A - Papers appearing in refereed journals
Wright, J., Baker, K, Barker, T., Cathpole, L., Durrant, A., Fraser, F., Gharbi, K., Harrison, C., Henderson, S, Irish, N., Kaithakottil, G., Knitlhoffer, V., Leitch, I., Li, J, Lucchini, S, Neve, P., Powell, R, Rees, H, Swarbreck, D., Watkins, C., Wood, J., McTaggart, S., Hall, A. and Macgregor, D. 2024. Chromosome-scale genome assembly and de novo annotation of Alopecurus aequalis. Scientific Data. 11 (2368). https://doi.org/10.1038/s41597-024-04222-y
Authors | Wright, J., Baker, K, Barker, T., Cathpole, L., Durrant, A., Fraser, F., Gharbi, K., Harrison, C., Henderson, S, Irish, N., Kaithakottil, G., Knitlhoffer, V., Leitch, I., Li, J, Lucchini, S, Neve, P., Powell, R, Rees, H, Swarbreck, D., Watkins, C., Wood, J., McTaggart, S., Hall, A. and Macgregor, D. |
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Abstract | Alopecurus aequalis is a winter annual or short-lived perennial bunchgrass which has in recent years emerged as the dominant agricultural weed of barley and wheat in certain regions of China and Japan, causing significant yield losses. Its robust tillering capacity and high fecundity, combined with the development of both target and non-target-site resistance to herbicides means it is a formidable challenge to food security. Here we report on a chromosome-scale assembly of A. aequalis with a genome size of 2.83 Gb. The genome contained 33,758 high-confidence protein-coding genes with functional annotation. Comparative genomics revealed that the genome structure of A. aequalis is more similar to Hordeum vulgare rather than the more closely related Alopecurus myosuroides and has undergone an expansion of cytochrome P450 genes, a gene family involved in non-target-site herbicide resistance. |
Keywords | Genome; Alopecurus aequalis; Comparative genomics; Annotation |
Year of Publication | 2024 |
Journal | Scientific Data |
Journal citation | 11 (2368) |
Digital Object Identifier (DOI) | https://doi.org/10.1038/s41597-024-04222-y |
Open access | Published as ‘gold’ (paid) open access |
Funder | Biotechnology and Biological Sciences Research Council |
BBSRC Industrial Strategy Challenge | |
Funder project or code | Growing Health (WP1) - bio-inspired solutions for healthier agroecosystems: Understanding biointeractions |
BBSRC Strategic Programme in Smart Crop Protection | |
BBX011089/1 | |
BBS/E/ER/230002B | |
BB/CCG2220/1 | |
BBS/E/T/000PR9816 | |
Pathogen surveillance and monitoring | |
Growing Health [ISP] | |
Publisher's version | Copyright license CC BY |
Supplemental file | |
Output status | Published |
Publication dates | |
Online | 18 Dec 2024 |
Publication process dates | |
Accepted | 02 Dec 2024 |
Publisher | Nature Publishing Group |
ISSN | 2052-4463 |
Permalink - https://repository.rothamsted.ac.uk/item/98z7x/chromosome-scale-genome-assembly-and-de-novo-annotation-of-alopecurus-aequalis