Integral effects of brassinosteroids and timber waste biochar enhances the drought tolerance capacity of wheat plant

Author:

Lalarukh Irfana,Amjad Syeda F.,Mansoora Nida,Al-Dhumri Sami A.,Alshahri Abdullah H.,Almutari Mohammad M.,Alhusayni ‏Fatimah S.,Al-Shammari Wasimah B.,Poczai Peter,Abbas Mohamed H. H.,Elghareeb Doaa,Kubra Khadija tul,Abdelhafez Ahmed A.

Abstract

AbstractDrought stress is among the major threats that affect negatively crop productivity in arid and semi-arid regions. Probably, application of some additives such as biochar and/or brassinosteroids could mitigate this stress; however, the mechanism beyond the interaction of these two applications is not well inspected. Accordingly, a greenhouse experiment was conducted on wheat (a strategic crop) grown under deficit irrigation levels (factor A) i.e., 35% of the water holding capacity (WHC) versus 75% of WHC for 35 days while considering the following additives, i.e., (1) biochar [BC, factor B, 0, 2%] and (2) the foliar application of 24-epibrassinolide [BR, factor C, 0 (control treatment, C), 1 (BR1) or 3 (BR2) μmol)]. All treatments were replicated trice and the obtained results were statistically analyzed via the analyses of variance. Also, heat-map conceits between measured variables were calculated using the Python software. Key results indicate that drought stress led to significant reductions in all studied vegetative growth parameters (root and shoot biomasses) and photosynthetic pigments (chlorophyll a, b and total contents) while raised the levels of oxidative stress indicators. However, with the application of BC and/or BR, significance increases occurred in the growth attributes of wheat plants, its photosynthetic pigments, especially the combined additions. They also upraised the levels of enzymatic and non-enzymatic antioxidants while decreased stress indicators. Furthermore, they increased calcium (Ca), phosphorus (P) and potassium (K) content within plants. It can therefore be deduced that the integral application of BR and BC is essential to mitigate drought stress in plants.

Funder

Taif University Research Supporting project

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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