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Deep Sequencing of Suppression Subtractive Hybridisation Drought and Recovery Libraries of the Non-model Crop Trifolium repens L.

机译:非模式作物白三叶的抑制性消减杂交干旱和恢复文库的深度测序。

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摘要

White clover is a short-lived perennial whose persistence is greatly affected by abiotic stresses, particularly drought. The aim of this work was to characterize its molecular response to water deficit and recovery following re-hydration to identify targets for the breeding of tolerant varieties. We created a white clover reference transcriptome of 16,193 contigs by deep sequencing (mean base coverage 387x) four Suppression Subtractive Hybridization (SSH) libraries (a forward and a reverse library for each treatment) constructed from young leaf tissue of white clover at the onset of the response to drought and recovery. Reads from individual libraries were then mapped to the reference transcriptome and processed comparing expression level data. The pipeline generated four robust sets of transcripts induced and repressed in the leaves of plants subjected to water deficit stress (6,937 and 3,142, respectively) and following re-hydration (6,695 and 4,897, respectively). Semi-quantitative polymerase chain reaction was used to verify the expression pattern of 16 genes. The differentially expressed transcripts were functionally annotated and mapped to biological processes and pathways. In agreement with similar studies in other crops, the majority of transcripts up-regulated in response to drought belonged to metabolic processes, such as amino acid, carbohydrate, and lipid metabolism, while transcripts involved in photosynthesis, such as components of the photosystem and the biosynthesis of photosynthetic pigments, were up-regulated during recovery. The data also highlighted the role of raffinose family oligosaccharides (RFOs) and the possible delayed response of the flavonoid pathways in the initial response of white clover to water withdrawal. The work presented in this paper is to our knowledge the first large scale molecular analysis of the white clover response to drought stress and re-hydration. The data generated provide a valuable genomic resource for marker discovery and ultimately for the improvement of white clover.
机译:白三叶草是短命的多年生植物,其持久性受到非生物胁迫(特别是干旱)的极大影响。这项工作的目的是表征其对补水后水分缺乏和恢复的分子反应,从而确定耐性品种育种的目标。我们通过深度测序(平均碱基覆盖率387x)从白三叶草的幼叶组织开始构建的四个抑制消减杂交(SSH)库(每种处理的正向和反向库)创建了16,193个重叠群的白三叶草参考转录组。对干旱和恢复的反应。然后将来自各个文库的读数映射到参考转录组,并比较表达水平数据进行处理。该管道生成了四组强大的转录本,这些转录本在遭受缺水胁迫(分别为6,937和3,142)和复水后(分别为6,695和4,897)的植物叶片中诱导和抑制。半定量聚合酶链反应用于验证16个基因的表达模式。对差异表达的转录本进行功能注释,并定位到生物学过程和途径。与其他作物的类似研究一致,响应干旱而上调的大多数转录物属于代谢过程,例如氨基酸,碳水化合物和脂质代谢,而涉及光合作用的转录物,例如光系统和植物的组成部分。恢复过程中光合色素的生物合成被上调。数据还强调了棉子糖家族寡糖(RFO)的作用以及类黄酮途径在白三叶草对取水的初始反应中可能的延迟反应。就我们所知,本文介绍的工作是对白三叶草对干旱胁迫和补水的反应的首次大规模分子分析。产生的数据为发现标记物和最终改善白三叶草提供了宝贵的基因组资源。

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