Fernández-Ortuño Dolores, Torés Juan A, de Vicente Antonio, Pérez-García Alejandro
Estación Experimental La Mayora (CSIC), Algarrobo-Costa, 29750 Málaga, Spain.
Pest Manag Sci. 2008 Jul;64(7):694-702. doi: 10.1002/ps.1544.
A single nucleotide polymorphism in the mitochondrial cytochrome b gene confers resistance to strobilurin (QoI) fungicides in phytopathogenic fungi. Recent studies have revealed worrying levels of resistance to strobilurins in Podosphaera fusca (Fr.) U Braun & N Shishkoff comb. nov. [ = Sphaerothecafusca (Fr.) S Blumer], the main causal agent of cucurbit powdery mildew in Spain. In the present study the underlying resistance mechanism to QoI fungicides in the Spanish populations of P. fusca was investigated.
Analysis of the Q(o) domains of cytochrome b in a collection of isolates revealed that none of the typical mutations conferring resistance to QoI, including the G143A and F129L substitutions, was present in the QoI-resistant isolates. Moreover, although different amino acid polymorphisms were observed in the two regions spanning the Q(o) site, none of them consistently distinguished QoI-resistant from QoI-sensitive strains. Exposure to salicylhydroxamic acid (SHAM), a specific inhibitor of alternative oxidase, in the presence of trifloxystrobin did not have any effect on QoI resistance, ruling out alternative respiration as the mechanism of resistance. Sensitivity tests to a battery of respiration inhibitors revealed high levels of cross-resistance to all Qo-inhibitors tested but not to Qi-inhibitors, these features resembling those of a target-site-based resistance.
The results indicate that the mechanism responsible for QoI resistance in P. fusca is not linked to typical mutations in cytochrome b gene and that the absence of the G143A substitution cannot be explained by an intron following codon 143. These are important observations, especially in relation to the possible molecular diagnosis of resistance.
线粒体细胞色素b基因中的单核苷酸多态性赋予植物病原真菌对甲氧基丙烯酸酯类(QoI)杀菌剂的抗性。最近的研究表明,西班牙葫芦科白粉病的主要病原菌——褐球粉孢(Podosphaera fusca (Fr.) U Braun & N Shishkoff comb. nov. [ = 暗球壳菌(Sphaerotheca fusca (Fr.) S Blumer])对甲氧基丙烯酸酯类杀菌剂的抗性水平令人担忧。在本研究中,对西班牙褐球粉孢种群中QoI杀菌剂的潜在抗性机制进行了研究。
对一系列分离株的细胞色素b的Q(o)结构域进行分析,结果显示,在对QoI具有抗性的分离株中,不存在赋予对QoI抗性的典型突变,包括G143A和F129L替换。此外,尽管在跨越Q(o)位点的两个区域观察到不同的氨基酸多态性,但没有一种能始终如一地区分对QoI有抗性和敏感的菌株。在存在肟菌酯的情况下,用交替氧化酶的特异性抑制剂水杨基羟肟酸(SHAM)处理,对QoI抗性没有任何影响,排除了交替呼吸作为抗性机制。对一系列呼吸抑制剂的敏感性测试表明,对所有测试的Qo抑制剂具有高水平的交叉抗性,但对Qi抑制剂没有交叉抗性,这些特征类似于基于靶位点的抗性。
结果表明,褐球粉孢中QoI抗性的机制与细胞色素b基因中的典型突变无关,并且密码子143后不存在内含子不能解释G143A替换的缺失。这些是重要的观察结果,特别是在抗性的可能分子诊断方面。