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首页> 外文期刊>Plant physiology >The NLR-Annotator Tool Enables Annotation of the Intracellular Immune Receptor Repertoire(1)([OPEN])
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The NLR-Annotator Tool Enables Annotation of the Intracellular Immune Receptor Repertoire(1)([OPEN])

机译:NLR-Annotator工具使细胞内免疫受体曲目(1)的注释([打开])

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摘要

Disease resistance genes encoding nucleotide-binding and leucine-rich repeat (NLR) intracellular immune receptor proteins detect pathogens by the presence of pathogen effectors. Plant genomes typically contain hundreds of NLR-encoding genes. The availability of the hexaploid wheat (Triticum aestivum) cultivar Chinese Spring reference genome allows a detailed study of its NLR complement. However, lowNLRexpression and high intrafamily sequence homology hinder their accurate annotation. Here, we developed NLR-Annotator, a software tool for in silico NLR identification independent of transcript support. Although developed for wheat, we demonstrate the universal applicability of NLR-Annotator across diverse plant taxa. We applied our tool to wheat and combined it with a transcript-validated subset of genes from the reference gene annotation to characterize the structure, phylogeny, and expression profile of theNLRgene family. We detected 3,400 full-length NLR loci, of which 1,560 were confirmed as expressed genes with intact open reading frames. NLRs with integrated domains mostly group in specific subclades. Members of another subclade predominantly locate in close physical proximity to NLRs carrying integrated domains, suggesting a paired helper function. MostNLRs(88%) display low basal expression (in the lower 10 percentile of transcripts). In young leaves subjected to biotic stress, we found up-regulation of 266 of theNLRs. To illustrate the utility of our tool for the positional cloning of resistance genes, we estimated the number ofNLRgenes within the intervals of mapped rust resistance genes. Our study will support the identification of functional resistance genes in wheat to accelerate the breeding and engineering of disease-resistant varieties.
机译:编码核苷酸结合和富含亮氨酸富含亮氨酸的重复(NLR)细胞内免疫受体蛋白通过病原体效应器检测病原体的抗病性基因。植物基因组通常含有数百种NLR编码基因。六倍体小麦(Triticum aestivum)品种中国春季参考基因组的可用性允许详细研究其NLR补充。然而,Lownlrexpression和高胃部序列同源性阻碍了它们的准确注释。在这里,我们开发了NLR-Annotator,该软件工具,用于独立于抄本支持的Silico NLR识别。虽然为小麦开发,但我们展示了NLR-Annotator对各种植物分类群的普遍适用性。我们将工具应用于小麦,并将其与来自参考基因注释的转录验证的基因子集合,以表征Thenlgene家族的结构,系统发育和表达谱。我们检测到3,400个全长NLR基因座,其中1,560件被证实,具有完整的开放阅读框架的表达基因。具有集成域的NLRS大多数是特定亚洲的组。另一个子方法的成员主要定位于携带集成域的NLR的密切物理接近,建议配对辅助功能。 MostNLRS(88%)显示低基础表达(在较低的成绩单中)。在经过生物应激的幼叶中,我们发现了266岁的Therls的调控。为了说明我们工具用于抗性基因的位置克隆的工具,我们估计了在映射抗锈病基因的间隔内的NLRGEN。我们的研究将支持小麦功能性抗性基因的鉴定,以加速抗病品种的育种和工程。

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