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Assessment of an Organ-Specific de Novo Transcriptome of the Nematode Trap-Crop Solanum sisymbriifolium

机译:评估线虫诱捕植物茄的器官特定的从头转录组。

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摘要

Solanum sisymbriifolium, also known as “Litchi Tomato” or “Sticky Nightshade,” is an undomesticated and poorly researched plant related to potato and tomato. Unlike the latter species, S. sisymbriifolium induces eggs of the cyst nematode, Globodera pallida, to hatch and migrate into its roots, but then arrests further nematode maturation. In order to provide researchers with a partial blueprint of its genetic make-up so that the mechanism of this response might be identified, we used single molecule real time (SMRT) sequencing to compile a high quality de novo transcriptome of 41,189 unigenes drawn from individually sequenced bud, root, stem, and leaf RNA populations. Functional annotation and BUSCO analysis showed that this transcriptome was surprisingly complete, even though it represented genes expressed at a single time point. By sequencing the 4 organ libraries separately, we found we could get a reliable snapshot of transcript distributions in each organ. A divergent site analysis of the merged transcriptome indicated that this species might have undergone a recent genome duplication and re-diploidization. Further analysis indicated that the plant then retained a disproportionate number of genes associated with photosynthesis and amino acid metabolism in comparison to genes with characteristics of R-proteins or involved in secondary metabolism. The former processes may have given S. sisymbriifolium a bigger competitive advantage than the latter did.
机译:剑兰茄(Solaum sisymbriifolium),也被称为“荔枝番茄”或“粘夜茄”,是一种未受限制且研究较少的与马铃薯和番茄有关的植物。与后一种不同,S。sisymbriifolium诱使孢囊线虫Globodera pallida的卵孵化并迁移到其根中,但随后阻止了进一步的线虫成熟。为了向研究人员提供其基因组成的部分蓝图,以便可以识别这种反应的机制,我们使用了单分子实时(SMRT)测序来编译高质量的从头至尾提取的41,189个单基因的新转录组。已测序的芽,根,茎和叶RNA种群。功能注释和BUSCO分析表明,该转录组非常完整,即使它代表在单个时间点表达的基因。通过分别对4个器官库进行测序,我们发现可以获得每个器官中转录本分布的可靠快照。合并转录组的不同位点分析表明,该物种可能最近经历了基因组复制和重新二倍化。进一步的分析表明,与具有R蛋白特征或参与次级代谢的基因相比,植物保留了与光合作用和氨基酸代谢相关的基因数量不成比例。前者的方法可能给剑叶镰刀菌提供了比后者更大的竞争优势。

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