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不同供钾水平下烤烟高钾新品系钾含量的配合力

Combining Ability of Potassium Content in New Flue-cured Tobacco Cultivars of High Potassium Efficiency at Different Potassium Application Levels

  • 摘要: 为筛选出烤烟钾含量高的配合力亲本,采用不完全双列杂交设计研究了6个烤烟钾高效基因型在不同施钾水平下烟叶钾含量的配合力。结果表明:除高钾水平下的下部叶钾含量基因型间一般配合力(GCA)方差未达到显著水平外,其他处理各部位烟叶基因型间钾含量GCA方差均达到显著或极显著水平。基因型间GCA效应有较大差异。施钾120 kg/hm2时,GK8各部位烟叶钾含量的GCA效应均较优,利用潜力较大,而GK3,GK9却较低;施钾360 kg/hm2时,GK2,GK7和GK8各部位烟叶钾含量的GCA效应均较优,GK3,GK5和GK9较低;施钾600 kg/hm2时,GK2,GK9钾含量的GCA效应均较优,GK7,GK8相对较差。3个钾水平间各部位烟叶钾含量特殊配合力(SCA)方差均达到极显著水平。组和不育系(Ms)云烟87×GK9在3个钾水平条件下,各部位烟叶钾含量的SCA效应均为正值,表现相对最好,其次是组合Ms长脖黄×GK3、Ms长脖黄×GK5、Ms101×GK5、Ms多叶型云烟87×GK7和Ms云烟85×GK9。3个供钾水平下,钾含量的广义遗传力均较高,狭义遗传力占广义遗传力比重较小,SCA方差百分比总体大于GCA百分比,说明基因效应对钾含量影响较大,其中非加性效应大于加性效应。

     

    Abstract: To select parent tobacco with combining abilities of high potassium content, the combining abilities of 6 flue-cured tobacco genotypes with high potassium efficiency at different potassium application levels were investigated by incomplete diallel cross method. The results showed that the GCA(general combining ability) variances of potassium content reached significantly or extremely significantly levels among genotypes in leaves from all stalk positions, except in lower leaves at high potassium level. The GCA effect was obviously different among genotypes. At the potassium application level of 120 kg/ha, GK8 showed better GCA effect of potassium contents in leaves from every stalk position in contrast with GK3 and GK9;at the application level of 360 kg/ha, GK2, GK7 and GK8 performed well contrasted with GK3, GK5 and GK9;at the application level of 600 kg/ha, GK2 and GK9 performed better than did GK7 and GK8. For the SCA effect of potassium content, the variance among the three application levels all reached extremely significant level. MsYunyan87×GK9 had a positive SCA effect of potassium content for leaves from every stalk position at different potassium application levels, followed by MsChangbohuang×GK3, MsChangbohuang×GK5, Ms101×GK5, MsleafyYunyan87×GK7 and MsYunyan85×GK9. The broad sense heritability(HB)of potassium content in leaves was high at all potassium application levels, the narrow sense heritability(HN)only accounted for a small part of HB, and the percentage of SCA variances was higher than that of GCA in general, which indicated that gene effect greatly affected the potassium content in tobacco leaves, and non-additive effect was greater than additive effect.

     

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