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      烟草种质抗旱性鉴定及抗旱指标筛选

      Identification of Drought Resistance and Screening of Resistance Indicators in Tobacco

      • 摘要: 为了快速准确地鉴定烟草品种的抗旱性,本研究以6份代表性烟草种质为研究材料,深入系统研究了抗旱性鉴定方法及不同种质的抗旱能力。通过盆栽控制土壤相对含水量构建梯度干旱胁迫模型,系统评价了6个烟草栽培品种在关键生育期对水分胁迫的响应特征,包括生理表型及存活率等,对不同生育期的干旱胁迫条件进行量化,同时运用隶属函数分析法分析筛选简化抗旱评价的生化指标。结果表明,烟草苗期土壤相对含水量20%、还苗期土壤相对含水量10%、旺长期土壤相对含水量为20%、成熟期土壤相对含水量15%进行抗旱能力鉴定能够准确反映烟草品种的抗旱能力,并通过此方法筛选出了中烟14、南江3号、K326共3个品种。通过多个生理和生化指标的隶属函数分析,发现脯氨酸(Pro)与超氧化物歧化酶(SOD)的隶属函数平均值越高,品种抗旱性越强,可作为抗旱品种评价的简化量化指标。综上,本研究系统构建了烟草抗旱性鉴定体系,为烟草抗旱性的快速鉴定与评价提供了科学依据和实用方法,有助于加速抗旱烟草品种的筛选与培育进程。

         

        Abstract: To identify rapidly and accurately the drought resistance of tobacco cultivars, this study used six representative tobacco germplasms to investigate the methods of drought resistance identification and the drought tolerance capacity of different germplasms. A gradient drought stress model was established by controlling the soil relative water content in pot experiments, the response characteristics of six tobacco cultivars to water stress at key growth stages (including physiological phenotypes and survival rates) were evaluated, and drought stress conditions at different growth stages were quantified. Meanwhile, membership function analysis was employed to screen simplified biochemical indicators for drought resistance evaluation. Results showed that identifying drought resistance under the following soil relative water content conditions could accurately reflect the drought resistance of tobacco cultivars: 20% at the seedling stage, 10% at the recovery stage, 20% at the vigorous growth stage, and 15% at the maturation stage. Three drought-resistant cultivars Zhongyan14, Nanjiang3 and K326 were screened out by this method. Higher values of average membership function of proline (Pro) and superoxide dismutase (SOD) were associated with stronger drought resistance in the cultivars. These two indicators can be used as simplified quantitative indices for drought-resistant cultivar evaluation. In conclusion, this study constructed an identification system of tobacco drought resistance, providing a scientific basis and practical method for the rapid identification and evaluation of tobacco drought resistance, thus help accelerate the screening and breeding of drought-resistant tobacco cultivars.

         

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