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从感染大麦云纹病菌的大麦(Hordeum vulgare L.)叶片中分离真菌细胞壁降解蛋白。

Isolation of fungal cell wall degrading proteins from barley (Hordeum vulgare L.) leaves infected with Rhynchosporium secalis.

作者信息

Zareie Reza, Melanson Dara L, Murphy Peter J

机构信息

Department of Applied and Molecular Ecology, Adelaide University, Glen Osmond, South Australia.

出版信息

Mol Plant Microbe Interact. 2002 Oct;15(10):1031-9. doi: 10.1094/MPMI.2002.15.10.1031.

DOI:10.1094/MPMI.2002.15.10.1031
PMID:12437301
Abstract

Proteins with antifungal activity towards Rhynchosporium secalis conidia were isolated from the intercellular washing fluid (IWF) of barley leaves. The active components were purified by high-performance liquid chromatography under conditions that maintained biological activity. Five major barley IWF proteins deleterious to the cell wall of viable R. secalis conidia were isolated and identified by a combination of N-terminal amino acid sequencing, peptide mapping, and determination of mass and isoelectric point. They were a 32-kDa beta-1,3-glucanase (Pr32), a 25-kDa chitinase (Pr25), and three 22-kDa thaumatin-like (TL) proteins (Pr22-1, Pr22-2, and Pr22-3). Pr22-1 and Pr22-2 were similar to the protein R class of TL proteins, whereas Pr22-3 was more similar to the S class. Pr22-3 was shown to digest laminarin, indicating that this TL protein has glucanase activity. In addition, Pr22-3 was more active in the spore bioassay than Pr22-2. Various combinations of the five proteins had a greater effect on R. secalis spores than did the individual proteins. The extraction of proteins with antifungal activity from the IWF of barley leaves indicates their possible role in defense against leaf pathogens. A similar bioassay may be developed for other systems to identify particular isoforms of pathogenicity-related proteins that might have a role in plant disease resistance.

摘要

从大麦叶片的细胞间洗液(IWF)中分离出了对大麦网斑病菌分生孢子具有抗真菌活性的蛋白质。在保持生物活性的条件下,通过高效液相色谱法对活性成分进行了纯化。通过N端氨基酸测序、肽图谱分析以及质量和等电点测定相结合的方法,分离并鉴定了五种对存活的大麦网斑病菌分生孢子细胞壁有害的主要大麦IWF蛋白。它们分别是一种32 kDa的β-1,3-葡聚糖酶(Pr32)、一种25 kDa的几丁质酶(Pr25)以及三种22 kDa的类thaumatin(TL)蛋白(Pr22-1、Pr22-2和Pr22-3)。Pr22-1和Pr22-2与TL蛋白的R类蛋白相似,而Pr22-3与S类蛋白更相似。Pr22-3被证明能消化海带多糖,表明这种TL蛋白具有葡聚糖酶活性。此外,在孢子生物测定中,Pr22-3比Pr22-2更具活性。这五种蛋白质的各种组合对大麦网斑病菌孢子的影响比单一蛋白质更大。从大麦叶片IWF中提取具有抗真菌活性的蛋白质表明它们在抵御叶片病原体方面可能发挥的作用。对于其他系统,可能会开发类似的生物测定方法,以鉴定可能在植物抗病性中起作用的致病性相关蛋白质的特定异构体。

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