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富勒醇根据黄瓜植株的铁营养状况改变代谢物的响应。

Fullerenol changes metabolite responses differently depending on the iron status of cucumber plants.

机构信息

Department of Agricultural Chemistry, Saint Petersburg State University, Saint Petersburg, Russia.

Komarov Botanical Institute, Saint Petersburg, Russia.

出版信息

PLoS One. 2021 May 17;16(5):e0251396. doi: 10.1371/journal.pone.0251396. eCollection 2021.

Abstract

The unique properties of carbon-based nanomaterials, including fullerenol, have attracted great interest in agricultural and environmental applications. Iron (Fe) is an essential micronutrient for major metabolic processes, for which a shortage causes chlorosis and reduces the yield of many crops cultivated worldwide. In the current study, the metabolic responses of Cucumis sativus (a Strategy I plant) to fullerenol treatments were investigated depending on the Fe status of plants. Cucumber plants were grown hydroponically, either with [+FeII (ferrous) and +FeIII (ferric)] or in Fe-free (-FeII and -FeIII) nutrient solution, with (+F) or without (-F) a fullerenol supply. Iron species-dependent effects were observed in either Fe-fed or Fe-starved plants, with alteration of metabolites involved in the metabolism of carbohydrates, amino acids, organic acids, lipophilic compounds. Metabolic perturbations triggered by fullerenol in the FeIII-treated plants were in the opposite kind from those in the FeII-treated plants. Whereas in the FeIII-fed plants, fullerenol activated the metabolisation of carbohydrates and amino acids, in the FeII-fed plants, fullerenol activated the metabolisation of lipophilic compounds and repressed the metabolisation of carbohydrates and amino acids. In FeIII-deficient plants, fullerenol stimulated the metabolism of C3 carboxylates and lipophilic compounds while repressing the metabolism of amino acids, hexoses and dicarboxylates, while in FeII-deficient plants, activations of the metabolism of amino acids and dicarboxylates and repression of sterol metabolism by fullerenol were observed. The results indicated that the valence state of Fe sources is of importance for re-programming metabolome responses in cucumber to fullerenol either in Fe-sufficient or Fe-deficient conditions. These investigations are significant for understanding fullerenol interactions and risk assessment in plants with different Fe statuses.

摘要

基于碳的纳米材料的独特性质,包括富勒醇,在农业和环境应用中引起了极大的兴趣。铁(Fe)是主要代谢过程所必需的微量元素,其缺乏会导致植物黄化并降低全球许多作物的产量。在本研究中,根据植物的铁状态,研究了葫芦(策略 I 植物)对富勒醇处理的代谢反应。黄瓜植物在水培中生长,要么在[+FeII(亚铁)和+FeIII(铁)]或在缺铁(-FeII 和-FeIII)营养液中生长,要么有(+F)或没有(-F)富勒醇供应。在铁喂养或铁饥饿的植物中都观察到了铁物种依赖性的影响,改变了参与碳水化合物、氨基酸、有机酸、亲脂性化合物代谢的代谢物。富勒醇在 FeIII 处理的植物中引发的代谢扰动与 FeII 处理的植物中的扰动相反。在 FeIII 喂养的植物中,富勒醇激活了碳水化合物和氨基酸的代谢,而在 FeII 喂养的植物中,富勒醇激活了亲脂性化合物的代谢并抑制了碳水化合物和氨基酸的代谢。在 FeIII 缺乏的植物中,富勒醇刺激了 C3 羧酸和亲脂性化合物的代谢,同时抑制了氨基酸、己糖和二羧酸的代谢,而在 FeII 缺乏的植物中,观察到氨基酸和二羧酸的代谢被富勒醇激活,固醇代谢被抑制。结果表明,铁源的价态对于在铁充足或缺铁条件下重新编程黄瓜对富勒醇的代谢组反应很重要。这些研究对于理解不同铁状态下植物中富勒醇的相互作用和风险评估具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8952/8128279/323bb0c2e722/pone.0251396.g001.jpg

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