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May 6, 2026Fishes0 citationsOpen Access

Nanopore-Based Full-Length Transcriptome Sequencing: In-Depth Exploration of Green Sea Turtle (Chelonia mydas) Genome

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QHQi HuangYSYongjun SunLZLinlin Zhao

Key Points

  • This research aims to enhance the genome annotation of the green sea turtle using advanced transcriptome sequencing techniques.
  • Utilized Oxford Nanopore Technologies for direct RNA sequencing of blood tissue from Chelonia mydas.
  • Obtained long-read transcriptome data to identify novel transcripts and characterize genome annotations.
  • Analyzed alternative splicing events, fusion transcripts, and methylation sites associated with the transcripts.
  • Identified 4061 novel transcripts in the Chelonia mydas transcriptome.
  • Predicted 2402 coding sequences (CDSs), with 1208 (50.29%) showing functional annotation.
  • Provided comprehensive insights into transcriptome structure, enhancing overall genome annotation.

Abstract

The green sea turtle (Chelonia mydas), a widely distributed species, plays a crucial role in maintaining the marine ecosystem. However, studies on C. mydas require accurate and comprehensive genome annotation information. Long-read direct transcriptome data of C. mydas were obtained using direct RNA sequencing on the Oxford Nanopore Technologies (ONT) platform from blood tissue of a single captive individual. A total of 4061 novel transcripts were obtained by comparing long-read direct transcripts with genome annotation of C. mydas. We also predicted 2402 CDSs on the novel transcripts. Among them, 1208 (50.29%) had functional annotation information in the databases. In addition, we predicted and analyzed AS events, fusion transcripts, methylation sites, poly(A)s, and lncRNAs in the C. mydas long-read direct transcriptome. Overall, our study provides the a long-read direct blood transcriptome for C. mydas to complement and improve its genome annotation. This valuable resource will contribute to future research on C. mydas. Additionally, the analyses of transcriptome structure mentioned above may provide new insights and ideas for the study of C. mydas.

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Cite This Study

Huang et al. (2026) studied this question.

synapsesocial.com/papers/69fa989404f884e66b532640https://doi.org/10.3390/fishes11050269
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