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The Brassicaceae Family Displays Divergent Shoot-Skewed NLR Resistance Gene Expression

机译:十字花科显示不同的芽歪的NLR抗性基因表达

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摘要

Nucleotide-binding site leucine-rich repeat resistance genes (NLRs) allow plants to detect microbial effectors. We hypothesized that NLR expression patterns could reflect organ-specific differences in effector challenge and tested this by carrying out a meta-analysis of expression data for 1,235 NLRs from nine plant species. We found stable NLR root/shoot expression ratios within species, suggesting organ-specific hardwiring of NLR expression patterns in anticipation of distinct challenges. Most monocot and dicot plant species preferentially expressed NLRs in roots. In contrast, Brassicaceae species, including oilseed rape (Brassica napus) and the model plant Arabidopsis (Arabidopsis thaliana), were unique in showing NLR expression skewed toward the shoot across multiple phylogenetically distinct groups of NLRs. The Brassicaceae are also outliers in the sense that they have lost the common symbiosis signaling pathway, which enables intracellular infection by root symbionts. While it is unclear if these two events are related, the NLR expression shift identified here suggests that the Brassicaceae may have evolved unique pattern-recognition receptors and antimicrobial root metabolites to substitute for NLR protection. Such innovations in root protection could potentially be exploited in crop rotation schemes or for enhancing root defense systems of non-Brassicaceae crops.
机译:核苷酸结合位点富含亮氨酸的重复抗性基因(NLR)使植物能够检测微生物效应物。我们假设NLR表达模式可以反映效应器挑战中的器官特异性差异,并通过对来自9种植物的1,235种NLR的表达数据进行荟萃分析来测试这一点。我们发现物种内稳定的NLR根/芽表达比,表明NLR表达模式的器官特异性硬接线可预期到不同的挑战。大多数单子叶植物和双子叶植物物种在根中优先表达NLR。相反,包括油菜(Brassica napus)和示范植物拟南芥(Arabidopsis thaliana)在内的芸苔科物种在显示NLR表达在多个系统发育不同的NLR组上偏向枝条方面具有独特性。十字花科失去了常见的共生信号传导途径,从而使根共生菌在细胞内感染,因此它们也是离群的。虽然尚不清楚这两个事件是否相关,但此处确定的NLR表达变化表明,十字花科可能已经进化出独特的模式识别受体和抗菌根代谢产物来替代NLR保护。这种根保护方面的创新可能会在作物轮作计划中使用,或用于增强非十字花科植物的根防御系统。

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