ArticleBMC genomics2020
Hybrid transcriptome sequencing approach improved assembly and gene annotation in Cynara cardunculus (L.).
Article in BMC genomics, 2020. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 19 papers.
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Who cites it
19 citing papers in PubMed.
- HyDRA: A pipeline for integrating long- and short-read RNAseq data for custom transcriptome assembly.iScience · 2026Article
- Unravelling the molecular mechanisms of vegetative-to-reproductive transition in Cynara cardunculus by RNA-Seq analysis.Plant molecular biology · 2026Article
- Protrichocysts: a hybrid defense extrusive organelle bridging mechanical projection and chemical secretion in ciliates.Current research in microbial sciences · 2026Article
- Full-Length Transcriptomes Reconstruction Reveals Intraspecific Diversity in Hairy Vetch (Plants (Basel, Switzerland) · 2024Article
- Long-read subcellular fractionation and sequencing reveals the translational fate of full-length mRNA isoforms during neuronal differentiation.Genome research · 2024Article
- Direct RNA sequencing in plants: Practical applications and future perspectives.Plant communications · 2024Review
- GTax: improving de novo transcriptome assembly by removing foreign RNA contamination.Genome biology · 2024Article
- Enhancing transcriptome analysis in medicinal plants: multiple unigene sets inFrontiers in plant science · 2024Article
- Novel Tri-Segmented Rhabdoviruses: A Data Mining Expedition Unveils the Cryptic Diversity of Cytorhabdoviruses.Viruses · 2023Article
- annotate_my_genomes: an easy-to-use pipeline to improve genome annotation and uncover neglected genes by hybrid RNA sequencing.GigaScience · 2022Article
- Identification of Novel Genes and Proteoforms inPathogens (Basel, Switzerland) · 2022Article
- Resolving the Microalgal Gene Landscape at the Strain Level: a Novel Hybrid Transcriptome ofApplied and environmental microbiology · 2022Article
- UNAGI: Yeast Transcriptome Reconstruction and Gene Discovery Using Nanopore Sequencing.Methods in molecular biology (Clifton, N.J.) · 2022Article
- Growth and Meat Quality of Grass Carp (Frontiers in nutrition · 2022Article
- Comparative Analysis of PacBio and Oxford Nanopore Sequencing Technologies for Transcriptomic Landscape Identification ofLife (Basel, Switzerland) · 2021Article
- AFrontiers in genetics · 2021Article
- Seed Transcriptome Annotation Reveals Enhanced Expression of Genes Related to ROS Homeostasis and Ethylene Metabolism at Alternating Temperatures in Wild Cardoon.Plants (Basel, Switzerland) · 2020Article
- Article
- Light and Alternating Temperatures Release Seed Dormancy in the Invasive Dipsacus fullonum L. Through ROS Homeostasis and ABA Regulation.Physiologia plantarumArticle
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6 authors.
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Abstract
backgroundThe investigation of transcriptome profiles using short reads in non-model organisms, which lack of well-annotated genomes, is limited by partial gene reconstruction and isoform detection. In contrast, long-reads sequencing techniques revealed their potential to generate complete transcript assemblies even when a reference genome is lacking. Cynara cardunculus var. altilis (DC) (cultivated cardoon) is a perennial hardy crop adapted to dry environments with many industrial and nutraceutical applications due to the richness of secondary metabolites mostly produced in flower heads. The investigation of this species benefited from the recent release of a draft genome, but the transcriptome profile during the capitula formation still remains unexplored. In the present study we show a transcriptome analysis of vegetative and inflorescence organs of cultivated cardoon through a novel hybrid RNA-seq assembly approach utilizing both long and short RNA-seq reads.
resultsThe inclusion of a single Nanopore flow-cell output in a hybrid sequencing approach determined an increase of 15% complete assembled genes and 18% transcript isoforms respect to short reads alone. Among 25,463 assembled unigenes, we identified 578 new genes and updated 13,039 gene models, 11,169 of which were alternatively spliced isoforms. During capitulum development, 3424 genes were differentially expressed and approximately two-thirds were identified as transcription factors including bHLH, MYB, NAC, C2H2 and MADS-box which were highly expressed especially after capitulum opening. We also show the expression dynamics of key genes involved in the production of valuable secondary metabolites of which capitulum is rich such as phenylpropanoids, flavonoids and sesquiterpene lactones. Most of their biosynthetic genes were strongly transcribed in the flower heads with alternative isoforms exhibiting differentially expression levels across the tissues.
conclusionsThis novel hybrid sequencing approach allowed to improve the transcriptome assembly, to update more than half of annotated genes and to identify many novel genes and different alternatively spliced isoforms. This study provides new insights on the flowering cycle in an Asteraceae plant, a valuable resource for plant biology and breeding in Cynara and an effective method for improving gene annotation.
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