4.6 Article

Impact of varying levels of soil salinity on emergence, growth and biochemical attributes of four Moringa oleifera landraces

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PLOS ONE
卷 17, 期 2, 页码 -

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PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pone.0263978

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  1. King Saud University, Riyadh, Saudi Arabia [RSP-2021/173]

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Salinity significantly affects emergence, growth, and biochemical traits of moringa landraces, with lower salinity levels being more favorable. Higher salinity levels hinder root and leaf development. Seedling fresh and dry weights, as well as length, perform best at lower salinity levels. MRB performs better overall compared to MFB and MPB among moringa landraces.
Salinity in soil and water is one of the environmental factors that severely hinder the crop growth and production particularly in arid and semi-arid regions. A pot experiment was conducted to investigate the impact of salinity levels (1.5 dS m(-1), 3.5 dS m(-1), 7.5 dS m(-1) and 11.5 dS m(-1)) on emergence, growth and biochemical traits of moringa landraces under completely randomized design having three replications. Four landraces of Moringa oleifera (Faisalabad black seeded moringa [MFB], Patoki black seeded moringa [MPB], Faisalabad white seeded moringa [MFW] and Rahim Yar Khan black seeded moringa [MRB]) were selected for experimentation. All the salinity levels significantly affected the emergence parameters (time to emergence start, time to 50% emergence, mean emergence time, emergence index and final emergence percentage) of moringa landraces. However, 1.5 dS m(-1) and 3.5 dS m(-1) were found more favorable. Higher salinity levels (7.5 dS m(-1) and 11.5 dS m(-1)) significantly minimized the root surface area, root projected area, root volume and root density as compared to 1.5 dS m(-1), 3.5 dS m(-1). Number of branches, leaves, leaflets and leaf length were also adversely affected by 7.5 dS m(-1) and 11.5 dS m(-1). Maximum seedling fresh and dry weights, and seedling length were recorded at 1.5 dS m(-1) followed by 3.5 dS m(-1). Chlorophyll a and b contents, carotenoids and membrane stability index were also observed highest at salinity level of 1.5 dS m(-1). In case of moringa landraces, MRB performed better regarding emergence attributes, growth parameters, and biochemical analysis followed by MFW as compared to MFB and MPB. Moringa landraces i.e. MRB and MFW were found more tolerant to salinity stress as compared to MFB and MPB.

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