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氮形态对镉诱导毒性的影响。

Influence of nitrogen speciation on Cd-induced toxicity in .

机构信息

School of Civil and Architectural Engineering, Nanchang Institute of Technology, Nanchang, China.

Jiangxi Provincial Key Laboratory for Restoration of Degraded Ecosystems and Watershed Ecohydrology, Nanchang Institute of Technology, Nanchang, China.

出版信息

Int J Phytoremediation. 2024 Nov;26(13):2127-2136. doi: 10.1080/15226514.2024.2377225. Epub 2024 Jul 17.

Abstract

Nitrogen (N) plays an important role in plant growth and developmental metabolic processes, research on nitrogen speciation regulating Cd accumulation in duckweed is still limited. In this study, the effects of three nitrogen sources (NHCl, Ca(NO) and NHNO) on the growth, Cd accumulation, and photosynthetic parameters of ( ) were analyzed. The results showed that Cd enrichment in was significantly reduced ( 0.05) with different nitrogen treatments compared to the control (CK). Ammonium nitrogen (NH-N) is more conducive to the accumulation of Cd in than nitrate nitrogen (NO-N). The sum of the cell wall components and soluble components of Cd in the NH-N treatment group was greater than that in the NO-N treatment group. The proportion of F extracts in the NH-N treatment group was greater than in the NO-N treatment group. NO-N led to a greater reduction in photosynthetic pigment content than NH-N. Overall, applying different forms of nitrogen can alleviate Cd toxicity in , and the detoxification effect of the NH-N treatment is stronger than that of NO-N treatment. This study will provide theoretical and practical support for the application of duckweed in Cd phytoremediation even in eutrophic aquatic environments.

摘要

氮(N)在植物生长和发育代谢过程中起着重要作用,但关于氮形态调节浮萍积累 Cd 的研究仍然有限。本研究分析了三种氮源(氯化铵、硝酸钙和硝酸铵)对浮萍生长、Cd 积累和光合作用参数的影响。结果表明,与对照(CK)相比,不同氮处理显著降低了浮萍对 Cd 的富集(P<0.05)。与硝态氮(NO-N)相比,铵态氮(NH-N)更有利于 Cd 在浮萍中的积累。NH-N 处理组的细胞壁成分和可溶性成分中 Cd 的总和大于 NO-N 处理组。NH-N 处理组的 F 提取物比例大于 NO-N 处理组。与 NH-N 相比,NO-N 导致光合色素含量的降低更大。总的来说,施加不同形式的氮可以减轻 Cd 对浮萍的毒性,NH-N 处理的解毒效果强于 NO-N 处理。本研究将为浮萍在 Cd 植物修复中的应用提供理论和实践支持,即使在富营养化的水生环境中也是如此。

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