Effect of Polyethylene Glycol Induced Water Stress on Germination and Seedling Growth of Wheat ( Triticum aestivum )

MS Rana, M. Hasan, M. Bahadur, MR Islam
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引用次数: 14

Abstract

The performance of twenty wheat genotypes under Polyethylene Glycol (PEG) induced water stress during germination and early seedling growth stages were tested under three levels of water potential i) Control (Tap water), ii) -2 bars and iii) -4 bar at the Crop Physiology and Ecology Laboratory of Hajee Mohammad Danesh Science and Technology University, Dinajpur during September 2014 to October 2014. Rate of germination and vigor index of all wheat genotypes were delayed with the increment of water stress induced by PEG. Shoot and root lengths and seedling dry weight of 10 days old seedlings were found to be reduced due to the increment of water stress. However, the degree of reduction of these parameters with the increment of water stress was not similar for all wheat genotypes. Stress tolerance index (STI) based on seedling dry weight indicated a wide difference in stress tolerance among the wheat genotypes. At moderate water deficit stress, BARI Gom 25, E 34, E 28 and BAW 1170 showed more stress tolerance and the wheat genotypes- Sourav, E 23 and BAW 1140 showed greater stress sensitivity than the other wheat genotypes. At higher water deficit stress, BARI Gom 25, BARI Gom 28, E 28 and BAW 1170 showed more stress tolerance and the wheat genotypes- Satabdi, Sourav, BARI Gom 26, E 23, E 38, E 24, BAW 1163, BAW 1140 and BAW 1151 showed greater stress sensitivity than the others. Considering both moderate and high water deficit stress, BARI Gom 25, E 28 and BAW 1170 were found as tolerant and Sourav, E 23 and BAW 1140 were found as water deficit stress sensitive wheat genotypes. The Agriculturists 2017; 15(1) 81-91
聚乙二醇诱导水分胁迫对小麦发芽和幼苗生长的影响
2014年9月至2014年10月,在diajpur Hajee Mohammad Danesh科技大学作物生理与生态实验室,对20个基因型小麦在聚乙二醇(PEG)诱导的水分胁迫下萌发和幼苗生长早期的表现进行了3种水势水平(i)对照(自来水)、ii) -2 bar和iii) -4 bar的试验。所有小麦基因型的发芽率和活力指数均随PEG诱导的水分胁迫的增加而延迟。由于水分胁迫的增加,10日龄幼苗的茎长、根长和幼苗干重都有所减少。然而,这些参数随水分胁迫的增加而降低的程度在所有小麦基因型中并不相同。基于幼苗干重的抗逆性指数(STI)表明,小麦基因型在抗逆性方面存在较大差异。在中等水分亏缺胁迫下,BARI Gom 25、e34、e28和BAW 1170表现出较强的抗逆性,而souav、e23和BAW 1140表现出较强的抗逆性。在高水分亏缺胁迫下,BARI Gom 25、BARI Gom 28、e28和BAW 1170表现出较强的抗逆性,而Satabdi、Sourav、BARI Gom 26、e23、e38、e24、BAW 1163、BAW 1140和BAW 1151表现出较强的抗逆性。在中度和重度水分亏缺胁迫条件下,BARI Gom 25、e28和BAW 1170是耐水分亏缺胁迫的小麦基因型,而souav、e23和BAW 1140是水分亏缺胁迫敏感型。农学家2017;15 (1) 81 - 91
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