Physiological Characterization of Trait Introgressed Lines of Rice (Oryza sativa L.) for Drought Stress Tolerance

Pooja Bharti
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引用次数: 1

Abstract

Twenty-five lines of rice which were introgressed for root traits and water use efficiency (WUE) were physiologically characterized for drought adaptive traits in the present study. These lines along with the parents were screened for yield and other trait performance under semi-irrigated aerobic cultivation. Leaf temperature was selected as surrogate for root traits and SCMR for WUE. Apart from these traits, yield and yield associated traits, relative water content (RWC), membrane stability index and chlorophyll content were measured. The lower leaf temperature of trait introgressed lines than IR-64 suggests lines have better root biomass which enabled them to maintain its temperature. The yield performance of trait introgressed lines were better than recurrent parent, IR-64 under semi-irrigated aerobic cultivation. It indicates that the introgression of the respective traits onto an elite background, IR-64 improved the efficacy of the introgressed lines under water limited condition. Comparative analysis of introgressed lines for drought adaptive traits suggested G 25, G 4, G 12 and G 18 performed better than other lines. Therefore, these lines introgreseed for drought tolerance traits could be utilized for other breeding programs for further improvement in drought tolerance in rice for the development of elite genotypes.
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水稻抗旱性性状渗入系的生理特性研究
本研究对25个根系性状和水分利用效率(WUE)基因渐渗的水稻品系进行了干旱适应性状的生理表征。对这些品系及其亲本在半灌溉好氧栽培条件下的产量和其他性状进行了筛选。叶片温度代表根系性状,SCMR代表水分利用效率。除这些性状外,还测定了产量及产量相关性状、相对含水量(RWC)、膜稳定性指数和叶绿素含量。性状渐渗系叶片温度较IR-64低,说明其根系生物量较好,能够维持叶片温度。在半灌溉好氧栽培条件下,性状渐渗系的产量表现优于循环亲本IR-64。说明在IR-64这一精英背景下,各性状的渐渗提高了渐渗系在限水条件下的效率。干旱适应性状的比较分析表明,G 25、G 4、G 12和G 18表现较好。因此,这些耐旱性状的杂交株系可用于其他育种项目,进一步提高水稻的耐旱性,培育优良基因型。
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