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生理和代谢组学分析表明,FeO 纳米颗粒可改善三七中的镉和砷毒性。

Physiological and metabolomic analyses reveal that FeO nanoparticles ameliorate cadmium and arsenic toxicity in Panax notoginseng.

机构信息

CAS Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Mengla, 666303, China; Center of Economic Botany, Core Botanical Gardens, Chinese Academy of Sciences, Mengla, 666303, China; University of Chinese Academy of Sciences, Beijing, 100049, China.

Sanya Institute, Hainan Academy of Agricultural Sciences, Sanya, 572025, China; Key Laboratory for Crop Breeding of Hainan Province, Haikou, 571100, China.

出版信息

Environ Pollut. 2023 Nov 15;337:122578. doi: 10.1016/j.envpol.2023.122578. Epub 2023 Sep 17.

Abstract

Heavy metal(loid)-contaminated available arable land seriously affects crop development and growth. Engineered nanomaterials have great potential in mitigating toxic metal(loid) stress in plants. However, there are few details of nanoparticles (NPs) involved in Panax notoginseng response to cadmium (Cd) and arsenic (As). Herein, integrating physiological and metabolomic analyses, we investigated the effects of FeO NPs on plant growth and Cd/As responses in P. notoginseng. Cd/As treatment caused severe growth inhibition. However, foliar application of FeO NPs increased beneficial elements in the roots and/or leaves, decreased Cd/As content by 10.38% and 20.41% in the roots, reduced membrane damage and regulated antioxidant enzyme activity, thereby alleviating Cd/As-induced growth inhibition, as indicated by increased shoot fresh weight (FW), the rootlet length and root FW by 40.14%, 15.74%, and 46.70% under Cd stress and promoted the shoot FW by 27.00% under As toxicity. Metabolomic analysis showed that 227 and 295 differentially accumulated metabolites (DAMs) were identified, and their accumulation patterns were classified into 8 and 6 clusters in the roots and leaves, respectively. FeO NPs altered metabolites significantly involved in key pathways, including amino sugar and nucleotide sugar metabolism, flavonoid biosynthesis and phenylalanine metabolism, thus mediating the trade-off between plant growth and defense under stress. Interestingly, FeO NPs recovered more Cd/As-induced DAMs to normal levels, further supporting that FeO NPs positively affected seedling growth under metal(loid)s stress. In addition, FeO NPs altered terpenoids when the seedlings were subjected to Cd/As stress, thus affecting their potential medicinal value. This study provides insights into using nanoparticles to improve potential active ingredients of medicinal plants in metal(loid)-contaminated areas.

摘要

重金属(类)污染的耕地严重影响作物的生长发育。工程纳米材料在减轻植物有毒金属(类)胁迫方面具有很大的潜力。然而,关于纳米颗粒(NPs)参与三七对镉(Cd)和砷(As)响应的细节很少。在此,我们通过整合生理和代谢组学分析,研究了 FeO NPs 对三七生长和 Cd/As 响应的影响。Cd/As 处理导致严重的生长抑制。然而,叶面喷施 FeO NPs 增加了根部和/或叶片中的有益元素,降低了根部 Cd/As 含量 10.38%和 20.41%,减少了膜损伤并调节了抗氧化酶活性,从而缓解了 Cd/As 诱导的生长抑制,表现在 Cd 胁迫下地上部鲜重(FW)、根长和根 FW 分别增加了 40.14%、15.74%和 46.70%,在 As 毒性下促进了地上部 FW 增加 27.00%。代谢组学分析表明,在根部和叶片中分别鉴定出 227 和 295 个差异积累代谢物(DAMs),其积累模式分别分为 8 和 6 个簇。FeO NPs 显著改变了参与关键途径的代谢物,包括氨基糖和核苷酸糖代谢、类黄酮生物合成和苯丙氨酸代谢,从而在胁迫下调节植物生长和防御之间的权衡。有趣的是,FeO NPs 将更多的 Cd/As 诱导的 DAMs 恢复到正常水平,进一步支持 FeO NPs 对金属(类)胁迫下幼苗生长的积极影响。此外,FeO NPs 在幼苗受到 Cd/As 胁迫时改变了萜类化合物,从而影响了它们的潜在药用价值。本研究为利用纳米颗粒改善受金属(类)污染地区药用植物的潜在活性成分提供了新的思路。

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