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首页> 外文期刊>Plant Disease >Detection and Molecular Characterization of Boscalid-Resistant Botrytis cinerea Isolates from Strawberry
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Detection and Molecular Characterization of Boscalid-Resistant Botrytis cinerea Isolates from Strawberry

机译:草莓中耐卡西斯灰葡萄孢分离物的检测与分子鉴定

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Botrytis cinerea isolates (n = 122) were collected from strawberry fields located in northern Greece during a 3-year period (2008-10) and tested for their sensitivity to the succinate dehydrogenase inhibitor boscalid. Sensitivity measurements showed three distinct phenotypes consisting of isolates highly sensitive (fungicide concentration causing inhibition of germ tube growth by 50% [EC50 values] of 0.05 to 0.21 mu g ml(-1)), moderately resistant (EC50 values of 1.37 to 7.79 mu g ml(-1)), or highly resistant (EC50 values of >50 mu g ml(-1)) to boscalid. Sequence analysis of the sdhB gene revealed five mutations leading to amino acid substitutions in the SdhB subunit in isolates moderately resistant and highly resistant to boscalid. Three moderately resistant isolates showed a nucleotide change from A to T at codon 230, resulting in an asparagine to isoleucine (N230I) substitution. Several moderately resistant isolates showed a nucleotide change from C to T at codon 272, resulting in a substitution from histidine to arginine (H272R) whereas, in another set of isolates, a nucleotide change from A to G was found at the same codon, leading to a substitution from histidine to tyrosine (H272Y). One highly resistant isolate had a nucleotide change from A to T at codon 272, leading to a substitution from histidine to leucine (H272L), whereas, in three other highly resistant isolates, a double nucleotide change from CC to IT was observed at codon 225, resulting in a substitution from proline to phenylalanine (P225F). To facilitate rapid detection of these mutations associated with resistance to boscalid, a primer-introduced restriction analysis polymerase chain reaction was developed. The method was successfully applied to the moderately and highly resistant subpopulations and showed that the H272R mutation was predominant with relative frequencies of 28.5, 37.5, and 30% during 2008, 2009, and 2010, respectively. In contrast, the H272L mutation was detected at a frequency of 2.5% only in the 2009 population, whereas the P225F mutation was detected at a frequency of 7.5% only in the 2010 population.
机译:在三年(2008-10年)期间,从希腊北部的草莓田中收集了灰葡萄孢分离株(n = 122),并测试了其对琥珀酸脱氢酶抑制剂boscalid的敏感性。敏感性测量显示三种不同的表型,包括高度敏感的分离株(杀菌剂浓度引起胚芽生长抑制50%[EC50值]为0.05至0.21μgml(-1)),中等耐药性(EC50值为1.37至7.79 mu g ml(-1))或对Boscalid具有高度抗性(EC50值> 50μg gml(-1))。 sdhB基因的序列分析揭示了五个突变,这些突变导致中度和高度抗虫鳞病菌株中SdhB亚基的氨基酸取代。三个中等抵抗力的分离株显示第230位密码子从A到T的核苷酸变化,导致天冬酰胺变为异亮氨酸(N230I)取代。几个中等抵抗力的分离株显示第272位密码子从C到T的核苷酸变化,导致从组氨酸到精氨酸(H272R)的取代,而在另一组分离株中,在同一密码子上发现了从A到G的核苷酸变化,导致从组氨酸取代为酪氨酸(H272Y)。一种高抗性分离株的核苷酸在272位密码子处从A变为T,导致从组氨酸取代为亮氨酸(H272L),而在其他三株高抗性分离株中,在225位密码子处从CC到IT发生了双核苷酸变化。 ,导致脯氨酸取代苯丙氨酸(P225F)。为了便于快速检测与对Boscalid的抗性相关的这些突变,开发了引物引入的限制性酶切分析聚合酶链反应。该方法已成功应用于中度和高度抗药性亚群,结果表明,在2008年,2009年和2010年期间,H272R突变占优势,相对频率分别为28.5、37.5和30%。相比之下,仅在2009年人群中检出H272L突变的频率为2.5%,而在2010年人群中检出的P225F突变频率为7.5%。

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