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对甲霜灵不同敏感程度的辣椒疫霉的遗传多样性分析 被引量:2

Genetic diversity analysis of Phytophthora capsici isolates with differential sensitivities to metalaxyl
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摘要 为研究不同地区及对甲霜灵不同敏感程度的辣椒疫霉菌株间的遗传差异,采用RAPD分子标记对分离自安徽省和县等(15株)、江苏省南京市(1株)、四川省邛崃市(1株)的17个菌株及经甲霜灵处理筛选得到的3个抗性突变菌株进行了RAPD指纹分析。结果显示10对引物共扩增出30个比较清晰的条带,且均为多态性条带;当以遗传相似系数0.7为阀值时,可以将供试的20个菌株分为4个遗传聚类组,说明辣椒疫霉具有一定的遗传多样性。同时,RAPD分析结果还表明,经甲霜灵处理所筛选得到的抗性突变株与野生型敏感亲本之间存在一定的遗传变异,但是辣椒疫霉菌株对甲霜灵的敏感程度与RAPD的聚类分组没有相关性。 The primary objective of this study was to investigate the genetic differences in Phytophthora capsici isolates with different sensitivities to metalaxyl.Seventeen field isolates from Hexian,etc,Anhui Province(15 isolates),Nanjing,Jiangsu Province(1 isolate),Qionglai,Sichuan Province(1 isolate) and 3 laboratory-induced metalaxyl-resistant isolates were analyzed for their genetic diversities using random amplified polymorphic DNA(RAPD) marker.Ten pairs of primers were used to amplify 30 fragments,of which all fragments were polymorphic.Twenty isolates were divided into 4 groups(genotypes) indicating that there was a certain genetic diversity in P.capsici RAPD analysis revealed that there was genetic variations between the sensitive and laboratory-induced metalaxyl-resistant isolates.However,no correlation was found between the groups defined by RAPD analysis and the groups defined by metalaxyl sensitivity.
出处 《江苏农业学报》 CSCD 北大核心 2012年第2期384-389,共6页 Jiangsu Journal of Agricultural Sciences
基金 国家公益性行业(农业)科研专项(201003004)
关键词 辣椒疫霉 甲霜灵 敏感程度 遗传多样性 Phytophthora capsici metalaxyl sensitivity genetic diversity
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  • 1韦霄,韦记青,蒋水元,蒋运生,唐辉,叶万辉.迁地保护的金花茶遗传多样性评价[J].广西植物,2005,25(3):215-218. 被引量:20
  • 2裴颜龙,邹喻苹,尹蓁,汪小全,张志宪,洪德元.矮牡丹与紫斑牡丹RAPD分析初报[J].植物分类学报,1995,33(4):350-356. 被引量:68
  • 3尹敬芳,曹锦,李健强,刘西莉.杀菌剂对辣椒疫霉不同形态菌体的毒力差异[J].农药学学报,2005,7(3):227-232. 被引量:23
  • 4PANG Z,SHAO J,CHEN L. Resistance to the novel fungicide pyrimorph in Phytophthora capsic:risk assessment and detection of point mutations in CesA3 that confer resistance[J].PLoS ONE,2013,(02):e56513.
  • 5BEDARD K,KRAUSE K H. The NOX family of ROS-generating NADPH oxidases:physiology and pathophysiology[J].Physiological Reviews,2007,(01):245-313.
  • 6BEDARD K,LARDY B,KRAUSE K H. NOX family NADPH oxidases:not just in mammals[J].Biochimie,2007,(09):1107-1112.
  • 7KOHANSKI M A,DWYER D J,HAYETE B. A common mechanism of cellular death induced by bactericidal antibiotics[J].Cell,2007,(05):797-810.
  • 8TAKEMOTO D,TANAKA A,SCOTT B. NADPH oxidases in fungi:diverse roles of reactive oxygen species in fungal cellular differentiation[J].Fungal Genetics and Biology,2007,(11):1065-1076.
  • 9CHENG S S,LIU.J Y,CHANG E H. Antifungal activity of cinnamaldehyde and eugenol congeners against wood-rot fungi[J].Bioresource Technology,2008,(11):5145-5149.
  • 10LIU G,DONOGHUE A,MOYLE J. Effects of trans-cinnamaldehyde on Campylobacter and sperm viability in chicken semen after in vitro storage[J].International Journal of Poultry Science,2012,(08):536-540.

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