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功能化碳纳米点改善盐碱地土壤质量和番茄耐盐性。

Functional carbon nanodots improve soil quality and tomato tolerance in saline-alkali soils.

机构信息

School of Materials Science and Engineering, Harbin Institute of Technology (Shenzhen), Shenzhen 518055, PR China.

School of Environmental Science and Engineering, Shandong University, Qingdao 266237, PR China.

出版信息

Sci Total Environ. 2022 Jul 15;830:154817. doi: 10.1016/j.scitotenv.2022.154817. Epub 2022 Mar 25.

Abstract

High salinity and alkalinity of saline-alkali soil lead to soil deterioration, the subsequent osmotic stress and ion toxicity inhibited crops growth and productivity. In this research, 8 mg kg and 16 mg kg functional carbon nanodots (FCNs) can alleviate the adverse effects of saline-alkali on tomato plant at both seedling and harvest stages, thanks to their up-regulation effects on soil properties and plant physiological processes. On one hand, FCNs stimulate the plant potential of tolerance to saline-alkali and disease resistance through triggering the defense response of antioxidant system, enhancing the osmotic adjustment, promoting the nutrient uptake, transportation and utilization, and up-regulating the photosynthesis, thereby improve tomato growth and productivity in saline-alkali soils. On the other hand, FCNs application contributes to the improvement of soil physicochemical properties and fertilities, as well as decline soil salinity and alkalinity, which are related to plant growth and fruit quality. This research also focuses on the dose-dependent effects of FCNs on their regulation effects and toxicity to tomato growth under stress or non-stress. These findings recommend that FCNs could be applied as potential amendments to ameliorate the saline-alkali soil and improve the tomato tolerance and productivity in the Yellow River Delta.

摘要

高盐碱性的盐碱土会导致土壤退化,随后的渗透胁迫和离子毒性会抑制作物的生长和生产力。在这项研究中,8 毫克/千克和 16 毫克/千克的功能碳纳米点(FCNs)可以在幼苗期和收获期缓解盐碱对番茄植株的不利影响,这要归功于它们对土壤特性和植物生理过程的上调作用。一方面,FCNs 通过触发抗氧化系统的防御反应,增强渗透调节能力,促进养分吸收、运输和利用,以及上调光合作用,从而提高番茄在盐碱土中的生长和生产力,从而激发植物对盐碱和病害的耐受和抗性潜能。另一方面,FCNs 的应用有助于改善土壤的物理化学性质和肥力,降低土壤的盐度和碱性,这与植物的生长和果实质量有关。本研究还重点研究了 FCNs 对番茄在胁迫和非胁迫下生长的调节作用和毒性的剂量依赖性。这些发现表明,FCNs 可以作为潜在的改良剂,用于改良盐碱土,提高黄河三角洲地区番茄的耐盐性和生产力。

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