Mushroom-forming fungi (Agaricomycetes) are emerging as pivotal players in several fields of science and industry. Genomic data for Agaricomycetes are accumulating rapidly; however, this is not paralleled by improvements of gene annotations, which leave gene function notoriously poorly understood. We set out to improve our functional understanding of the model mushroom Coprinopsis cinerea by integrating a new, chromosome-level assembly, high-quality gene predictions, and functional information derived from broad gene-expression profiling data. The new annotation includes 5' and 3' untranslated regions (UTRs), polyadenylation sites (PASs), upstream open reading frames (uORFs), splicing isoforms, and microexons, as well as core gene sets corresponding to carbon starvation, light response, and hyphal differentiation. As a result, the genome of C. cinerea has now become the most comprehensively annotated genome among mushroom-forming fungi, which will contribute to multiple rapidly expanding fields, including research on their life history, light and stress responses, as well as multicellular development.
Morphogenesis, starvation, and light responses in a mushroom-forming fungus revealed by long-read sequencing and extensive expression profiling.
通过长读长测序和广泛的表达谱分析揭示了蘑菇形成真菌的形态发生、饥饿和光反应
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作者:Hegedüs Botond, Sahu Neha, Bálint Balázs, Haridas Sajeet, Bense Viktória, Merényi Zsolt, Virágh Máté, Wu Hongli, Liu Xiao-Bin, Riley Robert, Lipzen Anna, Koriabine Maxim, Savage Emily, Guo Jie, Barry Kerrie, Ng Vivian, Urbán Péter, Gyenesei Attila, Freitag Michael, Grigoriev Igor V, Nagy László G
| 期刊: | Cell Genomics | 影响因子: | 9.000 |
| 时间: | 2025 | 起止号: | 2025 Jun 11; 5(6):100853 |
| doi: | 10.1016/j.xgen.2025.100853 | 研究方向: | 其它 |
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