientist, and molecular biologist who co-founded the genetic decoding company Genetica and currently serves as its Chief Scientific Officer (CSO).[1]
Prior to this, Duyên was known as an elite student, having received numerous academic awards and prizes during her high school years, before earning dual bachelor's degrees from two prestigious universities in Vietnam and receiving a scholarship to study Ph.D. in the United States.[2]
Biography
Duyên was born and raised in the northern province of Hà Giang. She was attending the Ha Giang Gifted High School when she won third place in the National Chemistry Olympiad, for which she was immediately accepted into the National Economics University (Vietnamese: Đại học Kinh tế Quốc dân).[2]
Duyên decided to also take the entrance examination into VNU Hanoi-University of Science (Vietnamese: Đại học khoa học tự nhiên Hà Nội) for personal purposes, and eventually passed, so she began to study two programs at two schools almost simultaneously.[2]
Duyên was one of 37 students chosen in 2010 to receive a 54-thousand-dollar scholarship for two years of Ph.D. studies at top universities in the United States. She chose and eventually completed her doctorate in Molecular Biology and Genetics at Cornell University, where she also met her husband, Cao Anh Tuấn, and together they founded Gene Friend Way in San Francisco, also known as Genetica in Vietnam and Singapore. [2][1]
Personal life
Duyên and her husband have a daughter. She enjoys walking in the forest or anywhere with a lot of trees in her spare time, having visited many primary forests in the United States.[3]
Duyên acknowledged her good fortune in her personal life, telling that "she had to do a lot of laboratory work, so her mother made a lot of sacrifices to help her raise her child." [3]
Notable Publication
2019: Rereplication Is Susceptible to Nucleotide-Level Mutagenesis – Published on Genetics (IF=4.015) [4]
2018: Human isolates of baker’s yeast display MLH1-PMS1 incompatibilities that contribute to a wide range of mutation rates – Published on Genetics (IF=3.564)[5]
2017: Mismatch Repair Incompatibilities in Diverse Yeast Populations – Published on Genetics (IF=4.075)[6]
2015: A Genetic Incompatibility Accelerates Adaptation in Yeast. Published on PLOS Genetics (IF= 6.661)[7]
References[edit]
[4] https://pubmed.ncbi.nlm.nih.gov/31028114/
[5] https://pubmed.ncbi.nlm.nih.gov/30348651/
[6] https://pubmed.ncbi.nlm.nih.gov/28193730/
[7] https://journals.plos.org/plosgenetics/article?id=10.1371/journal.pgen.1005407
- ↑ 1.0 1.1 "Bùi Thanh Duyên, Giám đốc khoa học Genetica: Giải mã bí ẩn trong bộ gene của người Việt". baodautu (in Tiếng Việt). Retrieved 2022-06-20.
- ↑ 2.0 2.1 2.2 2.3 "Bùi Thanh Duyên với vinh dự được du học tại Mỹ". beta.baohagiang.vn. Retrieved 2022-06-20.
- ↑ 3.0 3.1 "Nữ tiến sĩ đam mê giải mã gene người Việt - Cổng Thông Tin Hội Liên hiệp Phụ nữ Việt Nam". hoilhpn.org.vn (in Tiếng Việt). Retrieved 2022-06-20.
- ↑ Bui, Duyen T.; Li, Joachim J. (June 2019). "DNA Rereplication Is Susceptible to Nucleotide-Level Mutagenesis". Genetics. 212 (2): 445–460. doi:10.1534/genetics.119.302194. ISSN 1943-2631. PMC 6553831 Check
|pmc=
value (help). PMID 31028114. - ↑ Raghavan, Vandana; Bui, Duyen T.; Al-Sweel, Najla; Friedrich, Anne; Schacherer, Joseph; Aquadro, Charles F.; Alani, Eric (December 2018). "Incompatibilities in Mismatch Repair Genes MLH1-PMS1 Contribute to a Wide Range of Mutation Rates in Human Isolates of Baker's Yeast". Genetics. 210 (4): 1253–1266. doi:10.1534/genetics.118.301550. ISSN 1943-2631. PMC 6283166. PMID 30348651.
- ↑ Bui, Duyen T.; Friedrich, Anne; Al-Sweel, Najla; Liti, Gianni; Schacherer, Joseph; Aquadro, Charles F.; Alani, Eric (April 2017). "Mismatch Repair Incompatibilities in Diverse Yeast Populations". Genetics. 205 (4): 1459–1471. doi:10.1534/genetics.116.199513. ISSN 1943-2631. PMC 5378106. PMID 28193730.
- ↑ Bui, Duyen T.; Dine, Elliot; Anderson, James B.; Aquadro, Charles F.; Alani, Eric E. (2015-07-31). "A Genetic Incompatibility Accelerates Adaptation in Yeast". PLOS Genetics. 11 (7): e1005407. doi:10.1371/journal.pgen.1005407. ISSN 1553-7404. PMC 4521705. PMID 26230253.
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