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中国农学通报 ›› 2018, Vol. 34 ›› Issue (5): 42-48.doi: 10.11924/j.issn.1000-6850.casb17040135

所属专题: 油料作物 园艺

• 林学 园艺 园林 • 上一篇    下一篇

甘蓝型杂交油菜主花序长度与植株性状的相关分析

戴祥来,赵继献,向阳,任廷波,程国平   

  1. 贵州省油菜研究所,贵州省油菜研究所,贵州省油菜研究所,贵州省油菜研究所,贵州省油菜研究所
  • 收稿日期:2017-04-21 修回日期:2018-01-17 接受日期:2017-06-12 出版日期:2018-02-26 发布日期:2018-02-26
  • 通讯作者: 赵继献
  • 基金资助:
    贵州省现代农业产业技术体系建设项目“油菜产业技术体系建设”(GZCYTX2013-0802);贵州省农科院自主创新科研专项“高产优质高效 油菜分子标记育种技术研究与新种质创新”[黔农科院自主创新科研专项字(2014)014 号];贵州省科技计划项目“高油酸甘蓝型油菜种质创新及利用” [黔科合支撑(2016)2556 号];贵州省农业科学院院专项“甘蓝型油菜黄籽双低高油酸材料创新”[黔农科院院专项(2015)16 号];贵州省农业科学院院 专项“甘蓝型油菜半矮秆种质资源创制”[黔农科院院专项(2015)17 号]。

Hybrid Brassica napus: Correlation Analysis of Main Inflorescence Length and Plant Traits

  • Received:2017-04-21 Revised:2018-01-17 Accepted:2017-06-12 Online:2018-02-26 Published:2018-02-26

摘要: 为研究甘蓝型杂交油菜主花序长度与植株性状间的相关关系,以649 个甘蓝型杂交油菜组合进行田间试验、室内考种及相关分析。结果表明:甘蓝型杂交油菜主花序长度平均为45.67 cm,变幅范围为(28.00~66.65 cm),且长主花序材料很少;主花序长度的变异系数较小,遗传力较高,不易受坏境条件的影响,适合早代选择;主花序长度与株高(r=0.8262)、主花序角果数(r=0.7804)、单株角果数(r=0.7466)、一次分枝数(r=0.4680)、主花序角果长度(r=0.3164)、角粒数(r=0.2322)均呈极显著正相关,主花序长度与有效分枝位及千粒重呈不显著正相关,单株产量与单株角果数、主花序角果数、主花序长度、株高、一次分枝数均呈极显著正相关,主花序角果长度与角粒数、千粒重呈极显著正相关;利用相关性分析可知,选育长主花序的材料,能有效提高株高、主花序角果数、单株角果数、一次分枝数、主花序角果长度、角粒数,从而达到提高油菜产量的目的。结合当前直播或机播油菜高密植生产要求,应当选育主序长、主花 序角果数多、角果较长、单株产量高的材料。

关键词: 纳米碳, 纳米碳, 玉米, 氮素积累量, 氮肥利用率, 产量

Abstract: The paper aims to study the correlation between of main inflorescence length and plant traits of hybrid Brassica napus, 649 combinations of Brassica napus were used for field experiment, laboratory test and correlation analysis. The results showed that: the average length of the main inflorescence of hybrid Brassica napus was 45.67 cm, the range was 28.00-66.65 cm, and there was few long main inflorescence. The variation coefficient of the length of the main inflorescence was small, the heritability was high, and it was not easy to be affected by the environment and suitable for early generation selection. The main inflorescence length showed significantly positive correlations with plant height (r=0.8262), main inflorescence pod (r=0.7804), pods per plant (r=0.7466), first branch number (r=0.4680), main inflorescence pod length (r=0.3164) and seeds pod (r= 0.2322), and had no significantly positive correlation with effective branch position and 1000-grain weight. The yield per plant showed significantly positive correlations with pods per plant, main inflorescence pod, main inflorescence length, plant height and first branch number. The main inflorescence pod length showed significantly positive correlations with seeds pod and 1000-grain weight. Using the correlation analysis, it could be seen that the selection of long main inflorescence material could effectively improve the plant height, main inflorescence pod, pods per plant, first branch number, main inflorescence pod length and seeds pod, so as to achieve the purpose of raising rape production. Considering current rapeseed production requirements of direct seeding or mechanical sowing with high density, materials of long main inflorescence length, more main inflorescence pod number, longer pod, and high yield per plant should be bred.

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