日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

The phytochrome-interacting factor genes PIF1 and PIF4 are functionally diversified due to divergence of promoters and proteins

由于启动子和蛋白质的差异,植物光敏色素互作因子基因PIF1和PIF4的功能也存在多样性。

Kim, Hanim; Lee, Nayoung; Kim, Yeojae; Choi, Giltsu

The epidermis coordinates thermoresponsive growth through the phyB-PIF4-auxin pathway

表皮通过 phyB-PIF4-生长素通路协调温度响应性生长。

Kim, Sara; Hwang, Geonhee; Kim, Soohwan; Thi, Thom Nguyen; Kim, Hanim; Jeong, Jinkil; Kim, Jaewook; Kim, Jungmook; Choi, Giltsu; Oh, Eunkyoo

Phytochrome B Requires PIF Degradation and Sequestration to Induce Light Responses across a Wide Range of Light Conditions

植物光敏色素B需要PIF降解和螯合才能在各种光照条件下诱导光响应。

Park, Eunae; Kim, Yeojae; Choi, Giltsu

Phytochrome and Ethylene Signaling Integration in Arabidopsis Occurs via the Transcriptional Regulation of Genes Co-targeted by PIFs and EIN3.

拟南芥中的光敏色素和乙烯信号整合是通过 PIF 和 EIN3 共同靶向基因的转录调控实现的

Jeong Jinkil, Kim Keunhwa, Kim Mi E, Kim Hye G, Heo Gwi S, Park Ohkmae K, Park Youn-Il, Choi Giltsu, Oh Eunkyoo

The Transcriptional Coregulator LEUNIG_HOMOLOG Inhibits Light-Dependent Seed Germination in Arabidopsis.

转录共调节因子 LEUNIG_HOMOLOG 抑制拟南芥的光依赖性种子萌发

Lee Nayoung, Park Jeongmoo, Kim Keunhwa, Choi Giltsu

Phytochrome-interacting factors have both shared and distinct biological roles

植物光敏色素相互作用因子既有共同的生物学功能,也有各自独特的生物学功能。

Jeong, Jinkil; Choi, Giltsu

Cytokinins enhance sugar-induced anthocyanin biosynthesis in Arabidopsis

细胞分裂素增强拟南芥中糖诱导的花青素生物合成

Das, Prasanta Kumar; Shin, Dong Ho; Choi, Sang-Bong; Yoo, Sang-Dong; Choi, Giltsu; Park, Youn-Il

Phytochrome B inhibits binding of phytochrome-interacting factors to their target promoters

植物光敏色素B抑制植物光敏色素相互作用因子与其靶启动子的结合

Park, Eunae; Park, Jeongmoo; Kim, Junghyun; Nagatani, Akira; Lagarias, J Clark; Choi, Giltsu

Phytochromes inhibit hypocotyl negative gravitropism by regulating the development of endodermal amyloplasts through phytochrome-interacting factors

植物色素通过与植物色素相互作用的因子调节内胚层淀粉体的发育,从而抑制下胚轴的负向地性。

Kim, Keunhwa; Shin, Jieun; Lee, Sang-Hee; Kweon, Hee-Seok; Maloof, Julin N; Choi, Giltsu

NDP kinase 2 interacts with two oxidative stress-activated MAPKs to regulate cellular redox state and enhances multiple stress tolerance in transgenic plants

NDP激酶2与两种氧化应激激活的MAPK相互作用,调节细胞氧化还原状态,并增强转基因植物的多重胁迫耐受性。

Moon, Haejeong; Lee, Boyoung; Choi, Giltsu; Shin, Dongjin; Prasad, D Theertha; Lee, Oksun; Kwak, Sang-Soo; Kim, Doh Hoon; Nam, Jaesung; Bahk, Jeongdong; Hong, Jong Chan; Lee, Sang Yeol; Cho, Moo Je; Lim, Chae Oh; Yun, Dae-Jin