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首页> 外文期刊>African Journal of Microbiology Research >Differential immunoreactivity of the root-knot nematodes, Meloidogyne graminicola and Meloidogyne incognita to polyclonal and monoclonal antibodies and identification of antigens through proteomics approach
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Differential immunoreactivity of the root-knot nematodes, Meloidogyne graminicola and Meloidogyne incognita to polyclonal and monoclonal antibodies and identification of antigens through proteomics approach

机译:根结线虫,南方根结线虫和南方根结线虫对多克隆和单克隆抗体的差异免疫反应和通过蛋白质组学方法鉴定抗原

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摘要

Meloidogyne graminicola infect graminaceous plants but have lesser tendency to infect dicotyledonous plants. Meloidogyne incognita is a pest of dicots and occasionally infects cereals. Evolutionary adaptation of these root-knot nematodes to their preferred hosts might have led to variability in their gene/protein profile which could contribute to their differential behaviour outside and inside the different host crops. Polyclonal and monoclonal antibodies raised against several nematode species showed cross-reactivity to antigens with different molecular weights present in the whole body homogenate of M. incognita and M. graminicola J2. This variability in antigenicity may correspond to specific functions of these molecules in M. incognita and M. graminicola. Using proteomics approach possible amino acid sequence of those antigens was elucidated and showed sequence similarity with several proteins like signal recognition particle protein, galactose binding lectin, zinc finger motif, neurotransmitter gated ion channel, transmembrane protein, etc. from the genomic database of several nematode species. To investigate the function of the identified nematode genes, RNA interference could be used to reduce the expression of these selected genes and determine their importance for nematode development, survival or parasitism.
机译:根结线虫可感染禾本科植物,但感染双子叶植物的趋势较小。南方根结线虫是双子叶植物的害虫,偶而感染谷物。这些根结线虫向其首选寄主的进化适应性可能导致其基因/蛋白质谱的可变性,这可能有助于它们在不同寄主作物内部和外部的差异行为。针对几种线虫种类的多克隆抗体和单克隆抗体显示出与在隐隐支原体和graminigracola J2的全身匀浆中存在的具有不同分子量的抗原的交叉反应性。抗原性的这种变化可能对应于这些分子在隐孢分枝杆菌和格氏分枝杆菌中的特定功能。使用蛋白质组学方法,阐明了这些抗原的可能氨基酸序列,并显示了与几种线虫基因组数据库中几种蛋白质的序列相似性,例如信号识别颗粒蛋白,半乳糖结合凝集素,锌指基序,神经递质门控离子通道,跨膜蛋白等。种类。为了研究已鉴定的线虫基因的功能,可以使用RNA干扰来减少这些选定基因的表达,并确定其对线虫发育,存活或寄生虫的重要性。

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