Kilani Jaafar, Fillinger Sabine
UMR BIOGER, Institut National de la Recherche Agronomique, AgroParisTech, Université Paris SaclayThiverval-Grignon, France; Université Paris-Sud, Université Paris-SaclayOrsay, France.
UMR BIOGER, Institut National de la Recherche Agronomique, AgroParisTech, Université Paris Saclay Thiverval-Grignon, France.
Front Microbiol. 2016 Dec 16;7:2014. doi: 10.3389/fmicb.2016.02014. eCollection 2016.
Phenylpyrroles are chemical analogs of the natural antifungal compound pyrrolnitrin. Fenpiclonil, but mainly fludioxonil are registered against multiple fungal crop diseases since over 25 years for seed or foliar treatment. They have severe physiological impacts on the pathogen, including membrane hyperpolarization, changes in carbon metabolism and the accumulation of metabolites leading to hyphal swelling and burst. The selection and characterization of mutants resistant to phenylpyrroles have revealed that these fungicides activate the fungal osmotic signal transduction pathway through their perception by a typical fungal hybrid histidine kinase (HHK). The HHK is prone to point mutations that confer fungicide resistance and affect its sensor domain, composed of tandem repeats of HAMP motifs. Fludioxonil resistant mutants have been selected in many fungal species under laboratory conditions. Generally they present severe impacts on fitness parameters. Since only few cases of field resistance specific to phenylpyrroles have been reported one may suspect that the fitness penalty of phenylpyrrole resistance is the reason for the lack of field resistance.
苯基吡咯是天然抗真菌化合物硝吡咯菌素的化学类似物。咯菌腈,尤其是氟啶胺,25多年来一直被登记用于种子或叶面处理,防治多种真菌性作物病害。它们对病原体具有严重的生理影响,包括膜超极化、碳代谢变化以及代谢产物积累,导致菌丝肿胀和破裂。对苯基吡咯抗性突变体的筛选和鉴定表明,这些杀菌剂通过典型的真菌杂交组氨酸激酶(HHK)对其感知,激活真菌渗透信号转导途径。HHK容易发生点突变,这些突变赋予杀菌剂抗性并影响其由HAMP基序串联重复组成的传感结构域。在实验室条件下,已在许多真菌物种中筛选出氟啶胺抗性突变体。一般来说,它们对适合度参数有严重影响。由于仅报道了少数几例对苯基吡咯的田间抗性情况,因此有人怀疑苯基吡咯抗性的适合度代价是缺乏田间抗性的原因。