Natural sourced and non-toxic hybrid materials for boosting the growth of lettuce in a hydroponic system

Nanostructured hybrid materials, fabricated by combining nanosilica (n-S) obtained from rice husk and oligochitosan (OC) obtained from the shrimp shell, are environmentally friendly substances that can applied in green agriculture. In this study, 50 mg/L of nanostructured hybrid materials were appli...

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Veröffentlicht in:Plant physiology and biochemistry 2023-04, Vol.197, p.107652-107652, Article 107652
Hauptverfasser: Nguyen, My Xuyen T., Nguyen, Ngoc Thuy, Dinh, Hai Nhi H., Nguyen, Nguyen Ngan, Tran, Thi Thanh Van, Hoang, DongQuy
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Sprache:eng
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Zusammenfassung:Nanostructured hybrid materials, fabricated by combining nanosilica (n-S) obtained from rice husk and oligochitosan (OC) obtained from the shrimp shell, are environmentally friendly substances that can applied in green agriculture. In this study, 50 mg/L of nanostructured hybrid materials were applied on lettuce (Lactuca sativa L. var. longifolia) at different stages of its growth. Most of the hybrid-material-treated lettuce plants showed better growth than that of the control. The most suitable ages for applying the hybrid material to the lettuce are the ages of three weeks (H3W1) and four weeks (H4W1) to stimulate their growth. The longest leaf of the H3W1-treated lettuce increased by 7.14%, its fresh weight by 8.51%, the numbers of leaves by 4.67%, and the content of total chlorophyll by 24.89% compared with those of the control lettuce. The longest leaf of H4W1 increased by 9.52%, its fresh weight by 26.27%, the number of leaves by 9.52%, and the total chlorophyll content by 52.87% compared with those of the control lettuce. Hence, the hybrid material could be used as a green agrochemical with a great potential in modern agriculture. It can help replace and reduce the use of toxic chemical fertilizers and plant-protection products currently used on the market. [Display omitted] •The conceptual hybrid materials synthesized by using rice husk and shrimp shelves extracts.•Developing simple and efficient processes to convert agriculture (by)products into functional materials.•Advanced functional hybrid materials for boosting the growth of lettuce in a hydroponic system.•Replacing and reducing the use of toxic chemical fertilizers and plant-protection products.•Novel platform for further applications in green agriculture and biomaterial fields.
ISSN:0981-9428
1873-2690
DOI:10.1016/j.plaphy.2023.107652