Thiel Heike, Varrelmann Mark
Department of Crop Sciences, Section Plant Virology, University of Göttingen, Grisebachstrasse 6, D-37077 Göttingen, Germany.
Mol Plant Microbe Interact. 2009 Aug;22(8):999-1010. doi: 10.1094/MPMI-22-8-0999.
Beet necrotic yellow vein virus (BNYVV) induces the most important disease threatening sugar beet. The growth of partially resistant hybrids carrying monogenic dominant resistance genes stabilize yield but are unable to entirely prevent virus infection and replication. P25 is responsible for symptom development and previous studies have shown that recently occurring resistance-breaking isolates possess increased P25 variability. To better understand the viral pathogenicity factor's interplay with plant proteins and to possibly unravel the molecular basis of sugar beet antivirus resistance, P25 was applied in a yeast two-hybrid screen of a resistant sugar beet cDNA library. This screen identified candidate proteins recognized as orthologues from other plant species which are known to be expressed following pathogen infection and involved in plant defense response. Most of the candidates potentially related to host-pathogen interactions were involved in the ubiquitylation process and plants response to stress, and were part of cell and metabolism components. The interaction of several candidate genes with P25 was confirmed in Nicotiana benthamiana leaf cells by transient agrobacterium-mediated expression applying bimolecular fluorescence complementation assay. The putative functions of several of the candidates identified support previous findings and present first targets for understanding the BNYVV pathogenicity and antivirus resistance mechanism.
甜菜坏死黄脉病毒(BNYVV)引发了对甜菜威胁最大的病害。携带单基因显性抗性基因的部分抗性杂交种的生长能稳定产量,但无法完全阻止病毒感染和复制。P25负责症状发展,先前的研究表明,最近出现的抗性突破分离株具有更高的P25变异性。为了更好地理解病毒致病因子与植物蛋白的相互作用,并可能揭示甜菜抗病毒抗性的分子基础,在一个抗性甜菜cDNA文库的酵母双杂交筛选中应用了P25。该筛选鉴定出了被认为是来自其他植物物种直系同源物的候选蛋白,已知这些蛋白在病原体感染后表达并参与植物防御反应。大多数可能与宿主 - 病原体相互作用相关的候选蛋白都参与了泛素化过程和植物对胁迫的反应,并且是细胞和代谢成分的一部分。通过瞬时农杆菌介导的表达,应用双分子荧光互补分析在本氏烟草叶细胞中证实了几个候选基因与P25的相互作用。所鉴定的几个候选蛋白的推定功能支持了先前的研究结果,并为理解BNYVV致病机制和抗病毒抗性机制提供了首批靶点。