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Considerations for using bacteriophages for plant disease control

机译:考虑使用噬菌体来工厂疾病控制

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The use of bacteriophages as an effective phage therapy strategy faces significant challenges for controlling plant diseases in the phyllosphere. A number of factors must be taken into account when considering phage therapy for bacterial plant pathogens. Given that effective mitigation requires high populations of phage be present in close proximity to the pathogen at critical times in the disease cycle, the single biggest impediment that affects the efficacy of bacteriophages is their inability to persist on plant surfaces over time due to environmental factors. Inactivation by UV light is the biggest factor reducing bacteriophage persistence on plant surfaces. Therefore, designing strategies that minimize this effect are critical. For instance, application timing can be altered: instead of morning or afternoon application, phages can be applied late in the day to minimize the adverse effects of UV and extend the time high populations of phage persist on leaf surfaces. Protective formulations havebeen identified which prolong phage viability on the leaf surface; however, UV inactivation continues to be the major limiting factor in developing more effective bacteriophage treatments for bacterial plant pathogens. Other strategies, which have beendeveloped to potentially increase persistence of phages on leaf surfaces, rely on establishing non-pathogenic or attenuated bacterial strains in the phyllosphere that are sensitive to the phage(s) specific to the target bacterium. We have also learned that selecting the correct phages for disease control is critical. This requires careful monitoring of bacterial strains in the field to minimize development of bacterial strains with resistance to the deployed bacteriophages. We also have data that indicate that selecting the phages based on in vivo assays may also be important when developing use for field application. Although bacteriophages have potential in biological control for plant disease control, there are major obstacles, which must be considered.
机译:使用噬菌体作为一个有效的噬菌体治疗策略面临着重大挑战控制植物病害叶围。时,必须考虑许多因素考虑到噬菌体治疗细菌工厂病原体。需要高噬菌体的数量存在在关键时刻靠近病原体疾病周期,最大障碍影响的效果噬菌体是他们无法持续随着时间的推移,由于环境植物表面的因素。因素减少噬菌体的持久性植物表面。减少这种影响是至关重要的。实例,应用时间可以更改:而不是上午或下午的应用程序,噬菌体可以应用当天晚些时候来最小化紫外线和延长时间的负面影响高数量的噬菌体持续在叶子上表面。确定延长噬菌体的可行性叶表面;发展的主要限制因素更有效的抗菌素治疗植物病原真菌细菌。具有beendeveloped可能增加吗持久性的噬菌体在树叶表面,依靠建立(或减毒在的叶围细菌菌株敏感的噬菌体(s)特定的目标细菌。正确的噬菌体疾病控制至关重要的。菌株在最小化抗性菌株的发展部署的噬菌体。这表明,选择基于噬菌体体内试验也可能是重要的为现场应用开发使用。噬菌体有潜在的生物控制植物病害控制,有主要障碍,必须考虑。

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