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丛枝菌根真菌对重金属锑污染植物蜈蚣蕨修复过程中叶片富集锑、形态和蛋白质组学的影响。

Effects of arbuscular mycorrhizal fungi on frond antimony enrichment, morphology, and proteomics in Pteris cretica var. nervosa during antimony phytoremediation.

机构信息

Department of Plant Systems Biology, University of Hohenheim, Stuttgart 70599, Germany.

State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environmental Science, Beijing 100012, China.

出版信息

Sci Total Environ. 2022 Jan 15;804:149904. doi: 10.1016/j.scitotenv.2021.149904. Epub 2021 Aug 26.

Abstract

Pteris cretica var. nervosa is a dominant fern species found in antimony (Sb) mining areas, capable of forming symbiosis with arbuscular mycorrhizal fungi (AMF), especially with those members of the Glomus genus. Despite this fern's relevance and the potential contribution of mycorrhizal symbiosis to phytoremediation, the AMF's impact on P. var. nervosa phytoremediation of Sb remains unknown. Here, we exposed P. var. nervosa to different concentrations of Sb for 6 months. Our results showed that Sb reduced shoot biomass, enlarged the root/shoot ratio, and disrupted the fronds' intracellular structure. AMF inoculation, however, was able to moderate these phenotypic changes and increased the accumulation level of Sb in plants. From a proteomics analysis of this plant's fronds, a total of 283 proteins were identified. Notably, those proteins with catalytic function, carbon fixing and ATP metabolic function were highly enriched. K-means clustering demonstrated protein-changing patterns involved in multiple metabolic pathways during exposure to Sb. Further, these patterns can be moderated by AMF inoculation. Pearson correlations were used to assess the plant biomarkers-soil Sb relationships; This revealed a strong correlation between ribosome alteration and the root/shoot ratio when inoculated with AMF, and a positive correlation between photosynthesis proteins and chlorophyll (SPAD value). Our results indicate AMF could moderate the fronds impairment by maintaining the sufficient protein levels for ribosomal functioning, photosynthesis activity and to counter ROS production. We demonstrate the effective use of AMF associated with P. cretica var. nervosa for Sb phytoremediation and the potential of applying proteomics to better understand the mechanism behind this symbiotic plant physiological response.

摘要

凤尾蕨(Pteris cretica var. nervosa)是一种在锑(Sb)矿区中占主导地位的蕨类植物,能够与丛枝菌根真菌(AMF)形成共生关系,尤其是与 Glomus 属的真菌成员。尽管这种蕨类植物具有相关性,并且共生关系可能对植物修复有贡献,但 AMF 对凤尾蕨(P. var. nervosa)Sb 植物修复的影响尚不清楚。在这里,我们将凤尾蕨(P. var. nervosa)暴露于不同浓度的 Sb 中 6 个月。结果表明,Sb 降低了地上部分的生物量,增加了根/冠比,并破坏了叶片的细胞内结构。然而,AMF 的接种能够减轻这些表型变化,并增加植物对 Sb 的积累水平。通过对该植物叶片的蛋白质组学分析,共鉴定出 283 种蛋白质。值得注意的是,那些具有催化功能、碳固定和 ATP 代谢功能的蛋白质高度富集。K-means 聚类表明,在 Sb 暴露过程中,涉及多个代谢途径的蛋白质变化模式。此外,这些模式可以通过 AMF 的接种来调节。Pearson 相关性用于评估植物生物标志物-土壤 Sb 关系;这表明在接种 AMF 时,核糖体改变与根/冠比之间存在很强的相关性,并且光合作用蛋白与叶绿素(SPAD 值)之间存在正相关。我们的结果表明,AMF 可以通过维持核糖体功能、光合作用活性所需的足够蛋白质水平以及对抗 ROS 产生来减轻叶片损伤。我们证明了与凤尾蕨(P. cretica var. nervosa)相关的 AMF 可有效用于 Sb 植物修复,并且应用蛋白质组学来更好地理解这种共生植物生理响应的机制具有潜力。

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