Exploring the mechanism of nano-selenium treatment on the nutritional quality and resistance in plum plants

The impact of emerging stressors, such as pesticides and heavy metals, on the nutritional quality, resistance, and antioxidant systems of crops is the subject of intense monitoring. Due to its low toxicity and biocompatibility, nano-selenium (nano-Se) increases antioxidant capacity more effectively...

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Published inEcotoxicology and environmental safety Vol. 284; p. 116957
Main Authors Zhou, Chunran, Miao, Peijuan, Xu, Zhimei, Yi, Xianrong, Yin, Xuebin, Li, Dong, Pan, Canping
Format Journal Article
LanguageEnglish
Published Netherlands Elsevier Inc 01.10.2024
Elsevier
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Summary:The impact of emerging stressors, such as pesticides and heavy metals, on the nutritional quality, resistance, and antioxidant systems of crops is the subject of intense monitoring. Due to its low toxicity and biocompatibility, nano-selenium (nano-Se) increases antioxidant capacity more effectively than selenium (Se). However, the protective mechanism of nano-Se in plum trees is still unknown when subjected to long-term abiotic stress. In this study, nano-Se foliar application enhanced the fruit's fresh weight and diameter and plant growth and development by increasing the content of trace elements (Zn and Se) and amino acids (Try, Phe, Pro, and Arg) in leaves and fruits. Compared to the control, nano-Se treatment dramatically improved the plant's antioxidant system, resulting in a substantial increase in SOD (44.3 %), POD (24.3 %), and CAT (95.6 %) levels. It also increased IAA (118.8 %), total flavonoids (23.0 %), total phenols (15.8 %), rutin (37.7 %), quercetin (146.8 %), and caffeic acid (19.8 %) contents by regulating phenylpropane metabolic pathways. Targeted amino acid analysis indicated that nano-Se biofortification greatly enhanced the levels of His (60.7 %), Ser (123.5 %), Thr (105.7 %), Val (202.1 %), Ile (236.2 %), Leu (84.0 %), Tyr (235.0 %), and Phe (164.7 %). The non-target metabolomics results showed that nano-Se treatment stimulated plum growth and nutrition by boosting phenylpropane metabolism and amino acid production. Therefore, nano-Se can improve the quality and resistance of plums by regulating both the primary and secondary metabolic pathways of plants and enhancing the antioxidant capacity. This investigation provides a reference for extrapolating the positive effects of nano-Se on crop quality to other plant species. [Display omitted] •Nano-Se biofortification increases the fruit's fresh weight and diameter.•Up-regulation of amino acids-related metabolites enhances plum's nutrient levels.•Nano-Se increased plum resistance by boosting phenylpropane metabolism.•Nano-Se treatment substantially improved the plant's antioxidant system.
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ISSN:0147-6513
1090-2414
1090-2414
DOI:10.1016/j.ecoenv.2024.116957