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Interactions between engineered nanomaterials and agricultural crops: implications for food safety*

机译:工程纳米材料与农作物之间的相互作用:食品安全的影响*

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engineered nanomaterials (ENMs) are being discharged into the environment and to agricultural fields, with unknown impacts on crop species. In this paper, we review the literature on ENMs uptake, translocation/distribution, and generational transmission in various crop species, as well as potential material trophic transfer. Previous studies reveal that ENM-exposed crops exhibit adaptive processes in response to stress, including endocytosis/endosome activities, production of antioxidant enzymes, regulation of genes related to cell division/extension and membrane transport. Some agronomic traits of crops are compromised during the adaption response, including photosynthesis, fruit yields, nutritional quality and nitrogen fixation. Cultivation of crops in ENMs-contaminated environments has unknown implications for food safety and quality. Notably, mechanisms underlying ENMs phytotoxicity and bioavailability are unclear. Additional investigations focused on developing novel techniques for in vivo identification/characterization of ENMs are critically needed. Given the abundance of uncertainty in the literature, it is clear that more research is urgently needed in the area of ENMs-crop interactions; only then can one accurately assess exposure, risk, and overall implications for food safety and also enable guidance development for the sustainable implementation of nanotechnology in agriculture and food production/manufacturing.
机译:工程化纳米材料(ENM)被排入环境和农业领域,对作物物种的影响未知。在本文中,我们在各种作物物种中审查了eNM吸收,易位/分布和世代传播的文献,以及潜在的材料营养转移。以前的研究表明,恩白暴露作物响应应力,包括内吞炎/内体活动,抗氧化酶的产生,与细胞分裂/延伸和膜运输有关的基因调节。在适应响应期间,一些农业作物的农艺性状受到损害,包括光合作用,水果产量,营养质量和氮固定。搪瓷环境中作物的种植对食品安全和质量有不明的影响。值得注意的是,益于植物植物毒性和生物利用度的潜在机制尚不清楚。额外的调查专注于开发用于在体内识别/表征eNMS中的新颖技术。鉴于文献中的不确定性丰富,很明显,在enms-作物相互作用领域迫切需要更多的研究;然后只能准确评估食品安全的暴露,风险和总体影响,并为农业和食品生产/制造业的纳米技术可持续实施提供指导发展。

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