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Identification and characterization of wheat long non-protein coding RNAs responsive to powdery mildew infection and heat stress by using microarray analysis and SBS sequencing

机译:利用微阵列分析和SBS测序鉴定和鉴定对白粉病和热胁迫有响应的小麦长非蛋白编码RNA

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Background Biotic and abiotic stresses, such as powdery mildew infection and high temperature, are important limiting factors for yield and grain quality in wheat production. Emerging evidences suggest that long non-protein coding RNAs (npcRNAs) are developmentally regulated and play roles in development and stress responses of plants. However, identification of long npcRNAs is limited to a few plant species, such as Arabidopsis, rice and maize, no systematic identification of long npcRNAs and their responses to abiotic and biotic stresses is reported in wheat. Results In this study, by using computational analysis and experimental approach we identified 125 putative wheat stress responsive long npcRNAs, which are not conserved among plant species. Among them, some were precursors of small RNAs such as microRNAs and siRNAs, two long npcRNAs were identified as signal recognition particle (SRP) 7S RNA variants, and three were characterized as U3 snoRNAs. We found that wheat long npcRNAs showed tissue dependent expression patterns and were responsive to powdery mildew infection and heat stress. Conclusion Our results indicated that diverse sets of wheat long npcRNAs were responsive to powdery mildew infection and heat stress, and could function in wheat responses to both biotic and abiotic stresses, which provided a starting point to understand their functions and regulatory mechanisms in the future.
机译:背景技术生物和非生物胁迫,例如白粉病感染和高温,是限制小麦产量和谷物品质的重要因素。新兴证据表明,长的非蛋白质编码RNA(npcRNA)在发育上受到调节,并在植物的发育和胁迫反应中发挥作用。但是,长npcRNA的鉴定仅限于一些植物物种,例如拟南芥,水稻和玉米,没有关于长npcRNA的系统鉴定及其对非生物和生物胁迫的反应的报道。结果在这项研究中,通过使用计算分析和实验方法,我们鉴定了125种推定的小麦胁迫响应性长npcRNA,这些植物中并不保守。其中,一些是小RNA的前体,例如microRNA和siRNA,两个长npcRNA被鉴定为信号识别颗粒(SRP)7S RNA变异体,三个被表征为U3 snoRNA。我们发现小麦长npcRNAs显示出组织依赖性的表达模式,并且对白粉病和热应激有反应。结论我们的结果表明,不同类型的小麦长npcRNA对白粉病感染和热胁迫有响应,并且可以在小麦对生物和非生物胁迫的响应中起作用,这为了解它们的功能和调控机制提供了一个起点。

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