Uptake, translocation and distribution of cyantraniliprole in rice planting system

染色体易位 韧皮部 播种 木质部 化学 农学 生物 园艺 植物 生物化学 基因
作者
Changpeng Zhang,Nan Fang,Yanjie Li,Xiangyun Wang,Hongmei He,Jinhua Jiang,Tao Tang,Zhenlan Xu,Xueping Zhao,Yuanbo Li
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:436: 129125-129125 被引量:24
标识
DOI:10.1016/j.jhazmat.2022.129125
摘要

While cyantraniliprole has been frequently used in rice fields, knowledge of the uptake, translocation and distribution of cyantraniliprole in rice planting systems is still largely unexplored. Plant uptake is a crucial factor in determining how cyantraniliprole moves through the food chain. Understanding the uptake, translocation and distribution of cyantraniliprole in rice planting system is essential to predicting its accumulation in rice and potential human exposure. Herein, the uptake process of cyantraniliprole in a hydroponic-rice system was systematically investigated. Results showed that cyantraniliprole was easily absorbed by rice roots via a passive diffusion process through the apoplastic pathway and then translocated upward through the xylem, but its acropetal translocation was limited. Cyantraniliprole in shoots can also be downward translocated through the phloem, although only to a limited extent, showing rice plants' weak phloem movement capacity. Furthermore, cyantraniliprole had a short half-life in sediment-water system and dissipated faster in anaerobic than aerobic conditions. At the equilibrium stage of a sediment-water system, cyantraniliprole is preferentially partitioned to the solid phase. Our study provides a systematic insight into the uptake, translocation and distribution of cyantraniliprole in the rice planting system, which is very helpful for better field cyantraniliprole application and environmental risk assessment. • Using cyantraniliprole in paddy may pose the potential risks to the environment. • Uptake and translocation of cyantraniliprole in rice plants were investigated. • Environmental fate of cyantraniliprole in sediment-water systems was investigated. • Cyantraniliprole is easily absorbed by rice roots and then transported upward. • Cyantraniliprole dissipates fast in sediment-water systems.

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