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Strategies for Controlling Plant Diseases and Mycotoxin Contamination Using Antimicrobial Synthetic Peptides

机译:使用抗微生物合成肽控制植物病害和霉菌毒素污染的策略

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Development of disease-resistant transgenic crops is made difficult because host plant-pathogen interactions are complex and often crop/variety or pathogen/strain-specific. Synthetic peptides are useful in controlling a broad-spectrum of plant pathogens including the difficult-to-control, mycotoxin-producing fungal species such as Aspergillus and Fusarium. The effectiveness of synthetic peptide genes in transgenic crops for controlling microbial pathogens has been well established in our laboratory and elsewhere. Some of the additional advantages of synthetic peptides include 1) they are not subject to rapid degradation in cytoplasm as compared to naturally occurring peptides, 2) they offer unique resistance to microbes because of their novelty and preempt possible development of resistance, and 3) preliminary studies indicate that they are not harmful to beneficial microbes in the rhizosphere. This paper reviews various strategies of synthetic peptide gene expression in transgenic crops for controlling or inhibiting plant pathogens including mycotoxin producing fungi.
机译:由于寄主植物与病原体之间的相互作用非常复杂,而且往往是作物/品种或病原体/菌株特异性的,因此抗病转基因作物的开发变得十分困难。合成肽可用于控制广谱的植物病原体,包括难以控制的,产生霉菌毒素的真菌物种,例如曲霉和镰刀菌。在我们实验室和其他地方,合成肽基因在转基因作物中控制微生物病原体的有效性已得到充分证实。合成肽的一些其他优点包括:1)与天然肽相比,它们在细胞质中不易快速降解; 2)由于其新颖性和对耐药性的先发制人,它们对微生物具有独特的抗性,以及3)初步研究表明,它们对根际中的有益微生物无害。本文综述了转基因农作物中合成肽基因表达的各种策略,这些策略可用于控制或抑制植物病原体,包括产生真菌毒素的真菌。

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