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Conferring drought-tolerant wheat genotypes through morpho-physiological and chlorophyll indices at seedling stage
Institution:1. University of Central Punjab, Department of Botany, Punjab Group of Colleges, Bahawalpur 63100, Pakistan;2. Biotechnology and Germplasm Resources Institute, Yunnan Academy of Agricultural Sciences, Kunming 650205, China;3. Department of Plant Pathology, Bahauddin Zakariya University, Multan, Pakistan;4. College of Agriculture, Bahauddin Zakariya University, Bahadur Sub Campus, Layyah, Pakistan;5. Department of Agricultural Engineering, Khwaja Fareed University of Engineering and Information Technology Rahim Yar Khan;6. Department of Plant Breeding and Genetics, University of Sargodha, Pakistan;7. Department of Biology, College of Science, Tabuk University, Tabuk, Saudi Arabia
Abstract:The decrease in water resources due to the excessive use of water for irrigation purpose and climatic changes represents a serious world-wide threat to food security. In this regards, 50 wheat accessions were analyzed, using completely random factorial design at the seedlings stage under normal and drought stress conditions. Significant variation was detected among all accessions under both conditions. All characters studied showed variations in the mean values in water deficit environments in studied gemplasm at seedling stage. As seedling fresh weight, dry weight, relative water content, cell membrane thermo-stability, chlorophyll a & b were positively associated among themselves under drought conditions which showed the significance of these attribute for water deficit areas in future wheat breeding programs. Based on their performance, five accessions namely Aas-11, Chakwal-86, Pasban-90, Chakwal-97 and Kohistan-97 were selected as drought tolerant and three accessions namely Mairaj-08, Lasani-2008 and Gomal-2008 were selected as drought susceptible genotypes. The choice of wheat accessions based on the characteristics of the seedlings is informal, low-priced and less hassle. Likewise, the seedlings attributes exhibit moderate to high variation with an additive genetics effects on the environments. Best performance accessions under water deficit environment will be beneficial in future wheat breeding schemes and early screening for the attributes suggested in current experiment will be useful for producing best-yielded and drought-tolerance wheat genotypes to sustainable food security.
Keywords:Chlorophyll  Photosynthesis  Wheat  Seedling  Drought
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