Schweizer P, Christoffel A, Dudler R
Institute of Plant Biology, University of Zürich, Zollikerstrasse 107, CH-8008 Zürich, Switzerland.
Plant J. 1999 Dec;20(5):541-52. doi: 10.1046/j.1365-313x.1999.00624.x.
The wheat genome encodes a family of germin-like proteins that differ with respect to regulation and tissue specificity of expression of the corresponding genes. While germin exhibits oxalate oxidase (E.C. 1.2.3.4.) activity, the germin-like proteins (GLPs) have no known enzymatic activity. A role of oxalate oxidase in plant defence has been proposed, based on the capacity of the enzyme to produce H2O2, a reactive oxygen species. The role in defence of germin and other members of the germin-like gene family was functionally assessed in a transient assay system based on particle bombardment of wheat leaves. Transient expression of the pathogen-induced germin gf-2.8 gene, but not of the constitutively expressed HvGLP1 gene, reduced the penetration efficiency of Blumeria (syn. Erysiphe) graminis f.sp. tritici, the causal agent of wheat powdery mildew, on transformed cells. Two engineered germin-gf-2.8 genes and the TaGLP2a gene, which all encoded proteins without oxalate oxidase activity, also reduced the penetration efficiency of the fungus, demonstrating that oxalate oxidase activity is not required for conferring enhanced resistance. Instead, activity tagging experiments showed that in cells transiently expressing the germin gf-2.8 gene, the transgene product became insolubilized at sites of attempted fungal penetration where localised production of H2O2 was observed. Thus, germin and GLPs may play a structural role in cell-wall re-enforcement during pathogen attack.
小麦基因组编码一类与萌发素类似的蛋白,这些蛋白在相应基因表达的调控和组织特异性方面存在差异。虽然萌发素具有草酸氧化酶(E.C. 1.2.3.4.)活性,但与萌发素类似的蛋白(GLPs)尚无已知的酶活性。基于该酶产生活性氧物质过氧化氢的能力,有人提出草酸氧化酶在植物防御中发挥作用。在基于小麦叶片粒子轰击的瞬时分析系统中,对萌发素及萌发素类似基因家族其他成员在防御中的作用进行了功能评估。病原体诱导的萌发素gf - 2.8基因的瞬时表达,而非组成型表达的HvGLP1基因的瞬时表达,降低了小麦白粉病病原体小麦白粉菌(Blumeria (syn. Erysiphe) graminis f.sp. tritici)在转化细胞上的穿透效率。两个经过工程改造的萌发素 - gf - 2.8基因以及TaGLP2a基因,它们编码的蛋白均无草酸氧化酶活性,也降低了真菌的穿透效率,这表明赋予增强抗性并不需要草酸氧化酶活性。相反,活性标签实验表明,在瞬时表达萌发素gf - 2.8基因的细胞中,转基因产物在真菌试图穿透的部位变得不可溶,在这些部位观察到了过氧化氢的局部产生。因此,萌发素和GLPs可能在病原体攻击期间的细胞壁强化中发挥结构作用。