首页> 美国卫生研究院文献>other >Narrow-Leafed Lupin (Lupinus angustifolius) β1- and β6-Conglutin Proteins Exhibit Antifungal Activity Protecting Plants against Necrotrophic Pathogen Induced Damage from Sclerotinia sclerotiorum and Phytophthora nicotianae
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Narrow-Leafed Lupin (Lupinus angustifolius) β1- and β6-Conglutin Proteins Exhibit Antifungal Activity Protecting Plants against Necrotrophic Pathogen Induced Damage from Sclerotinia sclerotiorum and Phytophthora nicotianae

机译:羽扇豆羽扇豆(Lupinus angustifolius)β1-和β6-Conglutin蛋白表现出抗真菌活性保护植物免受坏死性病原体诱导的菌核病菌和烟草疫霉菌的伤害

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摘要

Vicilins (7S globulins) are seed storage proteins and constitute the main protein family in legume seeds, particularly in narrow-leafed lupin (Lupinus angustifolius L.; NLL), where seven vicilin genes, called β1- to β7-conglutin have been identified. Vicilins are involved in germination processes supplying amino acids for seedling growth and plant development, as well as in some cases roles in plant defense and protection against pathogens. The roles of NLL β-conglutins in plant defense are unknown. Here the potential role of five NLL β-conglutin family members in protection against necrotrophic fungal pathogens was investigated and it was demonstrated that recombinant purified 6xHis-tagged β1- and β6-conglutin proteins exhibited the strongest in vitro growth inhibitory activity against a range of necrotrophic fungal pathogens compared to β2, β3, and β4 conglutins. To examine activity in vivo, two representative necrotrophic pathogens, the fungus Sclerotinia sclerotiorum and oomycete Phytophthora nicotianae were used. Transient expression of β1- and β6-conglutin proteins in Nicotiana benthamiana leaves demonstrated in vivo growth suppression of both of these pathogens, resulting in low percentages of hyphal growth and elongation in comparison to control treated leaves. Cellular studies using β1- and β6-GFP fusion proteins showed these conglutins localized to the cell surface including plasmodesmata. Analysis of cellular death following S. sclerotiorum or P. nicotianae revealed both β1- and β6-conglutins suppressed pathogen induced cell death in planta and prevented pathogen induced suppression of the plant oxidative burst as determined by protein oxidation in infected compared to mock-inoculated leaves.
机译:豌豆球蛋白(7S球蛋白)是种子存储蛋白,并构成豆类种子中的主要蛋白家族,尤其是在阔叶羽扇豆羽扇豆(羽扇豆羽扇豆)中,其中已鉴定出7种豌豆球蛋白基因,称为β1-β7-凝集素。毒菌素参与发芽过程,为幼苗生长和植物发育提供氨基酸,并在某些情况下在植物防御和防御病原体中发挥作用。 NLLβ-凝集素在植物防御中的作用尚不清楚。在此研究了五个NLLβ-凝集素家族成员在防御坏死性真菌病原体中的潜在作用,并证明了重组纯化的6xHis标记的β1-和β6-conglutin蛋白对一系列坏死性菌表现出最强的体外生长抑制活性。真菌病原体与β2,β3和β4凝集素相比。为了检查体内活性,使用了两种代表性的坏死性病原体,真菌菌核盘菌(Sclerotiorum sclerotiorum)和卵菌性烟草疫霉(Phytophthora nicotianae)。 β1-和β6-凝集素蛋白在本氏烟草叶片中的瞬时表达证明了这两种病原体的体内生长抑制,与对照处理的叶片相比,菌丝生长和伸长的百分比较低。使用β1-和β6-GFP融合蛋白进行的细胞研究表明,这些凝集素位于细胞表面,包括浆膜。菌核病菌或烟草假单胞菌后的细胞死亡分析表明,β1-和β6-凝集素均能抑制病原体诱导的植物细胞死亡,并能防止病原体诱导的抑制植物氧化爆发,这与通过模拟接种的叶片相比,通过蛋白质氧化来确定。

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