Evaluation of Fourteen Bread Wheat (Triticum aestivum L.) Genotypes by Observing Gas Exchange Parameters, Relative Water and Chlorophyll Content, and Yield Attributes under Drought Stress
Оценка четырнадцати генотипов хлебной пшеницы (Triticum aestivum L.) по параметрам газообмена, относительному содержанию воды и хлорофилла, а также показателям урожайности в условиях засухи
2021-04-25
SCID: 54.1/zdtfx9r6
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bread wheat genotypesdrought stressgas exchange parametersgrain yieldrelative water content
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Abstract (AI)
Water scarceness is a major threat to wheat productivity under changing climate scenarios, especially in arid and semi-arid regions. However, growing drought-tolerant wheat genotypes could be a sustainable option to enhance wheat productivity under drought stress conditions. The aim of this study was to evaluate the effect of mild to severe drought stress on gas exchange parameters, relative water content, SPAD-chlorophyll value, and yield-related parameters of 14 wheat genotypes being cultivated in arid to semi-arid areas on large scale. The genotypes were grown in earthen pots under three drought levels, namely (1) control-well watered, (2) mild water stress, i.e., 60% water holding capacity, and (3) severe water stress, i.e., 40% water holding capacity. The drought was imposed from the jointing stage to physiological maturity. Drought significantly decreased net photosynthesis, stomatal conductance, relative water contents, 100-grain weight, and grain yield in all genotypes. However, the reduction percentage was different in different genotypes under drought stress compared with well-watered conditions. The highest relative water content (65.2%) was maintained by the genotype Galaxy-2013, followed by AAS-2011 (64.6%) and Johar-2016 (62.3%) under severe drought conditions. Likewise, Galaxy-2013 showed the highest net photosynthesis and stomatal conductance under severe drought conditions. The highest grain yield per plant (6.2 g) and 100-grain weight (3.3 g) was also recorded in Galaxy-2013 under severe drought conditions, while the highest grain yield under well-watered conditions was recorded in Johar-2016, followed by Galaxy-2013. These results suggest that wheat variety Galaxy-2013 could be cultivated extensively to obtain good wheat yield under limited water conditions.
Key Findings
1
Drought stress from jointing to physiological maturity significantly reduced photosynthesis, stomatal conductance, relative water content, 100-grain weight, and grain yield across all 14 wheat genotypes.
2
Galaxy-2013 produced the highest severe-drought grain yield per plant (6.2 g) and 100-grain weight (3.3 g).
3
Genotypes differed in drought-response severity, indicating variability in physiological maintenance and yield stability under water limitation.
4
Johar-2016 had the highest grain yield under well-watered conditions, while Galaxy-2013 showed the strongest overall suitability for limited-water cultivation.
5
Under severe drought, Galaxy-2013 maintained the highest relative water content (65.2%), net photosynthesis, and stomatal conductance.
Research Object
Fourteen bread wheat (Triticum aestivum L.) genotypes cultivated under mild to severe drought stress
Research Subject
Genotypic differences in gas exchange, relative water and chlorophyll content, and yield-related traits under drought stress
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2021-04-25
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