Cold stress causes rapid but differential changes in properties of plasma membrane H+-ATPase of camelina and rapeseed HS Kim, JM Oh, S Luan, JE Carlson, SJ Ahn Journal of plant physiology 170 (9), 828-837, 2013 | 71 | 2013 |
Increasing Monounsaturated Fatty Acid Contents in Hexaploid Camelina sativa Seed Oil by FAD2 Gene Knockout Using CRISPR-Cas9 KR Lee, I Jeon, H Yu, SG Kim, HS Kim, SJ Ahn, J Lee, SK Lee, HU Kim Frontiers in Plant Science 12, 702930, 2021 | 56 | 2021 |
Subcellular journey of rare cold inducible 2 protein in plant under stressful condition HS Kim, W Park, HS Lee, JH Shin, SJ Ahn Frontiers in Plant Science 11, 610251, 2021 | 25 | 2021 |
CsRCI2A and CsRCI2E genes show opposite salt sensitivity reaction due to membrane potential control HS Kim, JE Lee, HY Jang, KJ Kwak, SJ Ahn Acta physiologiae plantarum 38, 1-13, 2016 | 18 | 2016 |
Functional characterization of plasma membrane-localized organic acid transporter (CsALMT1) involved in aluminum tolerance in Camelina sativa L. W Park, HS Kim, TW Park, YH Lee, SJ Ahn Plant Biotechnology Reports 11, 181-192, 2017 | 16 | 2017 |
Diverse roles of glycine-rich RNA-binding protein 7 in the response of camelina (Camelina sativa) to abiotic stress KJ Kwak, HS Kim, HY Jang, H Kang, SJ Ahn Acta Physiologiae Plantarum 38, 1-11, 2016 | 15 | 2016 |
NaCl-induced CsRCI2E and CsRCI2F interact with aquaporin CsPIP2; 1 to reduce water transport in Camelina sativa L. HS Kim, W Park, HG Lim, S Eom, JH Lee, JE Carlson, SJ Ahn Biochemical and biophysical research communications 513 (1), 213-218, 2019 | 14 | 2019 |
Amended soil with biopolymer positively affects the growth of Camelina sativa L. under drought stress HG Lim, HS Kim, HS Lee, JH Sin, ES Kim, HS Woo, SJ Ahn Ecology and Resilient Infrastructure 5 (3), 163-173, 2018 | 10 | 2018 |
CsRCI2D enhances high-temperature stress tolerance in Camelina sativa L. through endo-membrane trafficking from the plasma membrane HS Kim, JH Shin, HS Lee, S Kim, HY Jang, E Kim, SJ Ahn Plant Science 320, 111294, 2022 | 9 | 2022 |
Overexpression of CsRCI2H enhances salt tolerance in Camelina sativa (L.) YO Kim, HG Lim, HS Kim, SJ Ahn Plant Biotechnology Reports 14 (4), 439-449, 2020 | 8 | 2020 |
Functional Characterization of Salt‑Stress Induced Rare Cold Inducible Gene from Camelina sativa (CsRCI2D) YO Kim, HS Kim, HG Lim, HY Jang, E Kim, SJ Ahn Journal of Plant Biology 65 (4), 279-289, 2022 | 6 | 2022 |
Jatropha is vulnerable to cold injury due to impaired activity and expression of plasma membrane H+-ATPase JM Oh, HS Kim, HJ Bae, SJ Ahn Acta physiologiae plantarum 36, 231-241, 2014 | 6 | 2014 |
Biopolymer Amended Soil Reduces the Damages of Zn Excess in Camlina sativa L. JH Shin, HS Kim, E Kim, SJ Ahn Ecology and Resilient Infrastructure 7 (4), 262-273, 2020 | 5 | 2020 |
Xanthan Gum Reduces Aluminum Toxicity in Camelina Roots JH Shin, HS Kim, S Kim, E Kim, H Jang, SJ Ahn Ecology and Resilient Infrastructure 8 (3), 135-142, 2021 | 2 | 2021 |
Osmotic stress-induced CsRCI2E endosomal trafficking promotes the redistribution of aquaporin CsPIP2 at the plasma membrane of Camelina sativa L. JH Shin, HS Kim, S Kim, SJ Ahn | | 2023 |
토양 내 바이오폴리머 혼합에 의한 Camelina sativa L. 의 Zn 과잉 스트레스 피해 경감 효과 신정호, 김현성, 김은석, 안성주 Ecology and Resilient Infrastructure 7 (4), 262-273, 2020 | | 2020 |
Functional Characterization of CsRCI2D/G under Temperature Stress in Camelina sativa L. HS Lee, HS Kim, YO Kim, SJ Ahn Proceedings of the Korean Society of Crop Science Conference, 49-49, 2019 | | 2019 |
가뭄 조건 하에서 바이오폴리머 혼합 토양이 Camelina sativa L. 의 생장에 미치는 긍정적 영향 임현규, 김현성, 이현숙, 신정호, 김은석, 우효섭, 안성주 Ecology and Resilient Infrastructure 5 (3), 163-173, 2018 | | 2018 |
Characterization of Nutrient Uptake Property of Ramie Leaf and Development of Powder Production Process HS Kim, SJ Ahn Trends in Agriculture & Life Sciences 56, 1-7, 2018 | | 2018 |
Study on CsRCI2D and CsRCI2H for improvement of abiotic stress tolerance in Camelina sativa L. HG Lim, HS Kim, JE Kim, SJ Ahn Proceedings of the Korean Society of Crop Science Conference, 196-196, 2017 | | 2017 |