首页> 外文期刊>Fungal Genetics and Biology >Sending mixed signals: redundancy vs. uniqueness of signaling components in the plant pathogen, Ustilago maydis.
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Sending mixed signals: redundancy vs. uniqueness of signaling components in the plant pathogen, Ustilago maydis.

机译:发送混合信号:植物病原体Ustilago maydis中信号组件的冗余度与唯一性。

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摘要

The ability to respond to a changing environment separates successful organisms from their competitors. Thus, signal transduction is a crucial aspect of an organism's growth, development, differentiation, and reproduction. Nowhere is this more evident than in the co-evolution of obligate pathogens with their host organisms. The genome sequence of Ustilago maydis, the pathogen of maize, has provided a powerful tool in the assessment and characterization of signaling pathways for this organism. Inspection of the sequence reveals that while U. maydis has a streamlined gene content, it appears to contain a full repertoire of the standard signaling cascades present in other fungi. A full range of paralogues are present to provide redundancy of function on the one hand while, on the other, distinct strategies for survival. This review explores signaling based on the conserved mitogen-activated protein (MAP) kinase and cAMP-dependent protein kinase A (PKA) pathways as well as ancillary functions, with emphasis on the unique aspects of the U. maydis approach to utilizing this architecture.
机译:应对不断变化的环境的能力将成功的生物与竞争者区分开来。因此,信号转导是生物体生长,发育,分化和繁殖的关键方面。在专性病原体与其宿主生物共同进化中,这是最明显的。玉米的病原体美天蛾(Ustilago maydis)的基因组序列为该生物的信号传导途径的评估和表征提供了强大的工具。对该序列的检查表明,尽管梅氏疟原虫具有简化的基因含量,但它似乎包含存在于其他真菌中的标准信号级联的全部组成部分。存在各种各样的旁系同源物,以一方面提供功能的冗余,另一方面提供独特的生存策略。这篇综述基于保守的促丝裂原活化蛋白(MAP)激酶和依赖cAMP的蛋白激酶A(PKA)途径以及辅助功能,探索信号传导,并着重介绍了U. maydis方法利用该结构的独特之处。

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