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A transcriptomic resource for Douglas-fir seed development and analysis of transcription during late megagametophyte development

机译:道格拉斯冷杉种子发育的转录组学资源以及大型配子体发育后期的转录分析

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Douglas-fir (Pseudotsuga menziesii (Mirb.) Franco) is economically important with extensive breeding programs and seed trade. However, the molecular genetics of its seed development are largely unknown. We developed a transcriptome resource covering key developmental stages of megagametophytes over time: prefertilization, fertilization, embryogenesis, and early, unfertilized abortion. RNA sequencing reads were assembled de novo into 105,505 predicted high-confidence transcripts derived from 34,521 predicted genes. Expression levels were estimated based on alignment of the original reads to the reference. Megagametophytes express a distinct set of genes compared to those of vegetative tissues. Transcripts related to signaling, protein turnover, and RNA biogenesis have lower expression values in vegetative tissues, whereas cell wall remodeling, solute transport, and seed storage protein transcripts have higher expression values in megagametophytes. Seed storage protein transcripts become very abundant in both pollinated and unpollinated megagametophytes over time, even in aborting ovules. However, the absence of protein storage bodies in unfertilized megagametophytes suggests extensive posttranscriptional mechanisms that either inhibit storage protein translation or their aggregation into protein bodies. This novel transcriptome resource provides a foundation for further important insights into conifer seed development.
机译:道格拉斯冷杉(Pseudotsuga menziesii(Mirb。)Franco)具有广泛的育种计划和种子贸易,在经济上具有重要意义。但是,其种子发育的分子遗传学在很大程度上尚不清楚。我们开发了一个转录组资源,涵盖了随着时间推移巨型配子体的关键发育阶段:首选受精,受精,胚胎发生以及早期,未受精的流产。从头开始将RNA测序读数组装到105,505个预测的高信度转录本中,该转录本来自34,521个预测基因。基于原始读数与参考的比对估计表达水平。与营养组织相比,大型配子体表达一组独特的基因。与信号传导,蛋白质更新和RNA生物发生有关的转录本在营养组织中的表达值较低,而细胞壁重塑,溶质转运和种子贮藏的蛋白质转录本在大型配子体中具有较高的表达值。随着时间的推移,即使在授粉的和未授粉的配子体中,种子贮藏蛋白转录本也会变得非常丰富,甚至在胚珠流产中也是如此。但是,未受精的大配子体中不存在蛋白质贮藏体,这提示了广泛的转录后机制,抑制了贮藏蛋白质的翻译或它们聚集成蛋白质体。这种新颖的转录组资源为针叶树种子发展的进一步重要见解奠定了基础。

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