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小麦白粉病菌CYP51基因中的序列变异与对甾醇脱甲基化抑制剂类杀菌剂的抗性相关。

Sequence variation in the CYP51 gene of Blumeria graminis associated with resistance to sterol demethylase inhibiting fungicides.

作者信息

Wyand R A, Brown J K M

机构信息

Department of Disease and Stress Biology, John Innes Centre, Colney Lane, Norwich, Norfolk NR4 7UH, UK.

出版信息

Fungal Genet Biol. 2005 Aug;42(8):726-35. doi: 10.1016/j.fgb.2005.04.007.

Abstract

Resistance to sterol 14alpha-demethylase inhibiting fungicides (DMIs) has been correlated with mutations in the CYP51 gene, which encodes the target enzyme eburicol 14alpha-demethylase. To test the hypothesis that variation in the CYP51 gene explains variation for DMI sensitivity in barley and wheat powdery mildew species, this gene was sequenced from isolates of Blumeria graminis f.sp. hordei (Bgh) and f.sp. tritici (Bgt), respectively, which differed in their responses to DMIs in agricultural populations in the UK. Two single-nucleotide mutations in the CYP51 gene, which resulted in the amino acid substitutions Y136F and K147Q, were detected. K147Q is a novel mutation present only in Bgh isolates expressing very high levels of resistance. Sequence analysis of the CYP51 gene from the progeny of a cross between DMI-sensitive and resistant Bgh isolates showed that both mutations segregate with resistance, which is consistent with CYP51 controlling a major portion of DMI resistance. However, genetic analysis of resistance to the DMI triadimenol indicates that mutation of the CYP51 gene is not the only mechanism of resistance operating in B. graminis.

摘要

对甾醇14α-脱甲基酶抑制性杀菌剂(DMIs)的抗性与CYP51基因的突变有关,该基因编码靶标酶羊毛甾醇14α-脱甲基酶。为了验证CYP51基因的变异解释了大麦和小麦白粉病菌对DMIs敏感性变异的假说,分别从英国农业群体中对DMIs反应不同的禾本科布氏白粉菌大麦专化型(Bgh)和小麦专化型(Bgt)分离株中对该基因进行了测序。检测到CYP51基因中的两个单核苷酸突变,它们导致了氨基酸替换Y136F和K147Q。K147Q是一个仅存在于表达极高抗性水平的Bgh分离株中的新突变。对DMI敏感和抗性Bgh分离株杂交后代的CYP51基因进行序列分析表明,这两个突变均与抗性共分离,这与CYP51控制着大部分DMI抗性是一致的。然而,对DMI三唑酮抗性的遗传分析表明,CYP51基因的突变不是禾本科布氏白粉菌中起作用的唯一抗性机制。

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