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Hong Gil Lee

Showing results (31-40 of 35) with videos related to

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Toxics|November 25, 2021
Identification of Metal Contamination Sources and Evaluation of the Anthropogenic Effects in Soils near Traffic-Related FacilitiesHong-Gil Lee, Yoon Joo Byun, Young-Woo Chun, et al.
Nature Communications|May 19, 2026
Stem cell activity is linked to a transient acquisition of pluripotency during callus proliferationSoon Hyung Bae, Ok-Sun Park, Kyounghee Lee, et al.
The New Phytologist|February 26, 2024
Histone modification-dependent production of peptide hormones facilitates acquisition of pluripotency during leaf-to-callus transition in ArabidopsisCheljong Hong, Hong Gil Lee, Sangrea Shim, et al.
Nature Plants|July 4, 2025
High-temperature-induced FKF1 accumulation promotes flowering through the dispersion of GI and degradation of SVPHong Gil Lee, Jinkwang Kim, Kyung-Ho Park, et al.
Plant Physiology|October 17, 2024
ASYMMETRIC LEAVES1 promotes leaf hyponasty in Arabidopsis by light-mediated auxin signalingNayoung Lee, Dae Yeon Hwang, Hong Gil Lee, et al.
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Showing results (31-40 of 35) with videos related to

Sort By:
Pageof 4
You have reached the last page of results.This site can display upto 35 results.
Toxics|November 25, 2021
Identification of Metal Contamination Sources and Evaluation of the Anthropogenic Effects in Soils near Traffic-Related FacilitiesHong-Gil Lee, Yoon Joo Byun, Young-Woo Chun, et al.
Nature Communications|May 19, 2026
Stem cell activity is linked to a transient acquisition of pluripotency during callus proliferationSoon Hyung Bae, Ok-Sun Park, Kyounghee Lee, et al.
The New Phytologist|February 26, 2024
Histone modification-dependent production of peptide hormones facilitates acquisition of pluripotency during leaf-to-callus transition in ArabidopsisCheljong Hong, Hong Gil Lee, Sangrea Shim, et al.
Nature Plants|July 4, 2025
High-temperature-induced FKF1 accumulation promotes flowering through the dispersion of GI and degradation of SVPHong Gil Lee, Jinkwang Kim, Kyung-Ho Park, et al.
Plant Physiology|October 17, 2024
ASYMMETRIC LEAVES1 promotes leaf hyponasty in Arabidopsis by light-mediated auxin signalingNayoung Lee, Dae Yeon Hwang, Hong Gil Lee, et al.
Pageof 4