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    王勇, 李廷轩, 陈光登, 杨欢, 孟霖. 不同钾基因型烟草钾吸收和生理生化特性研究[J]. 中国烟草科学, 2017, 38(5): 56-61. DOI: 10.13496/j.issn.1007-5119.2017.05.010
    引用本文: 王勇, 李廷轩, 陈光登, 杨欢, 孟霖. 不同钾基因型烟草钾吸收和生理生化特性研究[J]. 中国烟草科学, 2017, 38(5): 56-61. DOI: 10.13496/j.issn.1007-5119.2017.05.010
    WANG Yong, LI Tingxuan, CHEN Guangdeng, YANG Huan, MENG Lin. Study on K Absorption and Physiological and Biochemical Characteristics of Different K-efficiency Tobacco Genotypes[J]. CHINESE TOBACCO SCIENCE, 2017, 38(5): 56-61. DOI: 10.13496/j.issn.1007-5119.2017.05.010
    Citation: WANG Yong, LI Tingxuan, CHEN Guangdeng, YANG Huan, MENG Lin. Study on K Absorption and Physiological and Biochemical Characteristics of Different K-efficiency Tobacco Genotypes[J]. CHINESE TOBACCO SCIENCE, 2017, 38(5): 56-61. DOI: 10.13496/j.issn.1007-5119.2017.05.010

    不同钾基因型烟草钾吸收和生理生化特性研究

    Study on K Absorption and Physiological and Biochemical Characteristics of Different K-efficiency Tobacco Genotypes

    • 摘要: 采用水培试验在不同钾水平下研究了不同钾效率基因型烟草吸钾及其生理生化特性。结果表明,不同供钾水平下,烟草钾高效基因型生物量及钾含量均显著高于钾低效基因型,基因型间生物量最大差异为2.56倍;钾高效基因型叶绿素含量在不同供钾水平下,均无显著差异,且均高于钾低效基因型;不同供钾水平下,钾高效基因型的SOD、NR、INV活性均显著高于钾低效基因型,低钾条件下,钾高效基因型SOD、INV活性升高幅度均大于钾低效基因型,而钾低效基因型NR活性降低幅度大于钾高效型;不同供钾水平下,钾高效基因型烟草根系活力、H+分泌能力均显著高于钾低效型,各基因型根系活力随着供钾水平降低而升高,H+分泌能力随着供钾水平降低而降低。正常供钾条件下,不同钾基因型根系吸收面积无显著差异,低钾条件下,钾高效基因型烟草根系吸收面积显著高于钾低效基因型。综上所述,不同钾基因型间钾素吸收生理生化特性差异显著,钾高效基因型烟草材料具有更强应对低钾胁迫的响应机制。

       

      Abstract: By hydroponic experiments, the K absorption properties and physio-biochemical characteristics of K-efficient tobacco genotypes grown under normal or reduced K supply conditions were studied. The results showed that biomass and K content of the K-efficient tobacco genotypes were largely higher than that of K-inefficient genotypes under different K levels, with the biggest difference in biomass between two genotypes being 2.56 times. The chlorophyll contents of the K-efficient genotypes showed no difference but were significantly higher than that of K-inefficient genotypes under different K levels. SOD, Nr and INV activities of the K-efficient genotypes were also higher than that of the K-inefficient genotypes. The increase of SOD and INV activities of K-inefficient genotype was more than that of K-efficient genotypes with the reduction of K supply, while Nr activity of K-inefficient genotype decreased less. Under different K levels, the root activity and H+ secreting ability in K-efficient genotype were also remarkably higher than that of K-inefficient genotypes. Along with the reduction of K supply, root activity in both genotypes were increased, while H+ secretion capacity decreased. The root absorb areas of different genotypes under the normal K level showed no significant difference. However, root absorb areas of K-efficient tobacco genotype were significantly higher than that of K-inefficient genotypes under lower K application rate. In summary, great differences exist in K absorbing properties and physio-biochemical characteristics between K-efficient and K-inefficient genotypes. K-efficient tobacco genotypes have stronger mechanisms of response to low K stress.

       

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