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真核麦芽糖转运蛋白的功能表征。

Functional characterization of a eukaryotic melibiose transporter.

机构信息

Molecular Plant Physiology, Friedrich-Alexander-Universität Erlangen-Nürnberg, D-91058 Erlangen, Germany.

出版信息

Plant Physiol. 2011 Jul;156(3):1565-76. doi: 10.1104/pp.111.178624. Epub 2011 May 18.

Abstract

Pathogenic fungi drastically affect plant health and cause significant losses in crop yield and quality. In spite of their impact, little is known about the carbon sources used by these fungi in planta and about the fungal transporters importing sugars from the plant-fungus interface. Here, we report on the identification and characterization of MELIBIOSE TRANSPORTER1 (MBT1) from the hemibiotrophic fungus Colletotrichum graminicola (teleomorph Glomerella graminicola), the causal agent of leaf anthracnose and stalk rot disease in maize (Zea mays). Functional characterization of the MBT1 protein in baker's yeast (Saccharomyces cerevisiae) expressing the MBT1 cDNA revealed that α-D-galactopyranosyl compounds such as melibiose, galactinol, and raffinose are substrates of MBT1, with melibiose most likely being the preferred substrate. α-D-glucopyranosyl disaccharides like trehalose, isomaltose, or maltose are also accepted by MBT1, although with lower affinities. The MBT1 gene shows low and comparable expression levels in axenically grown C. graminicola and upon infection of maize leaves both during the initial biotrophic development of the fungus and during the subsequent necrotrophic phase. Despite these low levels of MBT1 expression, the MBT1 protein allows efficient growth of C. graminicola on melibiose as sole carbon source in axenic cultures. Although Δmbt1 mutants are unable to grow on melibiose, they do not show virulence defects on maize.

摘要

病原真菌严重影响植物健康,并导致作物产量和质量的重大损失。尽管它们有影响,但人们对这些真菌在植物体内使用的碳源以及从植物-真菌界面导入糖的真菌转运蛋白知之甚少。在这里,我们报道了半活体真菌胶孢炭疽菌(Glomerella graminicola 的同形物)MBT1 的鉴定和特征,该菌是玉米叶炭疽病和茎腐病的病原体。在表达 MBT1 cDNA 的面包酵母(Saccharomyces cerevisiae)中对 MBT1 蛋白的功能特征进行了表征,结果表明 α-D-半乳糖吡喃糖苷化合物,如棉子糖、半乳糖醇和棉子糖,是 MBT1 的底物,而棉子糖很可能是首选底物。α-D-葡萄糖吡喃糖苷二糖,如海藻糖、异麦芽糖或麦芽糖,也被 MBT1 接受,尽管亲和力较低。MBT1 基因在无菌培养的胶孢炭疽菌中表达水平较低且相似,并且在真菌的初始生物营养发育和随后的坏死营养阶段感染玉米叶片时,MBT1 基因的表达水平也较低。尽管 MBT1 的表达水平较低,但 MBT1 蛋白允许胶孢炭疽菌在无菌培养物中以棉子糖作为唯一碳源有效生长。尽管 Δmbt1 突变体不能在棉子糖上生长,但它们在玉米上没有表现出毒力缺陷。

相似文献

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Functional characterization of a eukaryotic melibiose transporter.真核麦芽糖转运蛋白的功能表征。
Plant Physiol. 2011 Jul;156(3):1565-76. doi: 10.1104/pp.111.178624. Epub 2011 May 18.

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