Effect of irrigation scheduling on some characteristics of Barley under water deficit conditions

dc.contributor.authorSafdari, Seyyedeh Fahimeh
dc.contributor.authorFarahani, Saeideh Maleki
dc.contributor.authorEskandari, Ali
dc.contributor.authorNezhad, Asghar Abbas
dc.date.accessioned2024-11-23T10:42:59Z
dc.date.available2024-11-23T10:42:59Z
dc.date.issued2018-11-06
dc.description.abstractA field experiment was conducted during 2016-2017 to investigate the effect of irrigation scheduling on three barley cultivars viz. Nosrat, Roudasht and Behrokh under water deficit stress conditions. Irrigation treatment was applied based on the maximum allowable depletion of available soil water. Treatment levels comprised of irrigation scheduled at: (I1) 30%; (I2) 60%; and (I3) 90% depletion of available soil water which was applied after flowering stage. Results showed that all traits were significantly reduced with increase in the severity of stress due to reduction in the availability of water. However, no significant reduction was observed for cultivar Nosrat regarding grain yield, biological yield and the number of spikes per plant between I2 and I3 treatment levels. Estimation of production functions with respect to yield contributing traits revealed that, at a severe drought stress, the order of the importance of yield-contributing traits was as: harvest index>biomass>spikes per plant>grains per spike. Based on the results, to achieve the highest grain yield and grain total protein content, irrigation should be scheduled at a maximum allowable depletion equal to 30% of available soil water. Nevertheless, an economic production can be achieved with a delayed irrigation.
dc.identifier.issn1314-6246
dc.identifier.urihttps://doi.uni-plovdiv.bg/handle/store/418
dc.language.isoen
dc.publisherPlovdiv University Press “Paisii Hilendarski”
dc.subjectdrought stress
dc.subjectgrain yield
dc.subjectproduction function
dc.subjectstandardized regression
dc.titleEffect of irrigation scheduling on some characteristics of Barley under water deficit conditions
dc.typeArticle
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