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油菜黑胫病菌(Leptosphaeria biglobosa)生物学特性研究
引用本文:郝丽芬,宋培玲,李子钦,包玉英,李强生,胡宝成.油菜黑胫病菌(Leptosphaeria biglobosa)生物学特性研究[J].中国油料作物学报,2012,34(4):419-424.
作者姓名:郝丽芬  宋培玲  李子钦  包玉英  李强生  胡宝成
作者单位:1 内蒙古大学生命科学学院,内蒙古 呼和浩特 010021; 2内蒙古农牧业科学院植物保护研究所,内蒙古 呼和浩特 010031; 3安徽省农业科学院作物研究所,安徽 合肥230031

基金项目:内蒙古农牧业科学院创新基金(NM22032);内蒙古农牧业科学院院青年创新基金(NMJ21021);国家科技支撑计划(200900003986)
摘    要:为了解我国油菜黑胫病病原菌(Leptosphaeria biglobosa)的生物学特性,在实验室里研究了温度、pH值、光照、碳源及氮源等条件对该病菌营养生长及分生孢子产生的影响。结果表明:病原菌在5℃~35℃均可进行营养生长并产孢,最适生长和产孢温度为25℃;在pH4~10的范围内该菌均能生长并产孢,在pH7的条件下生长最快,产孢最多。光暗交替有利于菌丝生长和产孢,而持续光照不利于菌丝生长,尤其不利于产孢。最适的碳源、氮源分别是可溶性淀粉、牛肉膏。分生孢子的致死温度为52℃。

关 键 词:油菜黑胫病  菌丝体生长分生孢子  产孢量  光温  碳源  氮源

Biological characteristics of Leptosphaeria biglobosa on Chinese oilseed rape
HAO Li-fen,SONG Pei-ling,Li Zi-qin,BAO Yu-ying,LI Qiang-sheng,HU Bao-cheng.Biological characteristics of Leptosphaeria biglobosa on Chinese oilseed rape[J].Chinese Journal of Oil Crop Sciences,2012,34(4):419-424.
Authors:HAO Li-fen  SONG Pei-ling  Li Zi-qin  BAO Yu-ying  LI Qiang-sheng  HU Bao-cheng
Institution:1.College of Life Sciences of Inner Mongolia University,Hohhot 010021,China; 2.Inner Mongolia Academy of Agricultural & Animal Husbandry Sciences,Hohhot 010031,China; 3.Crop Research Institute,Anhui Academy of Agricultural Sciences,Hefei 230031,China)
Abstract:This paper focused on biological characteristics of Leptosphaeria biglobosa,the causal agent of blackleg disease on Chinese oilseed rape,as well as the effects of temperature,pH,illumination,nitrogen source and carbon source on mycelial growth and sporulation of the pathogen.Results showed that L.biglobosa could conduct mycelial growth and sporulation at the temperature between 5℃ and 35℃ with the optimum temperature at 25℃.The pathogen produced spores under pH4 to pH10,the optimum at pH7.Alternate light and darkness was favorable to mycelial growth and sporulation,while continuous light inhibited the production of mycelia and conidia in particular.The optimal carbon source and nitrogen sources were soluble starch and beef extract respectively.The lethal temperature for conidia of L.biglobosa was 52℃.
Keywords:Phoma stem canker  Mycelial growth  Conidia  Sporulation  Light and temperature  Carbon source  Nitrogen source
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