Single-Molecule Real-Time Sequencing of the <i>Madhuca pasquieri</i> (Dubard) Lam. Transcriptome Reveals the Diversity of Full-Length Transcripts

<i>Madhuca pasquieri</i> (Dubard) Lam. is a tree on the International Union for Conservation of Nature Red List and a national key protected wild plant (II) of China, known for its seed oil and timber. However, lacking of genomic and transcriptome data for this species hampers study of i...

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Bibliographic Details
Main Authors: Lei Kan, Qicong Liao, Zhiyao Su, Yushan Tan, Shuyu Wang, Lu Zhang
Format: Article
Language:English
Published: MDPI AG 2020-08-01
Series:Forests
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Online Access:https://www.mdpi.com/1999-4907/11/8/866
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Summary:<i>Madhuca pasquieri</i> (Dubard) Lam. is a tree on the International Union for Conservation of Nature Red List and a national key protected wild plant (II) of China, known for its seed oil and timber. However, lacking of genomic and transcriptome data for this species hampers study of its reproduction, utilization, and conservation. Here, single-molecule long-read sequencing (PacBio) and next-generation sequencing (Illumina) were combined to obtain the transcriptome from five developmental stages of <i>M. pasquieri</i>. Overall, 25,339 transcript isoforms were detected by PacBio, including 24,492 coding sequences (CDSs), 9440 simple sequence repeats (SSRs), 149 long non-coding RNAs (lncRNAs), and 182 alternative splicing (AS) events, a majority was retained intron (RI). A further 1058 transcripts were identified as transcriptional factors (TFs) from 51 TF families. PacBio recovered more full-length transcript isoforms with a longer length, and a higher expression level, whereas larger number of transcripts (124,405) was captured in de novo from Illumina. Using Nr, Swissprot, KOG, and KEGG databases, 24,405 transcripts (96.31%) were annotated by PacBio. Functional annotation revealed a role for the auxin, abscisic acid, gibberellin, and cytokinine metabolic pathways in seed germination and post-germination. These findings support further studies on seed germination mechanism and genome of <i>M. pasquieri</i>, and better protection of this endangered species.
ISSN:1999-4907