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Results 1-20 of 21 (Search time: 0.005 seconds).

No. Year Title Type
21 2021

2021Patent

다당류 분해효소 또는 셀룰로오스 합성효소의 발현을 조절하여 세포벽이 얇아진 미세조류의 제조방법KR10-2019-0121393 (2019.10.01) / 10-2225223 (2021.03.03)임종민정원중
Patent
20 2021

2021Article

Safe-harboring based novel genetic toolkit for Nannochloropsis salina CCMP1776: efficient overexpression of transgene via CRISPR/Cas9-mediated Knock-in at the transcriptional hotspotBioresource Technology, vol. 340, pp. 125676-125676A J Ryu; B R Jeong; N K Kang; S Jeon; M G Sohn; H J Yun; Jong Min Lim; S W Jeong; Y I Park; Won Joong Jeong, et al.
Article
19 2021

2021Article

Production of porpyra-334 in transgenic lines of Nannochloropsis salina by the expression of mycosporine-like amino acid biosynthetic genes of P. yezoensisJournal of Applied Phycology, vol. 33, pp. 1663-1672Jae-Sun In; Jong Min Lim; Sokyong Jung; D W Choi; Sung Ran MinWon Joong Jeong
Article
18 2020

2020Article

Genetic impairment of cellulose biosynthesis increases cell wall fragility and improves lipid extractability from oleaginous alga Nannochloropsis salinaMicroorganisms, vol. 8, no. 8, pp. 1195-1195S W Jeong; Kwon Hwangbo; Jong Min Lim; S W Nam; B S Lee; B R Jeong; Y K Chang; Won Joong Jeong; Y I Park
Article
17 2020

2020Article

The NanDeSyn database for Nannochloropsis systems and synthetic biologyPlant Journal, vol. 104, no. 6, pp. 1736-1745Y Gong; N K Kang; Y U Kim; Z Wang; L Wei; Y Xin; C Shen; Q Wang; W You; Jong Min Lim, et al.
Article
16 2020

2020Article

Overexpression of Chlamydomonas reinhardtii LCIA (CrLCIA) gene increases growth of Nannochloropsis salina CCMP1776Algal Research-Biomass Biofuels and Bioproducts, vol. 46, pp. 101807-101807J Vikramathithan; Kwon Hwangbo; Jong Min Lim; Ka Min Lim; Da Yeon Kang; Y I Park; Won Joong Jeong
Article
15 2019

2019Patent

클라미도모나스 레인하드티 유래 RHP1 유전자를 이용한 바이오매스가 증가된 형질전환 난노클로롭시스 살리나의 제조 방법KR10-2017-0144519 (2017.11.01) / 10-1987282 (2019.06.03)정원중; 임가민; 임종민
Patent
14 2019

2019Article

Loss of copy number and expression of transgene during meiosis in Pyropia teneraPlant Biotechnology Reports, vol. 13, no. 6, pp. 653-661Jong Min Lim; Y J Shin; Sokyong Jung; Seung-A Choi; D W Choi; Sung Ran MinWon Joong Jeong
Article
13 2018

2018Article

Characterization of high temperature-tolerant strains of Pyropia yezoensisPlant Biotechnology Reports, vol. 12, pp. 365-373Yoon Ju Shin; Sung Ran Min; Da Yeon Kang; Jong Min Lim; E J Park; M S Hwang; D W Choi; J W Ahn; Y I Park; Won Joong Jeong
Article
12 2018

2018Article

Elevated inorganic carbon concentrating mechanism confers tolerance to high light in an arctic chlorella sp. ARM0029B = 극지 클로렐라 ARM0029B에서 강한 내성에 기여하는 증가된 무기탄소 농축 기작Frontiers in Plant Science, vol. 9, pp. 590-590Kwon Hwangbo; Jong Min Lim; S W Jeong; J Vikramathithan; Y I Park; Won Joong Jeong
Article
11 2017

2017Article

Current status and perspectives of genome editing technology for microalgaeBiotechnology for Biofuels, vol. 10, pp. 267-267S Jeon; Jong Min LimHyung Gwan Lee; S E Shin; N K Kang; Y I Park; Hee-Mock OhWon Joong Jeong; B R Jeong; Y K Chang
Article
10 2017

2017Article

Reduced gene expression at the branch point of chlorophyll and heme biosynthesis in Arctic Chlorella ArM0029BPlant Biotechnology Reports, vol. 11, no. 1, pp. 9-15V?Jayaraman; Kwon Hwangbo; Jong Min LimSung Ran Min; J W Ahn; D W Choi; Won Joong Jeong
Article
9 2016

2016Article

Characterization of PyGUS gene silencing in the red macroalga, Pyropia yezoensisPlant Biotechnology Reports, vol. 10, no. 6, pp. 359-367Yoon Ju Shin; Jong Min Lim; Ji Hyun Park; D W Choi; M S Hwang; E J Park; Sung Ran MinSuk Weon KimWon Joong Jeong
Article
8 2016

2016Article

CRISPR/Cas9-induced knockout and knock-in mutations in Chlamydomonas reinhardtiiScientific Reports, vol. 6, pp. 27810-27810S E Shin; Jong Min Lim; H G Koh; E K Kim; N K Kang; S Jeon; S Kwon; W S Shin; B Lee; Kwon Hwangbo, et al.
Article
7 2015

2015Patent

감마선 조사에 의해 바이오매스, 전분 및 지질 함량이 증진된 미세조류 클라미도모나스 레인하드티 변이체 및 이의 용도KR10-2014-0058117 (2014.05.15) / 10-1563148 (2015.10.20)정원중; 황보권; 민성란임종민
Patent
6 2015

2015Article

Threonine 286 of fatty acid desaturase 7 is essential for ω-3 fatty acid desaturation in the green microalga Chlamydomonas reinhardtiiFrontiers in Microbiology, vol. 6, pp. 66-66Jong Min Lim; J Vikramathithan; Kwon Hwangbo; J W Ahn; Y I Park; D W Choi; Won Joong Jeong
Article
5 2015

2015Article

Salinity-dependent changes in growth and fatty acid composition of new Arctic Chlamydomonas species, ArM0029APlant Cell Tissue and Organ Culture, vol. 120, no. 3, pp. 1015-1021Joon Woo Ahn; Kwon Hwangbo; C J Yin; Jong Min Lim; H G Choi; Y I Park; Won Joong Jeong
Article
4 2014

2014Article

Plastid and mitochondrion genomic sequences from Arctic Chlorella sp. ArM0029BBMC Genomics, vol. 15, pp. 286-286Haeyoung JeongJong Min Lim; J Park; Young Mi Sim; H G Choi; J Lee; Won Joong Jeong
Article
3 2014

2014Article

Overexpression of stearoyl-ACP desaturase enhances accumulations of oleic acid in the green alga Chlamydomonas reinhardtiiPlant Biotechnology Reports, vol. 8, pp. 135-142Kwon Hwangbo; Joon Woo Ahn; Jong Min Lim; Y I Park; Jang Ryol Liu; Won Joong Jeong
Article
2 2013

2013Article

Development of cyan fluorescent protein (CFP) reporter system in green alga Chlamydomonas reinhardtii and macroalgae Pyropia spPlant Biotechnology Reports, vol. 7, no. 3, pp. 407-414Jong Min Lim; J W Ahn; Kwon Hwangbo; D W Choi; E J Park; M S Hwang; Jang Ryol Liu; Won Joong Jeong
Article
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