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寄生疫霉烟草变种的CBEL糖蛋白参与细胞壁沉积以及与纤维素底物的黏附。

The CBEL glycoprotein of Phytophthora parasitica var-nicotianae is involved in cell wall deposition and adhesion to cellulosic substrates.

作者信息

Gaulin Elodie, Jauneau Alain, Villalba François, Rickauer Martina, Esquerré-Tugayé Marie-Thérèse, Bottin Arnaud

机构信息

UMR 5546 UPS-CNRS, Pôle de Biotechnologie Végétale, 24 Chemin de Borde-Rouge, BP17, Auzeville, F-31326 Castanet-Tolosan, France.

出版信息

J Cell Sci. 2002 Dec 1;115(Pt 23):4565-75. doi: 10.1242/jcs.00138.

Abstract

The cell wall of the oomycete plant pathogen Phytophthora parasitica var. nicotianae contains a protein called CBEL that shows cellulose-binding (CB), elicitor (E) of defense in plants and lectin-like (L) activities. The biological role of this molecule in Phytophthora was investigated by generating transgenic strains suppressed in CBEL expression. Phenotypic characterization of these strains showed that they were severely impaired in adhesion to a cellophane membrane, differentiation of lobed structures in contact with cellophane, and formation of branched aggregating hyphae on cellophane and on flax cellulose fibres. Infection assays revealed that the strains suppressed in CBEL expression were not greatly affected in pathogenicity and formed branched aggregating hyphae in contact with the roots of the host plant, thereby indicating that CBEL is involved in the perception of cellulose rather than in the morphogenesis of hyphal aggregates. Interestingly, the absence of CBEL was correlated with abnormal formation of papillae-like cell wall thickenings in vitro, suggesting that CBEL is involved in cell wall deposition in Phytophthora. Reverse genetics in oomycetes has long been hampered by their diploid nature and difficulties in transformation and regeneration. The gene inactivation approach reported in this work provides the first direct evidence for intrinsic functions of an elicitor and cell wall protein in oomycetes.

摘要

卵菌植物病原菌寄生疫霉烟草变种的细胞壁含有一种名为CBEL的蛋白质,该蛋白质具有纤维素结合(CB)、诱导植物防御(E)和类凝集素(L)活性。通过构建CBEL表达受抑制的转基因菌株,研究了该分子在疫霉中的生物学作用。对这些菌株的表型特征分析表明,它们在与玻璃纸膜的黏附、与玻璃纸接触时叶状结构的分化以及在玻璃纸和亚麻纤维素纤维上形成分支聚集菌丝方面均严重受损。感染试验表明,CBEL表达受抑制的菌株在致病性方面未受到很大影响,并且在与寄主植物根系接触时形成分支聚集菌丝,这表明CBEL参与纤维素的感知而非菌丝聚集体的形态发生。有趣的是,CBEL的缺失与体外乳头状细胞壁增厚的异常形成相关,这表明CBEL参与疫霉细胞壁的沉积。卵菌的反向遗传学长期以来一直受到其二倍体性质以及转化和再生困难的阻碍。这项工作中报道的基因失活方法为卵菌中诱导子和细胞壁蛋白的内在功能提供了首个直接证据。

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