Genus | Leersia |
Species | perrieri |
Common Name | Perrier's cutgrass |
Abbreviation | L. perrieri |
Ploidy | Diploid |
Chromosome Number | 2n=2x=14 |
Genome Size | 320 Mb |
Genome Assemblies | 1 |
Cross Reference | NCBI taxon: 77586 |
Organism Image
Leersia is a genus of plants in the grass family which includes species known generally as cutgrasses. The genus is widespread across many countries on all the inhabited continents. It was named for the German botanist Johann Daniel Leers (1727-1774).
Leersia perrieri Lperr_V1.4 S genes
Query | Chromosome | Size(bp) | Coordinates | tBLASTn Hit | tBLASTn %ID | Domain |
DUF247I-SΨ | CM002483.1 | 20807039 | 4365374-4365991 | LpSDUF247-I_chromosome1 | 69 | DUF247 |
DUF247II-S | CM002483.1 | 20807039 | 4358196-4359884 | LpSDUF247-II_chromosome1 | 64 | DUF247 |
HPS10-S | CM002483.1 | 20807039 | 4360114-4360255,4360344-4360480 | LpsS_contig11029 | 41 | - |
DUF247I-ZΨ | CM002482.1 | 23326293 | 21001207-21001926 | LpZDUF247-I_chromosome2 | 58 | DUF247 |
DUF247II-ZΨ | CM002482.1 | 23326293 | 21012459-21013067 | AsativaDUF247II-Z1 | 52 | DUF247 |
HPS10-Z | CM002482.1 | 23326293 | 21008057-21008213,21008333-21008421 | LpsZ_chromosome2 | 66 | - |
The Leersia perrieri S gene sequences are available in FASTA format.
CDS and Protein (FASTA file) | S-gene_Leersia_perrieri |
Stein JC, Yu Y, Copetti D, Zwickl DJ, Zhang L, Zhang C, Chougule K, Gao D, Iwata A, Goicoechea JL, Wei S, Wang J, Liao Y, Wang M, Jacquemin J, Becker C, Kudrna D, Zhang J, Londono CEM, Song X, Lee S, Sanchez P, Zuccolo A, Ammiraju JSS, Talag J, Danowitz A, Rivera LF, Gschwend AR, Noutsos C, Wu CC, Kao SM, Zeng JW, Wei FJ, Zhao Q, Feng Q, El Baidouri M, Carpentier MC, Lasserre E, Cooke R, Rosa Farias DD, da Maia LC, Dos Santos RS, Nyberg KG, McNally KL, Mauleon R, Alexandrov N, Schmutz J, Flowers D, Fan C, Weigel D, Jena KK, Wicker T, Chen M, Han B, Henry R, Hsing YC, Kurata N, de Oliveira AC, Panaud O, Jackson SA, Machado CA, Sanderson MJ, Long M, Ware D, Wing RA. Genomes of 13 domesticated and wild rice relatives highlight genetic conservation, turnover and innovation across the genus Oryza. Nat Genet. 2018 Feb;50(2):285-296. doi: 10.1038/s41588-018-0040-0.