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Assessment of grain yield indices in response to drought stress in wheat (Triticum aestivum L.)

机译:小麦对干旱胁迫的籽粒产量指标评估(Triticum aestivum L.)

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摘要

Drought stress constricts crop production in the world. Increasing human population and predicted temperature increase owing to global warming will lead ruthless problems for agricultural production in near future. Hence, use of high yielding genotypes having drought tolerance and scrutinize of drought sensitive local cultivars for making them tolerant may be the proficient approaches to cope its detrimental outcomes. The current study was executed during 20015–2016 and 2016–2017 in field using randomized complete block design under factorial arrangements on 50 wheat genotypes for exploring their sensitivity and tolerance against drought. Some of the attributes of grain yield and drought tolerance indices were recorded. Grain yield showed negative correlations with tolerance index (TOL), drought index (DI) and stress susceptibility index (SSI) while positive correlation with mean productivity (MP) and geometric mean productivity (GMP) under drought condition. These findings depicted that tolerant genotypes could be chosen by high MP and GMP values and low SSI and TOL values. Based on the results, genotypes GA-02, Faisalabad-83, 9444, Sehar-06, Pirsabak-04 and Kohistan-97 were more tolerant and recognized as suitable for both normal and drought conditions. Genotypes of Chenab-00, Kohsar-95, Parwaz-94 and Kohenoor-83 confirmed more sensitive due to high grain yield loss under drought stress.
机译:干旱胁迫限制了世界范围的农作物生产。由于全球变暖而导致的人口增加和温度预计升高将在不久的将来给农业生产带来无情的问题。因此,使用具有干旱耐受性的高产基因型并仔细研究干旱敏感的本地品种使其具有耐受性可能是应对其不利结果的有效方法。本研究是在20015–2016年和2016–2017年间在田间进行的,采用基于因子安排的随机完整区组设计对50个小麦基因型进行研究,以探索其对干旱的敏感性和耐受性。记录了谷物产量和耐旱指数的一些属性。干旱条件下,籽粒产量与耐性指数(TOL),干旱指数(DI)和胁迫敏感性指数(SSI)呈负相关,与平均生产力(MP)和几何平均生产力(GMP)呈正相关。这些发现表明,可以通过高MP和GMP值以及低SSI和TOL值来选择耐受的基因型。根据结果​​,GA-02,Faisalabad-83、9444,Sehar-06,Pirsabak-04和Kohistan-97的基因型更具耐受性,并被认为适合于正常和干旱条件。 Chenab-00,Kohsar-95,Parwaz-94和Kohenoor-83的基因型证实更敏感,原因是干旱胁迫下谷物产量损失高。

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