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mRNA-seq Analysis of the Gossypium arboreum transcriptome Reveals Tissue Selective Signaling in Response to Water Stress during Seedling Stage

机译:棉树转录组的mRNA-seq分析揭示了苗期水分胁迫对组织选择性信号的响应

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摘要

The cotton diploid species, Gossypium arboreum, shows important properties of stress tolerance and good genetic stability. In this study, through mRNA-seq, we de novo assembled the unigenes of multiple samples with 3h H2O, NaCl, or PEG treatments in leaf, stem and root tissues and successfully obtained 123,579 transcripts of G. arboreum, 89,128 of which were with hits through BLAST against known cotton ESTs and draft genome of G. raimondii. About 36,961 transcripts (including 1,958 possible transcription factor members) were identified with differential expression under water stresses. Principal component analysis of differential expression levels in multiple samples suggested tissue selective signalling responding to water stresses. Venn diagram analysis showed the specificity and intersection of transcripts’ response to NaCl and PEG treatments in different tissues. Self-organized mapping and hierarchical cluster analysis of the data also revealed strong tissue selectivity of transcripts under salt and osmotic stresses. In addition, the enriched gene ontology (GO) terms for the selected tissue groups were differed, including some unique enriched GO terms such as photosynthesis and tetrapyrrole binding only in leaf tissues, while the stem-specific genes showed unique GO terms related to plant-type cell wall biogenesis, and root-specific genes showed unique GO terms such as monooxygenase activity. Furthermore, there were multiple hormone cross-talks in response to osmotic and salt stress. In summary, our multidimensional mRNA sequencing revealed tissue selective signalling and hormone crosstalk in response to salt and osmotic stresses in G. arboreum. To our knowledge, this is the first such report of spatial resolution of transcriptome analysis in G. arboreum. Our study will potentially advance understanding of possible transcriptional networks associated with water stress in cotton and other crop species.
机译:棉花二倍体物种棉(Gossypium arboreum)具有重要的耐逆性和良好的遗传稳定性。在这项研究中,我们通过mRNA序列从头开始在叶,茎和根组织中用3h H2O,NaCl或PEG处理组装了多个样品的单基因,并成功获得了123.579份的G. arboreum转录本,其中89,128份具有点击率通过BLAST对抗已知的棉花EST和雷蒙德氏酵母的基因组草案。鉴定出约36,961个转录本(包括1,958个可能的转录因子成员)在水分胁迫下具有差异表达。在多个样品中差异表达水平的主成分分析表明,组织选择性信号响应水分胁迫。 Venn图分析显示了转录本在不同组织中对NaCl和PEG处理的反应的特异性和交叉性。数据的自组织映射和层次聚类分析还显示了在盐和渗透胁迫下转录本的强大组织选择性。此外,所选组织类别的富集基因本体(GO)术语也有所不同,包括一些独特的富集GO术语(例如仅在叶片组织中的光合作用和四吡咯结合),而茎特异性基因显示出与植物相关的独特GO术语。类型的细胞壁生物发生和根特定基因显示独特的GO术语,例如单加氧酶活性。此外,响应于渗透和盐胁迫,存在多种激素串扰。总而言之,我们的多维mRNA测序揭示了响应植物盐分和渗透胁迫的组织选择性信号传导和激素串扰。就我们所知,这是关于G. arboreum中转录组分析空间分辨率的第一个此类报道。我们的研究将潜在地增进对棉花和其他农作物中与水分胁迫相关的可能转录网络的理解。

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