Bange Gert, Altegoer Florian
Center for Synthetic Microbiology (SYNMIKRO) and Department of Chemistry, Philipps-University Marburg, Marburg, Germany.
Commun Integr Biol. 2019 Feb 26;12(1):31-33. doi: 10.1080/19420889.2019.1586049. eCollection 2019.
Plants have to cope with numerous stresses in nature to avoid damage or cell death. We recently reported a class of plant defense proteins termed kiwellins that were initially found in kiwifruit and shown to be causative to human food allergies. While kiwifruits among other domestic fruits always contain high amounts of kiwellin protein, available transcriptome data indicate an up-regulation of kiwellin genes upon pathogen contact in various other plants. In the case of an interaction between maize plant and the smut fungus Ustilago maydis, we could identify one kiwellin (termed: ZmKWL1) highly up-regulated in response to pathogen attack. During infection of the maize plant, U. maydis secretes numerous effector proteins that modulate the host. Among 20 predicted kiwellins, ZmKWL1 specifically inhibits the metabolic activity of the secreted fungal chorismate mutase 1 (Cmu1). We expand the current knowledge on kiwellins and describe a novel class of versatile plant defense proteins.
植物必须应对自然界中的多种胁迫,以避免损伤或细胞死亡。我们最近报道了一类名为基维林的植物防御蛋白,它们最初在猕猴桃中被发现,并被证明是人类食物过敏的病因。虽然猕猴桃以及其他国产水果中总是含有大量的基维林蛋白,但现有的转录组数据表明,在各种其他植物中,病原体接触后基维林基因会上调。在玉米植株与黑粉菌玉米黑粉菌相互作用的情况下,我们可以鉴定出一种在病原体攻击后高度上调的基维林(称为:ZmKWL1)。在玉米植株感染期间,玉米黑粉菌分泌多种调节宿主的效应蛋白。在20种预测的基维林中,ZmKWL1特异性抑制分泌的真菌分支酸变位酶1(Cmu1)的代谢活性。我们扩展了目前关于基维林的知识,并描述了一类新型的多功能植物防御蛋白。