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Nanopore long-read transcriptome data of fungal pathogen of chalkbrood disease, Ascosphaera apis

Du, Y.; Chen, H.; Wang, J.; Zhu, Z.; Xiong, C.; Zheng, Y.; Chen, D.; Guo, R.

2020-03-14 molecular biology
10.1101/2020.03.12.989863 bioRxiv
Show abstract

Ascosphaera apis is a fungal pathogen that exclusively infects honeybee larvae, leading to chalkbrood disease, which damages the number of adult honeybees and colony productivity. In this article, A. apis mecylia and spores were respectively purified followed by Oxford Nanopore sequencing via PromethION platform. In total, 6,321,704 and 6,259,727 raw reads were generated from Aam and Aas, with a length distribution among 1 kb~10 kb. The quality (Q) scores of majority of raw reads were Q9 (Aam) and Q11 (Aas). Additionally, 5,669,436 and 6,233,159 clean reads were gained, among them 79.32% and 79.62% were identified as being full-length. The lengths of redundant reads-removed full-length transcripts were among 1 kb~8 kb and 1 kb~9 kb, and most abundant length for both was 1 kb. Furthermore, the length of redundant transcripts-removed clean reads was ranged from 1 kb~7 kb, with the largest group of 1 kb. The data reported here provides a beneficial genetic resource for improving genome and transcriptome annotations of A. apis and for exploring alternative splicing and polyadenylation of A. apis mRNAs. Value of the resultO_LICurrent dataset enables better understanding of the complexity of A. apis transcriptome. C_LIO_LIThe long-read transcriptome data can be used to identify of genes and transcripts associated with A. apis infection mechanism. C_LIO_LIThe accessible data provides full-length transcripts for improving gene structure and functional annotation of A. apis transcriptome. C_LIO_LIThis dataset could be utilized for investigation of alternative splicing and polyadenylation of A. apis mRNAs. C_LI

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