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玉米抗倒性检测环境的选取方法 被引量:7

Method of test environments selection for corn lodging resistance
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摘要 倒伏是玉米的重要胁迫之一,为提高玉米新品种抗倒性检测的效率,需选择倒伏胁迫高发环境作为测试环境。该文结合倒伏胁迫发生机理和大风概率统计模型,首先计算每个气象站点的因风倒伏概率,通过插值和区域统计,得到东华北、黄淮海两大玉米主产区各县区的因风倒伏概率,最后进行玉米抗倒性检验环境的选取分析。结果表明:倒伏胁迫概率超过60%的县区适宜作为玉米抗倒性检测的备选环境,只需3~5个点即可基本保证每年试验都会发生倒伏胁迫;黄淮海发生极严重倒伏胁迫的平均概率高于东华北,与实际情况吻合,两大区域可作为极严重倒伏胁迫检测环境的备选县区有54个,严重倒伏有16个,一般性倒伏有21个;本方法为测试环境选取决策提供了一种量化操作的手段,有助于提高测试环境倒伏胁迫的发生概率和新品种抗倒性检测的效率,降低应用风险。 Lodging is a major stress of maize.In order to improve the efficiency of lodging resistance detection of new varieties,high stress location must be selected as a test environment.In this study,firstly,corn lodging mechanism and wind stress probability model were researthed.Secondly,lodging probability of each meteorological station caused by wind stress was calculated.Then,lodging probability was obtained for all counties in Northeast and North China,the Huang-Huai-Hai Plain,by using Spatial Interpolation and Regional Statistical Analysis.Finally,the test environments selection analysis for corn lodging resistance was conducted.The results show that:counties with lodging probability above 60% are suitable for alternative environments,lodging will certainly happen among 3-5 locations in each year;the average critical lodging probability of the Huang-Huai-Hai Plain is higher than that of the Northeast and North China,the available counties for critical lodging in the two regions is 54,the severe is 16,and the medium is 21.The method provides a quantitative operation for test environments selection decision-making.The lodging probability of environment trials can be significantly improved,which contributes to test lodging resistance of new varieties sufficiently and reduces extension risk.
出处 《农业工程学报》 EI CAS CSCD 北大核心 2010年第10期167-171,共5页 Transactions of the Chinese Society of Agricultural Engineering
基金 国家自然科学基金面上项目"基于GIS的农作物品种种植精细区划方法研究"(40971055)
关键词 玉米 倒伏 概率 GIS corn lodging probability wind GIS
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参考文献22

  • 1Nielsen B. Stalk Lodging in Corn: Guidelines for Preventive Management: Agronomy Guide[M]. Indiana (USA): University of Purdue Press, 2006. 被引量:1
  • 2Van Dyk J. Corn lodging sets In: Integrated Crop Management: Plant Diseases[M]. Iowa (USA), Iowa State University Press, 2001. 被引量:1
  • 3宋朝玉,张继余,张清霞,陈希群,李祥云,王圣健.玉米倒伏的类型、原因及预防、治理措施[J].作物杂志,2006(1):36-38. 被引量:100
  • 4中华粮网,河南:遭遇暴雨大风袭击玉米倒伏严重[EB/OL].http://www.cngrain.com/,2009-9-1. 被引量:1
  • 5农作物品种试验技术规程-玉米[S].中国农业部,NY/T1209-2006. 被引量:1
  • 6Zuber M S, Kang M S. Corn lodging slowed by sturdier stalks[J]. Crop Soils, 1978, 30(5): 13- 15. 被引量:1
  • 7Hondroyianni E, Papakosta D K, Gagianas A A, et al. Com stalk traits related to lodging resistance in two soils of differing quality[J]. Maydica, 2000, 45: 125-133. 被引量:1
  • 8Abedon B G, Darrah L L, Tracy W F. Developmental changes associated with divergent selection for rind penetrometer resistance in the MoSCSSS maize synthetic[J]. Crop Science, 1999, 39: 108- 114. 被引量:1
  • 9袁公选,杨金慧,李雅文,赵晓峰.玉米倒伏成因及预防[J].西北植物学报,1999,19(5):72-76. 被引量:38
  • 10河北省气象局.河北省2009年8月气候影响评价[EB/OL].hccp://www.weather.he.cninfo.net,2009. 被引量:1

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