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Title: | Physiological responses and tolerance efficiency of Spinacea oleracea L. under hydroponic Ni2+ stress condition. FUDMA Journal of Sciences, 5(4): 30-37 |
Authors: | Abdulsalam, S Dagari, M. S. Lami, H. O. Ugbenya, N. O. Yahaya, M. K Abdulsalami, H |
Keywords: | proline content fresh biomass hydroponic chelate Spinacea oleracea |
Issue Date: | Dec-2021 |
Publisher: | FUDMA Journal of Sciences |
Citation: | Abdulsalam, S., Dagari, M. S., Lami, H. O., Ugbenya, N. O., Yahaya, M. K., & Abdulsalami, H. (2021). Physiological responses and tolerance efficiency of Spinacea oleracea L. under hydroponic Ni2+ stress condition. FUDMA Journal of Sciences, 5(4): 30-37 |
Series/Report no.: | 5;4: 30-37 |
Abstract: | An indoor EDTA and HNO3 enriched environment was created by an injection system with timing and varying concentration control. Spinacea oleracea was selected hydroponic plant exposed to various doses of Ni2+ (0, 1000, 2000 and 4000 mg/L) as Na2EDTA at (0, 500 and 3000 mg/L) and (0,500 and 3000 mg/L) HNO3 in different combinations for 6 days with 10-hour-treatment each day. This study used modified Hoagland nutrient culture in a screen house to provide an ideal environment for comparing the efficiency of chelate-assisted and unchelated phytoextraction of Ni2+ by S. oleracea. Changes in morphological characteristics including leaf damage rate to evaluate morphological resistance to Ni2+ uptake and proline contents was observed. Changes in fresh biomass were significant (p < 0.05) with respect to addition of EDTA and HNO3 at different concentration to different concentrations of Ni2+ compared to unchelated treatments of same concentrations of Ni2+. The Ni2+ induced proline accumulation in shoots increased significantly (P < 0.05) with increasing Ni2+ concentrations. |
URI: | http://repository.futminna.edu.ng:8080/jspui/handle/123456789/28435 |
ISSN: | 2616-1370 |
Appears in Collections: | Plant Biology |
Files in This Item:
File | Description | Size | Format | |
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Physiological responses of S. oleracea.pdf | 1.24 MB | Adobe PDF | View/Open |
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