Use of physiological indices as a screening technique for drought tolerance in oilseed Brassica species

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Abstract

Plants of 24 genotypes of four Brassica species (B. campestris, B. carinata, B. juncea, B. napus) were grown on stored soil water in a sandy loam soil under field conditions. Water use was recorded throughout the growing season. Leaf water potential (ψ(w)), solute potential (ψ(a)), relative water content (RWC), turgor potential (ψ(p)), osmotic adjustment (reciprocal of slope b where in RWC = a - b. ln ψ(g)), leaf diffusive conductance (K1), the difference between canopy and air temperature (T(c)-T(a)) and water loss from excised leaves (WLL) were measured at siliqua formation. Genotypes with higher osmotic adjustment maintained higher ψ(p) and K1, and lower canopy temperatures and WLL, than genotypes with lower osmotic adjustment (when decreasing soil water supply caused a lowering of RWC and ψ(w)). The former genotypes also extracted more water from deeper soil layers (90-180 cm). The decline in ψ(s) with decrease in RWC and ψ(w) was greater for high osmotic adjustment genotypes than for low osmotic adjustment genotypes. Seed yield was positively associated with K1, 1/b and the degree of leaf cooling, and negatively with WLL. However, since T(c)-T(a) and WLL are easier to measure than 1/b and K1, T(c)-T(a) and WLL measured around mid-day at the siliqua formation stage could be used to screen large numbers of germplasm lines of Brassica species for drought tolerance under field conditions.

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Kumar, A., & Singh, D. P. (1998). Use of physiological indices as a screening technique for drought tolerance in oilseed Brassica species. Annals of Botany, 81(3), 413–420. https://doi.org/10.1006/anbo.1997.0573

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