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Strain improvement of fungal insecticides for controlling insect pests and vector-borne diseases

机译:防治害虫和媒介传播疾病的真菌杀虫剂的菌株改良

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摘要

Insect pathogenic fungi play an important natural role in controlling insect pests. However, few have been successfully commercialized due to low virulence and sensitivity to abiotic stresses that produce inconsistent results in field applications. These limitations are inherent in most naturally occurring biological control agents but development of recombinant DNA techniques has made it possible to significantly improve the insecticidal efficacy of fungi and their tolerance to adverse conditions, including UV. These advances have been achieved by combining new knowledge derived from basic studies of the molecular biology of these pathogens, technical developments that enable very precise regulation of gene expression, and genes encoding insecticidal proteins from other organisms, particularly spiders and scorpions. Recent coverage of genomes is helping determine the identity, origin, and evolution of traits needed for diverse lifestyles and host switching. In future, such knowledge combined with the precision and malleability of molecular techniques will allow design of multiple pathogens with different strategies and host ranges to be used for different ecosystems, and that will avoid the possibility of the host developing resistance. With increasing public concern over the continued use of synthetic chemical insecticides, these new types of biological insecticides offer a range of environmental-friendly options for cost-effective control of insect pests.
机译:病原真菌在控制害虫中起着重要的自然作用。然而,由于低毒力和对非生物胁迫的敏感性,很少能成功地商业化,非生物胁迫在田间应用中产生不一致的结果。这些限制是大多数天然存在的生物防治剂所固有的,但是重组DNA技术的发展使得可以显着提高真菌的杀虫效力及其对包括UV在内的不利条件的耐受性。通过结合从这些病原体的分子生物学基础研究中获得的新知识,能够非常精确地调节基因表达的技术发展以及编码来自其他生物(尤其是蜘蛛和蝎子)的杀虫蛋白的基因,可以实现这些进展。基因组的最新报道正在帮助确定多样化生活方式和宿主转换所需的性状的身份,起源和进化。将来,这些知识与分子技术的精确性和延展性相结合,将允许设计具有不同策略和宿主范围的多种病原体,以用于不同的生态系统,从而避免了宿主产生抗药性的可能性。随着公众对继续使用合成化学杀虫剂的关注日益增加,这些新型的生物杀虫剂为经济有效地控制害虫提供了一系列环保选择。

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