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

Transcriptome Changes Reveal the Molecular Mechanisms of Humic Acid-Induced Salt Stress Tolerance in Arabidopsis

转录组变化揭示腐殖酸诱导拟南芥耐盐胁迫的分子机制

Joon-Yung Cha, Sang-Ho Kang, Myung Geun Ji, Gyeong-Im Shin, Song Yi Jeong, Gyeongik Ahn, Min Gab Kim, Jong-Rok Jeon, Woe-Yeon Kim

Humic acid enhances heat stress tolerance via transcriptional activation of Heat-Shock Proteins in Arabidopsis

腐殖酸通过转录激活拟南芥热休克蛋白增强抗热胁迫能力

Joon-Yung Cha, Sang-Ho Kang, Imdad Ali, Sang Cheol Lee, Myung Geun Ji, Song Yi Jeong, Gyeong-Im Shin, Min Gab Kim, Jong-Rok Jeon, Woe-Yeon Kim

Synergistic Release of Crop Nutrients and Stimulants from Hydroxyapatite Nanoparticles Functionalized with Humic Substances: Toward a Multifunctional Nanofertilizer

腐殖质功能化的羟基磷灰石纳米粒子协同释放作物营养和刺激物:多功能纳米肥料

Ho Young Yoon, Jeong Gu Lee, Lorenzo Degli Esposti, Michele Iafisco, Pil Joo Kim, Seung Gu Shin, Jong-Rok Jeon, Alessio Adamiano

One-Pot Transformation of Technical Lignins into Humic-Like Plant Stimulants through Fenton-Based Advanced Oxidation: Accelerating Natural Fungus-Driven Humification

通过基于芬顿的高级氧化将工业木质素一次性转化为类腐殖质植物刺激剂:加速天然真菌驱动的腐殖化

Hae Jin Jeong, Joon-Yung Cha, Jung Hoon Choi, Kyoung-Soon Jang, Jongkoo Lim, Woe-Yeon Kim, Dong-Cheol Seo, Jong-Rok Jeon

Humic Acid Confers HIGH-AFFINITY K+ TRANSPORTER 1-Mediated Salinity Stress Tolerance in Arabidopsis

腐殖酸使拟南芥具有高亲和力 K+ 转运体 1 介导的盐胁迫耐受性

Laila Khaleda, Hee Jin Park, Dae-Jin Yun, Jong-Rok Jeon, Min Gab Kim, Joon-Yung Cha, Woe-Yeon Kim