Tsavkelova Elena A, Bömke Christiane, Netrusov Alexander I, Weiner January, Tudzynski Bettina
Westfälische Wilhelms-Universität Münster, Institut für Botanik, Schlossgarten3, 48149 Münster, Germany.
Fungal Genet Biol. 2008 Oct;45(10):1393-403. doi: 10.1016/j.fgb.2008.07.011. Epub 2008 Jul 24.
The rice pathogen Fusarium fujikuroi is well known for its ability to produce the plant hormones gibberellins (GAs). However, the majority of closely related Fusarium species is unable to produce GAs although the GA gene cluster is present in their genomes. In this study, we analyzed five orchid-associated Fusarium isolates for their capacity to produce GAs. Four of them did not produce any GAs and were shown not to contain any GA biosynthetic genes. However, the fifth isolate, which has been identified as F. proliferatum based on five molecular markers, produced significant amounts of GAs in contrast to previously characterized F. proliferatum strains. We focused on the molecular characterization of two GA-specific genes, ggs2 and cps/ks, both inactive in F. proliferatum strain D-02945. Complementation of a F. fujikuroi Deltaggs2 mutant with the ET1 ggs2 gene fully restored GA biosynthesis, confirming that the orchid-associated isolate contains an active gene copy. A possible correlation between GA production and their role in plant-fungal interactions is discussed.
水稻病原菌藤仓镰孢菌以其产生植物激素赤霉素(GAs)的能力而闻名。然而,尽管大多数密切相关的镰孢菌物种基因组中存在GA基因簇,但它们却无法产生GAs。在本研究中,我们分析了五株与兰花相关的镰孢菌分离株产生GAs的能力。其中四株不产生任何GAs,且被证明不含有任何GA生物合成基因。然而,基于五个分子标记被鉴定为层出镰孢菌的第五株分离株,与先前表征的层出镰孢菌菌株相比,产生了大量的GAs。我们着重对两个GA特异性基因ggs2和cps/ks进行了分子表征,这两个基因在层出镰孢菌菌株D - 02945中均无活性。用ET1 ggs2基因对藤仓镰孢菌Deltaggs2突变体进行互补,完全恢复了GA生物合成,证实与兰花相关的分离株含有一个活性基因拷贝。本文还讨论了GA产生与其在植物 - 真菌相互作用中的作用之间可能存在的相关性。