首页> 外文期刊>Plant Biotechnology Journal >Pinellia ternata agglutinin expression in chloroplasts confers broad spectrum resistance against aphid, whitefly, Lepidopteran insects, bacterial and viral pathogens
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Pinellia ternata agglutinin expression in chloroplasts confers broad spectrum resistance against aphid, whitefly, Lepidopteran insects, bacterial and viral pathogens

机译:Pinellia Ternata alglutinin叶绿体中的表达赋予蚜虫,粉虱,鳞翅目昆虫,细菌和病毒病原体的广谱抗性

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Broad spectrum protection against different insects and pathogens requires multigene engineering. However, such broad spectrum protection against biotic stress is provided by a single protein in some medicinal plants. Therefore, tobacco chloroplasts were transformed with the agglutinin gene from Pinellia ternata (pta), a widely cultivated Chinese medicinal herb. Pinellia ternata agglutinin (PTA) was expressed up to 9.2% of total soluble protein in mature leaves. Purified PTA showed similar hemagglutination activity as snowdrop lectin. Artificial diet with purified PTA from transplastomic plants showed marked and broad insecticidal activity. In planta bioassays conducted with T0 or T1 generation PTA lines showed that the growth of aphid Myzus persicae (Sulzer) was reduced by 89%–92% when compared with untransformed (UT) plants. Similarly, the larval survival and total population of whitefly (Bemisia tabaci) on transplastomic lines were reduced by 91%–93% when compared with UT plants. This is indeed the first report of lectin controlling whitefly infestation. When transplastomic PTA leaves were fed to corn earworm (Helicoverpa zea), tobacco budworm (Heliothis virescens) or the beet armyworm (spodoptera exigua), 100% mortality was observed against all these three insects. In planta bioassays revealed Erwinia population to be 10 000-fold higher in control than in PTA lines. Similar results were observed with tobacco mosaic virus (TMV) challenge. Therefore, broad spectrum resistance to homopteran (sap-sucking), Lepidopteran insects as well as anti-bacterial or anti-viral activity observed in PTA lines provides a new option to engineer protection against biotic stress by hyper-expression of an unique protein that is naturally present in a medicinal plant.
机译:针对不同昆虫和病原体的广谱保护需要多岛工程。然而,这种对生物应力的这种广谱保护由一些药用植物中的单一蛋白质提供。因此,用Pinellia Ternata(PTA)的凝集素基因转化烟草叶绿素,是一种广泛种植的中药草药。 Pinellia Ternata alglutinin(PTA)被表达成熟叶中总可溶性蛋白质的9.2%。纯化的PTA显示了与Snowdrop凝集素相似的血凝活性。具有来自移植体植物的纯化PTA的人工饮食显示出明显和广泛的杀虫活性。在用T0或T1生成PTA线进行的Planta生物测定表明,与未转化(UT)植物相比,蚜虫肌瘤Persicae(苏尔寿)的生长减少了89%-92%。类似地,与UT植物相比,移植体系上的幼虫存活率和粉虱(Bemisia Tabaci)上的移植物质系上的总群体减少了91%-93%。这确实是控股粉虱侵染的凝集素的第一个报告。当移植到玉米耳虫(Helicoverpa Zea),烟草芽虫(Heliothis virescens)或甜菜羊膜(Spodoptera exigua),对所有这三种昆虫进行了100%的死亡率。在Planta Bioassays中,Erwinia人群比PTA线在控制中均为10 000倍。用烟草叶片病毒(TMV)攻击观察了类似的结果。因此,在PTA线中观察到均外床(SAP吸吮),鳞翅目昆虫以及抗细菌或抗细菌或抗病毒活性的广谱抗性为通过超级表达的独特蛋白质的超表达来设计了一种新的选择来保护生物应力的新选择天然存在于药用植物中。

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