Cadmium (Cd) pollution poses significant threats to ecosystems and human health, with agricultural soils in China particularly affected. Ilex verticillata, a popular ornamental plant, has not been extensively studied for its response to Cd stress. This study investigated the physiological and molecular mechanisms underlying Cd stress tolerance in I. verticillata, focusing on auxin signaling pathways. Under Cd stress (500 mmol/kg soil), I. verticillata exhibited inhibited stem growth, reduced photosynthetic capacity, and elevated oxidative stress markers such as malondialdehyde, H(2)O(2), ·O(2)(-), and antioxidant enzyme activities. Transcriptomic analysis revealed 3750 differentially expressed genes (DEGs) with significant enrichment in auxin signaling pathways. Six nucleus-localized IvIAA genes were identified and shown to interact with the transcription factor IvMYB77, suggesting a regulatory module in Cd stress responses. These findings highlight the role of auxin signaling in mediating Cd stress tolerance and provide insights into the molecular adaptation of I. verticillata to heavy metal pollution.
Cadmium Stress Disrupts Auxin Signaling and Growth in Ilex verticillata: Insights from Physiological and Transcriptomic Analyses.
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作者:Shen Qinyuan, Huang Liangye, Ji Piyu, Rao Muhammad Junaid, Li Wanchun, Zuo Jianfang, Yuan Huwei, Yan Daoliang, Wang Xiaofei, Zheng Bingsong
| 期刊: | Plants-Basel | 影响因子: | 4.100 |
| 时间: | 2026 | 起止号: | 2026 Jan 16; 15(2):277 |
| doi: | 10.3390/plants15020277 | ||
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