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首页> 外文期刊>Plant, Cell & Environment >Colloidal suspensions of clay or titanium dioxide nanoparticles can inhibit leaf growth and transpiration via physical effects on root water transport
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Colloidal suspensions of clay or titanium dioxide nanoparticles can inhibit leaf growth and transpiration via physical effects on root water transport

机译:粘土或二氧化钛纳米颗粒的胶体悬浮液可通过对根系水分运输的物理影响来抑制叶片生长和蒸腾作用

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摘要

A laboratory investigation was conducted to determine whether colloidal suspensions of inorganic nanoparticulate materials of natural or industrial origin in the external water supplied to the primary root of maize seedlings (Zea mays L.) could interfere with water transport and induce associated leaf responses. Water flow through excised roots was reduced, together with root hydraulic conductivity, within minutes of exposure to colloidal suspensions of naturally derived bentonite clay or industrially produced TiO2 nanoparticles. Similar nanoparticle additions to the hydroponic solution surrounding the primary root of intact seedlings rapidly inhibited leaf growth and transpiration. The reduced water availability caused by external nanoparticles and the associated leaf responses appeared to involve a rapid physical inhibition of apoplastic flow through nanosized root cell wall pores rather than toxic effects. Thus: (1) bentonite and TiO2 treatments also reduced the hydraulic conductivity of cell wall ghosts of killed roots left after hot alcohol disruption of the cell membranes; and (2) the average particle exclusion diameter of root cell wall pores was reduced from 6.6 to 3.0 nm by prior nanoparticle treatments. Irrigation of soil-grown plants with nanoparticle suspensions had mostly insignificant inhibitory effects on long-term shoot production, and a possible developmental adaptation is suggested.
机译:进行了一项实验室调查,以确定天然或工业来源的无机纳米颗粒材料在供应给玉米幼苗(Zea mays L.)初生根的外部水中的胶体悬浮液是否会干扰水的运输并诱导相关的叶片反应。在暴露于天然来源的膨润土或工业生产的TiO2纳米颗粒的胶态悬浮液中后几分钟之内,流经切根的水流以及根部的水力传导率都降低了。将类似的纳米粒子添加到完整幼苗的根部周围的水培溶液中,可迅速抑制叶片生长和蒸腾作用。由外部纳米颗粒引起的水利用量减少和相关的叶反应似乎涉及通过纳米级根细胞壁孔的质外性流的快速物理抑制,而不是毒性作用。因此:(1)膨润土和TiO2处理还降低了热酒精破坏细胞膜后留下的被杀死根的细胞壁重影的水力传导性; (2)通过先前的纳米颗粒处理,根细胞壁孔的平均颗粒排阻直径从6.6nm减小到3.0nm。用纳米颗粒悬浮液灌溉土壤生长的植物对长期枝条产生的抑制作用微不足道,并建议可能的发育适应性。

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