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中国农学通报 ›› 2019, Vol. 35 ›› Issue (9): 22-27.doi: 10.11924/j.issn.1000-6850.casb18100119

• 林学 园艺 园林 • 上一篇    下一篇

甘白远缘杂交新材料单株产量与农艺性状的相关性分析

郑本川, 张锦芳, 李浩杰, 崔成, 柴靓, 蒋俊, 蒋梁材   

  1. 四川省农业科学院作物研究所
  • 收稿日期:2018-10-30 修回日期:2018-12-15 接受日期:2018-12-24 出版日期:2019-03-26 发布日期:2019-03-26
  • 通讯作者: 蒋梁材
  • 基金资助:
    国家现代农业油菜产业技术体系建设专项资金(CARS-12);主要作物种质资源研究与公共服务(2016NYZ0049);四川省育种攻关 (2016YZGG-4);四川省科技成果转化项目(2017CC0052);四川省油菜创新团队。

Correlation analysis between yield per plant and agronomic traits of Interspecific Hybrid between Brassica napus.L and Brassica japonica Sieb

  • Received:2018-10-30 Revised:2018-12-15 Accepted:2018-12-24 Online:2019-03-26 Published:2019-03-26

摘要: 为了明确甘白远缘杂交新材料各性状对单株产量影响,促进新材料在育种中的应用,对133个远缘杂交BC1F4后代株系的农艺性状,进行了变异分析、相关分析、通径分析和主成份分析。结果表明,远缘杂交后代农艺性状中主序无效角果数变异最大,株高的变异最小。单株产量与株高、分枝高度、主序有效长度、一次分枝数、主序无效角果数、每果粒数和千粒重呈正相关,其中与株高呈极显著关系。影响单株产量的主要性状为株高、分枝高度,二次分枝角果数和主序有效角果数。主成份分析可将相关性状综合为5大类,其中第一、三为产量控制性状,其余依次为株高控制性状、主序控制性状和分枝控制性状。因此,本研究中甘白远缘杂交后代的单株产量主要受株高、分枝高度、二次分枝角果数和主序角果数的影响。本研究结果对于充分利用甘白杂交后代优良性状,选育优良品种提高有价值参考。

关键词: 烟草, 烟草, 氯, 土壤, 施肥

Abstract: The aims are to clarify the effects of characters on the yield per plant of interspecific hybrid between Brassica oleracea L. and Brassica rapa, and to promote the application of new interspecific hybrid in breeding. The agronomic characters of 133 BC1F4 individuals were analyzed with variation analysis, correlation analysis, path analysis and principal component analysis. The results showed that the number of invalid siliques had the maximum variation while plant height had the minimum variation. The yield per plant was positively correlated with plant height, the first branch height, the length of main inflorescence, the number of primary branches, the number of invalid siliques on main inflorescence, seed number per silique and the 1000-seeds weight, among which the yield per plant had significantly positive correlation with plant height. The main affecting factors of yield were: plant height, primary branch height, number of siliques on secondary branch and number of efficient siliques on main inflorescence. Moreover, the principal component analysis sorted the characters into 5 categories: the 1st and 3rd category controlled the yield and the other three were responsible for plant height, main inflorescence-controlling characters and branch-controlling characters, respectively. Thus, the yield per plant of interspecific hybrid between Brassica oleracea L. and Brassica rapa was mainly affected by plant height, the first primary branch height, the number of siliques of the secondary branch and the number of siliques on main inflorescence.