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N-Fertilizer (Urea) Enhances the Phytoextraction of Cadmium through Solanum nigrum L

Bibliographic Data

ID15475893
AuthorsArosha Maqbool (Government College University, Faisalabad), Shafaqat Ali (0000-0002-3773-5196, China Medical University, corresponding author), Muhammad Rizwan (0000-0002-5332-9980, Government College University, Faisalabad), Muhammad Arif (0000-0003-0298-2135), Muhammad Saleem Arif (0000-0003-1247-0539, Government College University, Faisalabad), Tahira Yasmeen (0000-0001-6479-1567, Government College University, Faisalabad), Muhammad Riaz (0009-0009-5579-2491, Government College University, Faisalabad), Afzal Hussain (0000-0002-6275-5375, University of Lahore), Shamaila Noreen (Government College University, Faisalabad), Mohamed M Abdel‐Daim (0000-0002-4341-2713, Suez Canal University), Saad Alkahtani (0000-0001-7381-5110, King Saud University)
Year2020
Volume17
Issue11
Pages3850-3850
Publication date2020-05-29
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueInternational Journal of Environmental Research and Public Health (JOURNAL)
Journal identifiersISSN: 1661-7827 • E-ISSN: 1660-4601
PublisherMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph17113850
PMID32485810
OpenAlexW3031771469
LanguageEN
References cited51

Heavy metal contamination is currently a major environmental concern, as most agricultural land is being polluted from municipal discharge. Among various other pollutants, cadmium (Cd), one of the most harmful heavy metals, enters into the food chain through the irrigation of crops with an industrial effluent. In the present study, a pot experiment was designed to assess the effect of different nitrogen (N)-fertilizer forms in the phytoremediation of Cd through Solanum nigrum L. Two types of N fertilizers (NH 4 NO 3 and urea) were applied to the soil in different ratios (0:0, 100:0, 0:100, and 50:50 of NH 4 NO 3 and urea, individually) along with different Cd levels (0, 25, and 50 mg kg -1 ). The plants were harvested 70 days after sowing the seeds in pots. Cadmium contamination significantly inhibited the growth of leaves and roots of S. nigrum plants. Cadmium contamination also induced oxidative stress; however, the application of N-fertilizers increased the plant biomass by inhibiting oxidative stress and enhancing antioxidants' enzymatic activities. The greatest plant growth was observed in the urea-treated plants compared with the NH 4 NO 3 -treated plants. In addition, urea-fed plants also accumulated higher Cd concentrations than NH 4 NO 3 -fed plants. It is concluded that urea is helpful for better growth of S. nigrum under Cd stress. Thus, an optimum concentration of N-fertilizers might be effective in the phytoremediation of heavy metals through S. nigrum

Agronomy · Biology · Cadmium · Fertilizer · Heavy metals · Phytoremediation · Solanum nigrum · Urea · Chemistry · Heavy metals in environment · Plant responses to water stress · Plant Stress Responses and Tolerance · Biochemistry · Environmental Chemistry · Horticulture

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