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来自甜菜(Beta vulgaris L.)的与非特异性脂质转移蛋白具有同源性的新型抗真菌蛋白。

New antifungal proteins from sugar beet (Beta vulgaris L.) showing homology to non-specific lipid transfer proteins.

作者信息

Nielsen K K, Nielsen J E, Madrid S M, Mikkelsen J D

机构信息

Danisco Biotechnology, Copenhagen, Denmark.

出版信息

Plant Mol Biol. 1996 Jun;31(3):539-52. doi: 10.1007/BF00042227.

Abstract

Two novel, nearly identical antifungal proteins, IWF1 and IWF2, were isolated from the intercellular washing fluid (IWF) of sugar beet leaves. The proteins were purified to homogeneity and their amino acid sequences were determined. They are basic, monomeric proteins of 91 amino acid residues, 89 of which are identical. Both proteins show strong in vitro antifungal activity against Cercospora beticola, the casual agent of leaf spot disease in sugar beet. Based on primary sequence homology, including the presence of 8 conserved cysteine residues, IWF1 and IWF2 are related to the family of plant non-specific lipid transfer proteins (nsLTPs). Antibodies were raised against IWF2 after conjugation to diphtheria toxoid. The amino acid sequence data was used to generate a polymerase chain reaction (PCR) clone, employed for the isolation of a cDNA clone encoding a closely related isoform IWFA, which differs from IWF1 by two amino acid substitutions only. The induction and subcellular localization of these proteins were studied by western and northern blotting analyses after treatment with 2,6-dichloroisonicotinic acid (INA), a compound capable of inducing resistance against C. beticola, and after fungal infection. The following observations were made: (1) the proteins were present in leaves of non-INA-treated and uninfected control plants, (2) they were only slightly induced by INA treatment and during infection with C. beticola, and (3) they were present both intra- and extracellularly. However, their strong antifungal potentials together with immunohistological investigations, the proteins accumulating in contact with the fungus and in autolysing cells, suggested a role of these proteins in plant defence. Finally, immunohistology revealed a remarkable expression pattern of the IWF1 and IWF2 proteins, or serologically related proteins, in sugar beet styles, in that single or a few scattered papillae and a few cells in the lower transmitting tissue strongly and specifically reacted with the antibody.

摘要

从甜菜叶片的细胞间洗液(IWF)中分离出两种新型的、几乎相同的抗真菌蛋白IWF1和IWF2。这些蛋白质被纯化至同质,并测定了它们的氨基酸序列。它们是由91个氨基酸残基组成的碱性单体蛋白,其中89个氨基酸相同。两种蛋白质在体外均对甜菜尾孢菌(甜菜叶斑病的病原体)表现出强烈的抗真菌活性。基于一级序列同源性,包括8个保守半胱氨酸残基的存在,IWF1和IWF2与植物非特异性脂质转移蛋白(nsLTPs)家族相关。将IWF2与白喉类毒素偶联后制备了抗体。氨基酸序列数据用于生成聚合酶链反应(PCR)克隆,该克隆用于分离编码密切相关的同工型IWFA的cDNA克隆,IWFA与IWF1仅在两个氨基酸取代上有所不同。在用能够诱导对甜菜尾孢菌抗性的化合物2,6-二氯异烟酸(INA)处理后以及真菌感染后,通过蛋白质免疫印迹和Northern印迹分析研究了这些蛋白质的诱导和亚细胞定位。得到了以下观察结果:(1)这些蛋白质存在于未用INA处理和未感染的对照植物的叶片中;(2)它们仅在INA处理和甜菜尾孢菌感染期间受到轻微诱导;(3)它们在细胞内和细胞外均有存在。然而,它们强大的抗真菌潜力以及免疫组织学研究表明,这些蛋白质在与真菌接触的细胞和自溶细胞中积累,提示这些蛋白质在植物防御中发挥作用。最后,免疫组织学揭示了IWF1和IWF2蛋白或血清学相关蛋白在甜菜花柱中的显著表达模式,即单个或少数分散的乳头以及下部传递组织中的少数细胞与抗体发生强烈且特异性的反应。

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