Shapiro-Ilan David I, Reilly Charles C, Hotchkiss Michael W
USDA-ARS, SE Fruit and Tree Nut Research Laboratory, Byron, GA 31008, USA.
Environ Entomol. 2011 Feb;40(1):59-65. doi: 10.1603/EN10214.
Hypocreales fungi such as Beauveria bassiana (Balsamo) Vuillemin and Metarhizium brunneum Petch can be negatively affected by fungicides thereby reducing their biocontrol potential. In a previous study, we demonstrated enhanced fungicide resistance in B. bassiana through artificial selection. However, it is not clear if the enhanced resistance was because of improved germination, vegetative growth, or both. Additionally, the enhanced fungicide resistance has only been demonstrated in B. bassiana, and therefore it is of interest to investigate the potential to enhance resistance in other fungi. Thus, the objectives in this study were to determine the potential to enhance fungicide resistance in M. brunneum through artificial selection, and investigate if selection is based on germination, vegetative growth, or both in B. bassiana and M. brunneum. Selection for resistance to fenbuconazole, and triphenyltin hydroxide was assessed through inhibition evaluations on solid media, and germination and mycelial growth in liquid media. Increased resistance after selection was observed for all fungicide-fungus combinations on solid and or liquid media. Selection resulted in increased resistance to fenbuconazole in both fungi in solid and liquid media; in liquid culture fungicide resistance in B. bassiana was manifested by increased germination and mycelial growth, whereas in M. brunneum fungicide resistance concerned only mycelial growth. Selection for resistance to triphenyltin hydroxide varied in the different media. For B. bassiana, triphenyltin hydroxide resistance was enhanced on solid media but not in liquid, whereas enhanced resistance of M. brunneum was detected in both media. Fungicide sensitivity and selection potential differs based on the medium and fungal species. Selection for fungicide resistance, had negative effects on other beneficial traits when fungicide pressure was removed, for example, some selected populations showed decreased germination or growth, relative to their nonselected control populations. Additionally, reduced virulence to the greater wax moth, Galleria mellonella (L.), was observed in all fungal populations that were exposed to fungicide resistance regimes. We conclude that it is possible to use genetic selection to enhance fungicide resistance in B. bassiana and M. brunneum, but before use the resulting populations should be screened for inadvertent negative impacts on beneficial traits.
球孢白僵菌(Beauveria bassiana (Balsamo) Vuillemin)和布氏绿僵菌(Metarhizium brunneum Petch)等肉座菌目真菌可能会受到杀菌剂的负面影响,从而降低其生物防治潜力。在之前的一项研究中,我们通过人工选择证明了球孢白僵菌对杀菌剂的抗性增强。然而,尚不清楚抗性增强是由于发芽改善、营养生长改善,还是两者兼而有之。此外,仅在球孢白僵菌中证明了增强的杀菌剂抗性,因此研究其他真菌增强抗性的潜力很有意义。因此,本研究的目的是确定通过人工选择增强布氏绿僵菌对杀菌剂抗性的潜力,并研究在球孢白僵菌和布氏绿僵菌中选择是否基于发芽、营养生长或两者。通过在固体培养基上的抑制评估以及在液体培养基中的发芽和菌丝体生长,评估了对苯醚甲环唑和氢氧化三苯基锡的抗性选择。在固体和/或液体培养基上,所有杀菌剂-真菌组合在选择后均观察到抗性增加。选择导致两种真菌在固体和液体培养基中对苯醚甲环唑的抗性增加;在液体培养中,球孢白僵菌的杀菌剂抗性表现为发芽和菌丝体生长增加,而布氏绿僵菌的杀菌剂抗性仅涉及菌丝体生长。对氢氧化三苯基锡抗性的选择在不同培养基中有所不同。对于球孢白僵菌,在固体培养基上氢氧化三苯基锡抗性增强,但在液体中未增强,而布氏绿僵菌在两种培养基中均检测到抗性增强。杀菌剂敏感性和选择潜力因培养基和真菌种类而异。去除杀菌剂压力后,对杀菌剂抗性的选择对其他有益性状有负面影响,例如,一些选择的群体相对于未选择的对照群体表现出发芽或生长减少。此外,在所有暴露于杀菌剂抗性方案的真菌群体中,观察到对大蜡螟(Galleria mellonella (L.))的毒力降低。我们得出结论,有可能利用遗传选择增强球孢白僵菌和布氏绿僵菌对杀菌剂的抗性,但在使用之前,应对所得群体进行筛选,以确定对有益性状的意外负面影响。