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Identification of endo- and exo-polygalacturonase activity in Lygus hesperus (Knight) salivary glands

机译:鉴定狼牙草(骑士)唾液腺中的内聚和外聚半乳糖醛酸酶活性

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Polygalacturonase (PG) activity found in the salivary gland apparatus of the western tarnished plant bug (WTPB, Lygus hesperus Knight) has been thought to be the main chemical cause of the damage inflicted by this mirid when feeding on its plant hosts. Early viscosity and thermal stability studies of the PG activity in L. hesperus protein extracts were difficult to interpret. Thus, it has been suggested that one or more PG protein(s) with different hydrolytic modes of action are produced by this mirid. In order to understand the quantitative complexity of the WTPB salivary PG activity, PG purification from a protein extract from salivary glands excised from L. hesperus insects was performed using affinity and ion exchange chromatography. To elucidate the qualitative complexity of the purified PGs, the digestion products generated by the PGs were separated using high performance anion exchange chromatography with pulsed amperometric detection. At least five PG proteins were detected; these differing in terms of their glycosylation, mass-to-charge ratios, and/or molecular mass. The characterization of the products generated by these PGs showed that endo- and exo-acting PGs are produced by WTPB. Although none of the PGs was purified to homogeneity,the present work provides biochemical evidence of a multiplicity of PGs that degrade the pectin component of the plant tissue in different fashions. The implications of these findings affect the understanding of WTPB feeding damage and, potentially, help identify ways to control this important crop pest. Arch. Insect Biochem. Physiol. 2008. (c) 2008 Wiley-Liss, Inc.
机译:人们认为,在西部锈迹斑斑的植物小虫(WTPB,阔叶莴苣骑士)的唾液腺装置中发现的聚半乳糖醛酸酶(PG)活性是这种水mi以植物宿主为食时造成损害的主要化学原因。早熟禾提取物中PG活性的早期粘度和热稳定性研究难以解释。因此,已经提出了通过该亮氨酸产生具有不同水解作用模式的一种或多种PG蛋白。为了理解WTPB唾液PG活性的定量复杂性,使用亲和和离子交换色谱法进行了从橙子实蝇昆虫切除的唾液腺的蛋白质提取物中提取PG的纯化。为了阐明纯化PG的定性复杂性,使用高效阴离子交换色谱和脉冲安培检测法分离了PG产生的消化产物。至少检测到五种PG蛋白;这些在糖基化,质荷比和/或分子量方面有所不同。这些PG产生的产物的表征表明,内向和外向作用的PG是由WTPB产生的。尽管没有一种PG纯化到均一,但本工作提供了多种以不同方式降解植物组织果胶成分的PG的生化证据。这些发现的含义影响对WTPB饲喂损害的理解,并有可能帮助确定控制这种重要农作物害虫的方法。拱。昆虫生化。生理学。 2008(c)2008 Wiley-Liss,Inc.

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