湖北农业科学 ›› 2020, Vol. 59 ›› Issue (5): 20-23.doi: 10.14088/j.cnki.issn0439-8114.2020.05.004

• 育种·栽培 • 上一篇    下一篇

密度及肥力对甘蓝型油菜产薹量的影响

马梦雅,张亚涛,闫冠博,黄成,马朝芝   

  1. 国家油菜工程技术研究中心/作物遗传改良国家重点实验室/华中农业大学植物科学与技术学院,武汉 430070
  • 修回日期:2019-08-19 出版日期:2020-03-10 发布日期:2020-06-05
  • 作者简介:马梦雅(1996-),女(回族),河南兰考人,再度本科生,研究方向及肥力对甘蓝菜产薹量的影响,(电话)15199941916(电子信箱)2287862126@qq.com
  • 基金资助:
    国家“现代农业产业技术体系建设” 油菜专项(CARS-0013)

Effects of density, fertility on the bolt yield of Brassica napus L

MA Meng-ya,ZHANG Ya-tao,YAN Guan-bo,HUANG Cheng,MA Chao-zhi   

  1. National Engineering Research Center of Rapeseed/National Key Laboratory of Crop Genetic Improvement/College of Plant Science and Technology,Huazhong Agricultural University,Wuhan 430070,China
  • Revised:2019-08-19 Online:2020-03-10 Published:2020-06-05

摘要: 为了探究油菜品种油蔬两用的适宜栽培方式、筛选出适宜湖北省栽培的油蔬两用早熟油菜(Brassica napus L.)品种,以19个甘蓝型油菜品种、1个白菜薹品种和1个红菜薹品种为材料,研究了密度和肥力对菜薹品种产量的影响。试验设置高密度低肥力(移栽密度为10.8万株/hm2,无外施复混肥)、高密度高肥力(移栽密度为10.8万株/hm2,抽薹前增施1次复混肥,施用量约600 kg/hm2)和低密度高肥力(移栽密度5.4万株/hm2,抽薹前增施1次复混肥,施用量约300 kg/hm2)3种处理。结果表明,在21个品种中,与低密度相比,高密度处理下4个品种增产极显著,8个品种增产显著,6个品种增产不显著,3个品种减产;与低肥力相比,高肥力处理下9个品种增产显著或极显著,7个品种减产显著;6个表现较晚熟的油菜品种平均产薹量在高密度条件下比低密度增加61.21%,在高肥力条件下比低肥力增加49.50%;13个早熟品种平均产薹量在高密度种植下比低密度增加31.53%,而在高肥力条件下与低肥力没有显著变化。由此可知,增加种植密度有助于提高油菜品种菜薹产量,而肥力对菜薹产量的影响因品种而异。

关键词: 甘蓝型油菜(Brassica napus L.), 菜薹, 产量, 密度, 肥力

Abstract: In order to explore the suitable cultivation methods for oil and vegetable dual-use rape(Brassica napus L.) varieties, and screen out early-ripening rape varieties suitable for cultivation in Hubei province, taking 19 cabbage-type rape varieties, 1 Chinese cabbage variety, and 1 Chinese cabbage variety as materials, the effects of density and fertility on the yield of rape cultivars were studied. The experiment set high density and low fertility (transplanting density of 108,000 plants/hm2, no external application of compound fertilizer), high density and high fertility (transplanting density of 108,000 plants/hm2, adding 1 additional compound fertilizer before pumping, the application rate is about 600 kg/hm2) and low density and high fertility (the transplanting density is 54,000 plants/hm2, and the compound fertilizer is added once before pumping, and the application rate is about 300 kg/hm2). The results showed that among the 21 varieties, compared with low density, under high density condition, 4 varieties increased highly significantly, 8 varieties increased significantly, 6 varieties did not increase significantly, and 3 varieties reduced yield; Compared with low fertility, the yield increase of 9 varieties was significant or extremely significant, and the yield reduction of 7 varieties was significant under high fertility condition;the average yield of 6 late-ripening rapeseed varieties increased by 61.21% under high density condition compared with low density, and increased by 49.50% under high fertility conditions compared with low fertility; the average yield of pupae of 13 early-maturing varieties increased by 31.53% under high density condition compared with low density, but there was no significant change between low fertility and high fertility conditions. It can be seen that increasing planting density helps to increase the yield of rape cultivars. The fertility affects the yield of rape cultivars varies from species to species.

Key words: rape (Brassica napus L.), bolt, production, density, fertility

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