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ID:34580825
大小:1.96 MB
页数:71页
时间:2019-03-08
《稻瘟菌酸性pH响应基因的鉴定和生物学功能分析》由会员上传分享,免费在线阅读,更多相关内容在学术论文-天天文库。
1、分类号密级华中农业大学硕士学位论文稻瘟菌酸性pH响应基因的鉴定和生物学功能分析IdentificationandFunctionalCharacterizationofAcidicpHResponsiveGenesintheRiceBlastFungus研究生:张弘学号:2016301120095指导教师:陈小林副教授学位类型:农业硕士领域:植物保护华中农业大学学植物科学与技术学院中国·武汉中国·武汉CollegeofPlantSciencesandTechnologyHuazhongAgruiculturalUniversityWuhan,China稻瘟菌酸性pH响应基因
2、的鉴定和生物学功能分析目录摘要..........................................................................................................................................................iAbstract................................................................................................................
3、...................................iii缩略词表................................................................................................................................................vi第一章前言.................................................................................................
4、..........................................11稻瘟菌研究进展..........................................................................................................................11.1稻瘟病概述............................................................................................................
5、...........11.2稻瘟菌的生物学特性和侵染特性....................................................................................12真菌响应pH信号的研究进展....................................................................................................32.1环境pH对真菌的影响................................................
6、.....................................................32.2真菌对环境pH变化的适应.............................................................................................32.3病原真菌可以调节宿主的pH值.....................................................................................42.4氨是环境碱化的关键因素..........
7、......................................................................................42.5环境碱化作为毒力因子....................................................................................................53真菌pH信号途径的研究进展.............................................
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