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Comparative Transcriptome Profiles of Near-Isogenic Hexaploid Wheat Lines Differing for Effective Alleles at the 2DL FHB Resistance QTL

机译:在2DL FHB抗性QTL下,有效等位基因不同的近等基因六倍体小麦品系的比较转录组谱

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Fusarium head blight (FHB), caused by the fungus Fusarium graminearum , represents one of the major wheat diseases worldwide, determining severe yield losses and reduction of grain quality due to the accumulation of mycotoxins. The molecular response associated with the wheat 2DL FHB resistance QTL was mined through a comprehensive transcriptomic analysis of the early response to F. graminearum infection, at 3 days post-inoculation, in spikelets and rachis. The analyses were conducted on two near isogenic lines (NILs) differing for the presence of the 2DL QTL (2-2618, resistant 2DL+ and 2-2890, susceptible null). The general response to fungal infection in terms of mRNAs accumulation trend was similar in both NILs, even though involving an higher number of DEGs in the susceptible NIL, and included down-regulation of the primary and energy metabolism, up-regulation of enzymes implicated in lignin and phenylpropanoid biosynthesis, activation of hormons biosynthesis and signal transduction pathways and genes involved in redox homeostasis and transcriptional regulation. The search for candidate genes with expression profiles associated with the 2DL QTL for FHB resistance led to the discovery of processes differentially modulated in the R and S NILs related to cell wall metabolism, sugar and JA signaling, signal reception and transduction, regulation of the redox status and transcription factors. Wheat FHB response-related miRNAs differentially regulated were also identified as putatively implicated in the superoxide dismutase activities and affecting genes regulating responses to biotic/abiotic stresses and auxin signaling. Altered gene expression was also observed for fungal non-codingRNAs. The putative targets of two of these were represented by the wheat gene WIR1A , involved in resistance response, and a gene encoding a jacalin-related lectin protein, which participate in biotic and abiotic stress response, supporting the presence of a cross-talk between the plant and the fungus.
机译:由真菌镰刀镰刀菌引起的镰刀菌枯萎病(FHB)是全球主要的小麦疾病之一,由于霉菌毒素的积累,导致严重的单产下降和谷物质量下降。小麦2DL FHB抗性QTL的分子反应是通过在接种后3天,在小穗和穗轴上对禾谷镰刀菌感染的早期反应的综合转录组学分析而获得的。在两个接近等基因系(NIL)上进行了分析,不同之处在于2DL QTL的存在(2-2618,抗性2DL +和2-2890,易感无效)。尽管在易感性NIL中涉及较多的DEG,但就两个NIL而言,对真菌感染的总体反应在mRNA积累趋势方面均相似,包括下调初级代谢和能量代谢,上调相关的酶。木质素和苯丙烷的生物合成,激素生物合成的激活以及信号转导途径和涉及氧化还原稳态和转录调控的基因。寻找具有与FHB抗性的2DL QTL相关的表达谱的候选基因导致发现与细胞壁代谢,糖和JA信号传导,信号接收和转导,氧化还原调节相关的R和S NIL中差异调节的过程状态和转录因子。还确定了与小麦FHB反应相关的miRNA差异调节的可能与超氧化物歧化酶活性有关,并影响了调节对生物/非生物胁迫和生长素信号传导反应的基因。对于真菌非编码RNA,也观察到基因表达改变。其中两个假定的靶标由参与抗性应答的小麦基因WIR1A和编码jacalin相关凝集素蛋白的基因(参与生物和非生物胁迫应答)来支持,从而支持了两者之间的串扰。植物和真菌。

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