转录组
代谢组学
机制(生物学)
压力(语言学)
铬
生物
IRIS(生物传感器)
植物修复
战斗或逃跑反应
遗传学
重金属
化学
环境化学
生物信息学
基因
基因表达
计算机科学
物理
计算机安全
量子力学
生物识别
有机化学
语言学
哲学
作者
Z.‐X. Yang,Wei Zhao,Lili Liang,Lei Fang
标识
DOI:10.1080/15226514.2025.2514890
摘要
The molecular stress mechanisms of chromium(Cr) tolerance in plants is elucidated in order to assess the persistent environmental effects of chromium stress. In this study, I. tectorum was employed as the experimental model to scrutinize Cr accumulation and transportation, along with physiological alterations including antioxidants, metabolites, and functional genes in plants under Cr stress. The findings exhibited a significant reduction in plant biomass under Cr stress, accompanied by pronounced enhancements in Cr enrichment capacity and homeostatic oxidative stress ability. Metabolomic analysis revealed that Cr stress primarily affected nine metabolic pathways in I. tectorum, involving 25 differentially expressed metabolites (DEMs). In addition, the transcriptomic analysis identified a total of 19,136 differentially expressed genes (11994 up-regulated and 7142 down-regulated DEGs) across the three comparison groups. These DEGs were primarily associated with cell wall biosynthesis, oxidative stress response, signal transduction, and plant carbohydrate metabolism pathways. A comprehensive analysis unveiled the pivotal roles of the cell wall biosynthetic pathway and the oxidative stress system in I. tectorum for Cr detoxification. In conclusion, this study encompassed a comprehensive investigation to unravel the molecular detoxification mechanism employed by I. tectorum, a wetland plant, in combating Cr stress utilizing diverse methodologies.
科研通智能强力驱动
Strongly Powered by AbleSci AI