Key Laboratory of Photobiology, Photosynthesis Research Center, Institute of Botany, Chinese Academy of Sciences, Beijing, China.
University of Chinese Academy of Sciences, Beijing, China.
Plant Biotechnol J. 2019 Jan;17(1):206-219. doi: 10.1111/pbi.12958. Epub 2018 Jun 25.
The Populus shoot undergoes primary growth (longitudinal growth) followed by secondary growth (radial growth), which produces biomass that is an important source of energy worldwide. We adopted joint PacBio Iso-Seq and RNA-seq analysis to identify differentially expressed transcripts along a developmental gradient from the shoot apex to the fifth internode of Populus Nanlin895. We obtained 87 150 full-length transcripts, including 2081 new isoforms and 62 058 new alternatively spliced isoforms, most of which were produced by intron retention, that were used to update the Populus annotation. Among these novel isoforms, there are 1187 long non-coding RNAs and 356 fusion genes. Using this annotation, we found 15 838 differentially expressed transcripts along the shoot developmental gradient, of which 1216 were transcription factors (TFs). Only a few of these genes were reported previously. The differential expression of these TFs suggests that they may play important roles in primary and secondary growth. AP2, ARF, YABBY and GRF TFs are highly expressed in the apex, whereas NAC, bZIP, PLATZ and HSF TFs are likely to be important for secondary growth. Overall, our findings provide evidence that long-read sequencing can complement short-read sequencing for cataloguing and quantifying eukaryotic transcripts and increase our understanding of the vital and dynamic process of shoot development.
杨树枝条经历初生生长(纵向生长),然后是次生生长(径向生长),产生的生物量是全球能源的重要来源。我们采用联合 PacBio Iso-Seq 和 RNA-seq 分析,从毛白杨 Nanlin895 的枝条顶端到第五节间识别发育梯度上差异表达的转录本。我们获得了 87150 条全长转录本,包括 2081 个新的异构体和 62058 个新的可变剪接异构体,其中大多数是通过内含子保留产生的,用于更新毛白杨的注释。在这些新的异构体中,有 1187 个长非编码 RNA 和 356 个融合基因。利用这个注释,我们在枝条发育梯度上发现了 15838 个差异表达的转录本,其中 1216 个是转录因子(TFs)。这些基因中只有少数之前有报道过。这些 TF 的差异表达表明它们可能在初生和次生生长中发挥重要作用。AP2、ARF、YABBY 和 GRF TFs 在顶端高度表达,而 NAC、bZIP、PLATZ 和 HSF TFs 可能对次生生长很重要。总的来说,我们的研究结果提供了证据,证明长读测序可以补充短读测序,用于对真核转录本进行编目和定量,并增加我们对枝条发育这一重要和动态过程的理解。