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Integrated Management Strategies for Tomato Fusarium Wilt

机译:番茄枯萎病的综合管理策略

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Fusarium wilt is caused by the fungal pathogens, Fusarium oxysporum or Fusarium solani. It is a devastating disease that affects many important food and vegetable crops and a major source of loss to farmers worldwide. Initial strategies developed to combat this devastating plant disease include the use of cultural, physical and chemical control. None of these strategies have been able to give the best results of completely ameliorating the situation except for the cultural method which is mainly preventive. A good knowledge of the nature, behaviour and environmental conditions of growth of the disease agent is very important to controlling the disease development in that case. Biological control has been shown to be an environmentally friendly alternative. It makes use of rhizospheric and endophytic microorganisms that can survive and compete favourably well with the Fusarium wilt pathogen. They include plant growth-promoting rhizobacteria (PGPR) such as Bacillus spp. and Pseudomonas spp.. For PGPR to control or inhibit the growth of the Fusarium wilt pathogen, they make use of mechanisms such as indole acetic acid production, siderophore production, phosphate solublilization, systemic resistance induction and antifungal volatile production among others.
机译:镰刀菌枯萎病是由真菌病原菌,尖孢镰刀菌或茄镰刀菌引起的。它是一种破坏性疾病,影响到许多重要的粮食和蔬菜作物,并且是全世界农民遭受损失的主要来源。为抗击这种毁灭性植物疾病而制定的初步策略包括使用文化,物理和化学控制。除了主要是预防性的文化方法外,所有这些策略都无法给出完全缓解这种情况的最佳结果。在这种情况下,对病原菌生长的性质,行为和环境条件的充分了解对于控制疾病的发展非常重要。生物控制已被证明是一种环境友好的替代方案。它利用了根际和内生微生物,它们可以存活并与枯萎病枯萎病菌良好竞争。它们包括促进植物生长的根际细菌(PGPR),例如芽孢杆菌。为了控制或抑制镰刀菌枯萎病原体的生长,PGPR利用了诸如吲哚乙酸生产,铁载体生产,磷酸盐增溶作用,系统抗性诱导和抗真菌挥发物生产等机制。

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