Krause Katrin, Kothe Erika
University of Jena, Dept. Microbiology, Microbial Phytopathology, Neugasse 25, D-07743 Jena, Germany.
J Basic Microbiol. 2006;46(5):387-99. doi: 10.1002/jobm.200610153.
The ecosystem soil is characterized by interactions between microorganisms and plants including mycorrhiza--mutualistic interactions between fungi and plant roots. Species of the basidiomycete genus Tricholoma form ectomycorrhiza with tree roots which is characterized by morphological and metabolic changes of both partners, yet molecular mechanisms of the interaction are poorly understood. We performed differential display with arbitrarily primed RT-PCR using ectomycorrhiza between the basidiomycete Tricholoma vaccinum and its compatible host spruce (Picea abies) to isolate mycorrhiza-specific fungal gene fragments. 76 differentially expressed PCR fragments were verified and checked for plant or fungal origin and expression pattern. Of 20 fungal fragments with mycorrhiza-specific expression, sequence analyses were performed to identify homologs with known function of the encoded protein. Among the genes identified were orthologs to an aldehyde dehydrogenase, an alcohol dehydrogenase and a protein of the MATE transporter family, all with possible function in plant pathogen response. A phospholipase B, a beta-glucosidase and a binding protein of basic amino acids might play a role in nutrient exchange and growth in planta. A protein similar to inactive E2 compounds of ubiquitin-conjugating enzymes like CROC-1 and MMS2, a Ras protein and an APS kinase were placed in signal transduction and two retrotransposons of the Ty3-gypsy and the Ty1-copia family are expressed most likely due to stress.
生态系统土壤的特征在于微生物与植物之间的相互作用,包括菌根——真菌与植物根系之间的互利共生相互作用。口蘑属担子菌与树根形成外生菌根,其特征是双方在形态和代谢上发生变化,但这种相互作用的分子机制却知之甚少。我们利用担子菌牛肝菌与其兼容宿主云杉(欧洲云杉)之间的外生菌根,通过任意引物逆转录聚合酶链反应进行差异显示,以分离菌根特异性真菌基因片段。对76个差异表达的PCR片段进行了验证,并检查其植物或真菌来源及表达模式。对20个具有菌根特异性表达的真菌片段进行了序列分析,以鉴定与编码蛋白已知功能的同源物。鉴定出的基因中有醛脱氢酶、醇脱氢酶和多药和有毒化合物排出转运蛋白家族蛋白的直系同源物,它们在植物病原体反应中都可能具有功能。磷脂酶B、β-葡萄糖苷酶和碱性氨基酸结合蛋白可能在植物体内的营养交换和生长中发挥作用。一种类似于泛素结合酶(如CROC-1和MMS2)的无活性E2化合物的蛋白、一种Ras蛋白和一种APS激酶参与信号转导,而Ty3-gypsy和Ty1-copia家族的两个逆转录转座子最有可能因应激而表达。