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中国农学通报 ›› 2015, Vol. 31 ›› Issue (15): 180-186.doi: 10.11924/j.issn.1000-6850.casb14110156

所属专题: 水稻

• 资源 环境 生态 土壤 气象 • 上一篇    下一篇

化感稻田间化感抑草率的稳定性研究

覃凤玲,彭海峰,饶佳兴,周均华,何玉琼,李文安,陈雄辉   

  1. 华南农业大学 农学院,华南农业大学 生命科学学院,华南农业大学 农学院,华南农业大学 农学院,华南农业大学 农学院,华南农业大学 农学院,华南农业大学 农学院
  • 收稿日期:2014-11-25 修回日期:2015-04-17 接受日期:2014-12-11 出版日期:2015-06-02 发布日期:2015-06-02
  • 通讯作者: 陈雄辉
  • 基金资助:
    广东省科技计划项目“主要粮食作物(水稻)抗性育种技术研究”(2011A020102008);广东省教育部产学研结合项目“水稻抑草新品种(有机)产业化及水稻抑草育种关键技术研究”(2012B091100426);农业部公益性行业(农业)科研专项“利用生态功能分子防控害虫与杂草”(201403030)。

Study on Allelopathic Inhibition Frequency Stability of Allelopathic Rice in the Field

  • Received:2014-11-25 Revised:2015-04-17 Accepted:2014-12-11 Online:2015-06-02 Published:2015-06-02

摘要: 为研究在田间不同环境条件下化感稻对稗草的化感抑草率及其稳定性表现,以3个化感常规稻及其与3个不育系所配的7个化感杂交稻组合、美国强化感稻品系PI312777为试验材料,进行分期播种种植。结果发现:不同化感稻和不同环境对化感抑草率均有明显影响,两者互作对化感抑草率影响不明显;化感抑草率越高的化感稻或环境,其化感抑草率的稳定性也相对较好,即化感抑草率高的化感稻因环境不同其化感抑草率差异较小、化感抑草率高的环境下不同化感稻间的化感抑草率差异较小;利用化感常规稻为父本,可以较容易选配出具有超父本化感杂种优势的化感杂交稻组合;化感稻移栽后0~15天范围内某些时段的日均温、日最低温、日最高温及日照时数对有些化感稻的化感抑草率有影响;具体表现为温度越低、日照时数越短、则化感抑草率越高,气候环境因素对不同化感稻的化感抑草率是否有影响表现出多样性、对不同化感稻化感抑草率的影响程度也表现出多样性,除了气候环境因素对化感稻的化感抑草率有明显影响外,可能还存在其他更重要的环境因素影响。试验结果表明,在田间化感稻化感抑草率的稳定性容易受环境影响,这对生产应用很不利,但可以筛选出化感抑草率高且较稳定的化感稻。

关键词: 虱螨脲, 虱螨脲, 小菜蛾, 存活, 化蛹, 羽化

Abstract: To study the alleopathic inhibition frequency and stability of allelopathic rice to bamyardgrass under different field environments, 3 conventional allelopathic rice varieties, 7 hybrid rice combinations of the three conventional allelopathic rice with three CMS lines and PI312777, an excellent American allelopath rice were planted in the paddy filed at different time. The results were as follows: rice varieties and environment had significant influence on the alleopathic inhibition frequency while their interaction showed no significant difference. The higher the alleopathic inhibition frequency of the rice or the environment was, the more stability its inhibition frequency was. That meant the rice variety which had a highly alleopathic inhibition frequency showed little difference in different environment, while different alleopathic rice showed little difference in the highly alleopathic inbibition environment. By using the conventional alleopathic inhibition rice as donor parents, the allelopath heterosis was easily obtained in F1. In some period of time after the rice plants were transplanted for 0 to 15 days, the average temperature, the lowest and highest daily temperature as well as the sunshine duration had effects on the alleopathic inbihition. The lower the temperature and the shorter the sunshine duration was, the higher the alleopathic inbihition frequency would be. Besides the climate environment showed diversity impact on alleopathic inbihition, there might be other more important factors affecting the alleopathic inhibition frequency. The results showed that allelopathic inhibition frequency stability of allelopathic rice was easily affected by the environment in the field, which was unfavorable for production applications, but could be used to select high and stable allelopathic inhibition frequency of allelopathic rice.