首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >An inhibitory interaction between viral and cellular proteins underlies the resistance of tomato to nonadapted tobamoviruses
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An inhibitory interaction between viral and cellular proteins underlies the resistance of tomato to nonadapted tobamoviruses

机译:病毒和细胞蛋白之间的抑制性相互作用是番茄对非适应性烟草花叶病毒的抗性的基础

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摘要

Any individual virus can infect only a limited range of hosts, and most plant species are “nonhosts” to a given virus; i.e., all members of the species are insusceptible to the virus. In nonhost plants, the factors that control virus resistance are not genetically tractable, and how the host range of a virus is determined remains poorly understood. Tomato (Solanum lycopersicum) is a nonhost species for Tobacco mild green mosaic virus (TMGMV) and Pepper mild mottle virus (PMMoV), members of the genus Tobamovirus. Previously, we identified Tm-1, a resistance gene of tomato to another tobamovirus, Tomato mosaic virus (ToMV), and found that Tm-1 binds to ToMV replication proteins to inhibit RNA replication. Tm-1 is derived from a wild tomato species, S. habrochaites, and ToMV-susceptible tomato cultivars have the allelic gene tm-1. The tm-1 protein can neither bind to ToMV replication proteins nor inhibit ToMV multiplication. Here, we show that transgenic tobacco plants expressing tm-1 exhibit resistance to TMGMV and PMMoV. The tm-1 protein bound to the replication proteins of TMGMV and PMMoV and inhibited their RNA replication in vitro. In one of the tm-1-expressing tobacco plants, a tm-1-insensitive TMGMV mutant emerged. In tomato protoplasts, this mutant TMGMV multiplied as efficiently as ToMV. However, in tomato plants, the mutant TMGMV multiplied with lower efficiency compared to ToMV and caused systemic necrosis. These results suggest that an inhibitory interaction between the replication proteins and tm-1 underlies a multilayered resistance mechanism to TMGMV in tomato.
机译:任何一种病毒都只能感染有限范围的宿主,大多数植物是给定病毒的“非宿主”。即,该物种的所有成员均对病毒不敏感。在非寄主植物中,控制病毒抗性的因素在遗传上不易理解,如何确定病毒的寄主范围仍知之甚少。番茄(Solanum lycopersicum)是烟草轻型绿色花叶病毒(TMGMV)和胡椒轻型斑驳病毒(PMMoV)(烟草花叶病毒属的成员)的非寄主物种。以前,我们鉴定了Tm-1(番茄对另一种烟草花叶病毒番茄花叶病毒(ToMV)的抗性基因),并发现Tm-1与ToMV复制蛋白结合以抑制RNA复制。 Tm-1衍生自野生番茄物种S. habrochaites,ToMV易感番茄品种具有等位基因tm-1。 tm-1蛋白既不能与ToMV复制蛋白结合,也不能抑制ToMV繁殖。在这里,我们表明表达tm-1的转基因烟草植物表现出对TMGMV和PMMoV的抗性。 tm-1蛋白与TMGMV和PMMoV的复制蛋白结合,并在体外抑制其RNA复制。在一种表达tm-1的烟草植物中,出现了对tm-1不敏感的TMGMV突变体。在番茄原生质体中,这种突变TMGMV的繁殖效率与ToMV一样高。但是,在番茄植株中,突变型TMGMV的繁殖效率比ToMV低,并引起系统性坏死。这些结果表明,复制蛋白与tm-1之间的抑制性相互作用是番茄对TMGMV的多层抗性机制的基础。

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