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在害虫黄斑豆象存在的情况下对绿僵菌分泌物进行蛋白质组学分析。

Proteomic analysis of Metarhizium anisopliae secretion in the presence of the insect pest Callosobruchus maculatus.

作者信息

Murad André M, Noronha Eliane F, Miller Robert N G, Costa Fabio T, Pereira Caroline D, Mehta Ângela, Caldas Ruy A, Franco Octávio L

机构信息

Centro de Análises Proteômicas e Bioquímicas, Pós-Graduação em Ciências Genômicas e Biotecnologia UCB, Brasília-DF, Brazil.

Embrapa Recursos Genéticos e Biotecnologia, Brasília-DF, Brazil.

出版信息

Microbiology (Reading). 2008 Dec;154(Pt 12):3766-3774. doi: 10.1099/mic.0.2008/022913-0.

Abstract

Crop improvement in agriculture generally focuses on yield, seed quality and nutritional characteristics, as opposed to resistance to biotic stresses. Consequently, natural antifeedant toxins are often rare in seed material, with commercial crops being prone to insect pest predation. In the specific case of cowpea (Vigna unguiculata), smallholder cropping is affected by insect pests that reproduce inside the stored seeds. Entomopathogenic organisms can offer an alternative to conventional pesticides for pest control, producing hydrolases that degrade insect exoskeleton. In this study, protein secretions of the ascomycete Metarhizium anisopliae, which conferred bioinsecticidal activity against Callosobruchus maculatus, were characterized via 2D electrophoresis and mass spectrometry. Proteases, reductases and acetyltransferase enzymes were detected. These may be involved in degradation and nutrient uptake from dehydrated C. maculatus. Proteins identified in this work allowed description of metabolic pathways. Their potential applications in biotechnology include both novel compound development and production of genetically modified plants resistant to insect pests.

摘要

农业中的作物改良通常侧重于产量、种子质量和营养特性,而非对生物胁迫的抗性。因此,天然拒食毒素在种子材料中往往很少见,商业作物容易受到害虫的侵害。就豇豆(Vigna unguiculata)而言,小农户种植受到在储存种子内部繁殖的害虫影响。昆虫病原生物可为害虫防治提供替代传统杀虫剂的方法,它们能产生降解昆虫外骨骼的水解酶。在本研究中,通过二维电泳和质谱对赋予对黄斑豆象生物杀虫活性的子囊菌绿僵菌的蛋白质分泌进行了表征。检测到了蛋白酶、还原酶和乙酰转移酶。这些酶可能参与了对脱水黄斑豆象的降解和养分吸收。本研究中鉴定出的蛋白质有助于描述代谢途径。它们在生物技术中的潜在应用包括新型化合物开发和培育抗害虫转基因植物。

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