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Triticum monococcum has recently drawn the attention of biologists to discover and utilize novel genes and alleles. To explore the molecular features of the genetic network governing floral transition in shoot apical meristem (SAM) of spring growth habit T. monococcum, two expressed sequence tag (EST) libraries containing 3,031 ESTs from vegetative SAM (VS) and 2,647 ESTs from early reproductive SAM (RS) were analyzed. Assembly of ESTs resulted in 2,303 unigenes for VS library (368 contigs and 1,935 singletons) and 1,890 unigenes (337 contigs and 1,553 singletons) for RS library. The 67.05 % of VS unigenes and 66.30 % of RS unigenes showed significant similarity with genes of known, putative and or unknown function, whereas the remaining 32.95 % of the VS unigenes and 33.7 % of RS unigenes displayed no significant match with the public protein database. The 1,064 and 866 unigenes of VS and RS libraries were assigned to functional categories using Pageman ontology tool. Further analysis revealed that the switch from VS to RS caused significant changes in the abundance of unigenes assigned to some functional categories. A total of 37 genes were identified which were significantly differentially expressed between vegetative and reproductive stages of T. monococcum SAM. Investigation of the differentially expressed genes revealed the importance of the genes involved in energy metabolism, ubiquitin/26S proteasome system, polyamines biosynthesis and signaling of reactive oxygen species in SAM differentiation towards floral transition in T. monococcum.  相似文献   

20.
草地贪夜蛾雄性成虫和5龄幼虫的转录组比较分析   总被引:1,自引:0,他引:1  
【目的】草地贪夜蛾Spodoptera frugiperda是一种新近入侵我国的重要害虫。本研究旨在对草地贪夜蛾雄性成虫和5龄幼虫两个不同发育阶段的转录组进行比较分析。【方法】利用高通量测序技术对草地贪夜蛾雄性成虫和5龄幼虫进行转录组测序和数据组装,并对转录组数据进行功能注释和比较分析。【结果】经de novo组装共获得209 002条转录本,平均长度为687.55 bp,N50为982 bp。共有46 198条(57.43%) unigene在至少一个数据库中获得功能注释,其中1 713条(2.13%) unigene在所有数据库中均能获得注释。在GO数据库中获得205 269条unigene的注释,主要包括68个功能分类;在KEGG数据库中共有3 408条unigene得到注释,涉及277个代谢通路。共鉴定到424个嗅觉相关的基因,并且在雄性成虫和5龄幼虫之间的表达存在差异。通过比较转录组分析,在雄性成虫中鉴定到9 162个上调和6 399个下调差异表达基因(DEGs);功能富集分析发现在上调DEGs中涉及信息素以及信号转导的代谢通路显著富集,而下调DEGs中涉及解毒相关的通路显著...  相似文献   

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