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NaCl 对同时暴露于镉和锌毒性的海蓬子幼苗的影响。

NaCl impact on Kosteletzkya pentacarpos seedlings simultaneously exposed to cadmium and zinc toxicities.

机构信息

Groupe de Recherche en Physiologie végétale, Earth and Life Institute-Agronomy (ELI-A), Université catholique de Louvain, 5 Bte 7.07.1 Place Croix du Sud, 1348, Louvain-la-Neuve, Belgium.

School of Environment, Nanjing Normal University, Nanjing, 210023, China.

出版信息

Environ Sci Pollut Res Int. 2018 Jun;25(18):17444-17456. doi: 10.1007/s11356-018-1865-x. Epub 2018 Apr 14.

Abstract

Data regarding NaCl impact on halophyte plant species exposed to a polymetallic contamination remain scarce. Seedlings of the salt marsh species Kosteletzkya pentacarpos were simultaneously exposed to cadmium (10 μM) and zinc (100 μM) in the absence or presence of 50 mM NaCl. Heavy metal exposure reduced plant growth and increased Cd and Zn concentrations in all organs. Cd and Zn accumulation reduced net photosynthesis in relation to stomatal closure, decreased in chlorophyll concentration and alteration in chlorophyll fluorescence-related parameters. Salinity reduced Cd and Zn bioaccumulation and translocation, with a higher impact on Cd than Zn. It mitigated the deleterious impact of heavy metals on photosynthetic parameters. NaCl reduced the heavy metal-induced oxidative stress assessed by malondialdehyde, carbonyl, and HO concentration. Subcellular distribution revealed that Cd mainly accumulated in the cell walls, but NaCl increased it in the cytosol fraction in the leaf and in the metal-rich granule fraction in the roots. It had no impact on Zn subcellular distribution. The additional NaCl contributed to a higher sequestration of Cd on phytochelatins and stimulated glutathione synthesis. The positive impact of NaCl on K. pentacarpos response to polymetallic pollution made this species a promising candidate for revegetation of heavy metal-contaminated salt areas.

摘要

有关暴露在多金属污染下的盐生植物物种的 NaCl 影响的数据仍然很少。盐沼物种海蓬子的幼苗同时暴露在 10 μM 的镉和 100 μM 的锌中,有无 50 mM 的 NaCl。重金属暴露降低了植物的生长,并增加了所有器官中的 Cd 和 Zn 浓度。Cd 和 Zn 的积累降低了净光合作用,与气孔关闭有关,降低了叶绿素浓度,并改变了叶绿素荧光相关参数。盐度降低了 Cd 和 Zn 的生物积累和转运,对 Cd 的影响大于 Zn。它减轻了重金属对光合作用参数的有害影响。NaCl 通过丙二醛、羰基和 HO 浓度降低了重金属诱导的氧化应激。亚细胞分布表明,Cd 主要积累在细胞壁中,但 NaCl 增加了叶片细胞溶质部分和根中富含金属的颗粒部分的 Cd 含量。它对 Zn 的亚细胞分布没有影响。额外的 NaCl 有助于将更多的 Cd 螯合到植物螯合肽上,并刺激谷胱甘肽的合成。NaCl 对海蓬子对多金属污染的反应的积极影响使该物种成为受重金属污染盐区植被恢复的有前途的候选者。

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