QTLs for ten agronomic traits detected in 198 CSSLs at Nanjing and Sanya sites. Table S1: Sequence information of SSR primers used in this study. Figure S1: Photographs of Oryza sativa spp. indica cultivar 9311 and wild rice CWR276. Figure S2: Nucleotide (A) and amino acid (B) alignments of the sh4 gene between wild rice and 9311. Wild rice alleles were cloned from CSSL85, 102, 167, and the donor parent BC276. The red rectangle indicates a substitution (K in the protein of the wild rice allele). (DOCX 36 kb
Figure S4. Sequence comparison of PHYB, SD1, DTH8, SDG708, and GW5 between SN265 and R99. (PDF 47Â k...
Table S1. Seed setting rates of BC5F1 plants obtained from fertile BC4F1 plants. Table S2. Seed sett...
Wild rice possesses a large number of valuable genes that have been lost or do not exist in cultivat...
Figure S2. Sequence difference and phenotypic variations on four reported genes. A. Difference sites...
Figure S4. Quantitative real-time RT-PCR analysis and Sequence variations of predicted genes. A-C.RN...
Table S1. Eleven traits of Nipponbare, PA64s and 9311 observed in Shengzhen (SZ) and Hangzhou (HZ). ...
Table S1. Primers used for population development and QTL mapping. Table S2. Primers used for sequen...
Figure S1. Selection and identification of Pi54 alleles using primer set Pi54 MAS. Figure S2. Alignm...
Figure S1. Graphic genotype of NIL7. Black bars indicated the genomic fragments from O. glumaepatula...
Figure S1. Graphical genotypes of the reciprocal CSSLs. (a) 41Â K-CSSLs, (b) 39Â T-CSSLs. Orange reg...
Supporting figures. Figure S1. Schematic summary of the data processing and analysis pipeline. Figur...
Number of accessions included in RC extended haplotype analysis (ORSC N = 81; O. sativa N = 405) (XL...
Figure S3. Double-crossovers in CSSLs. Different colors represent different genotypes: red, 9311; bl...
Figure S2. Collinearity between the bin map derived from the RIL population and the reference genome...
Selection of segregation lines to evaluate the effect of quantitative trait loci (QTLs) detected on ...
Figure S4. Sequence comparison of PHYB, SD1, DTH8, SDG708, and GW5 between SN265 and R99. (PDF 47Â k...
Table S1. Seed setting rates of BC5F1 plants obtained from fertile BC4F1 plants. Table S2. Seed sett...
Wild rice possesses a large number of valuable genes that have been lost or do not exist in cultivat...
Figure S2. Sequence difference and phenotypic variations on four reported genes. A. Difference sites...
Figure S4. Quantitative real-time RT-PCR analysis and Sequence variations of predicted genes. A-C.RN...
Table S1. Eleven traits of Nipponbare, PA64s and 9311 observed in Shengzhen (SZ) and Hangzhou (HZ). ...
Table S1. Primers used for population development and QTL mapping. Table S2. Primers used for sequen...
Figure S1. Selection and identification of Pi54 alleles using primer set Pi54 MAS. Figure S2. Alignm...
Figure S1. Graphic genotype of NIL7. Black bars indicated the genomic fragments from O. glumaepatula...
Figure S1. Graphical genotypes of the reciprocal CSSLs. (a) 41Â K-CSSLs, (b) 39Â T-CSSLs. Orange reg...
Supporting figures. Figure S1. Schematic summary of the data processing and analysis pipeline. Figur...
Number of accessions included in RC extended haplotype analysis (ORSC N = 81; O. sativa N = 405) (XL...
Figure S3. Double-crossovers in CSSLs. Different colors represent different genotypes: red, 9311; bl...
Figure S2. Collinearity between the bin map derived from the RIL population and the reference genome...
Selection of segregation lines to evaluate the effect of quantitative trait loci (QTLs) detected on ...
Figure S4. Sequence comparison of PHYB, SD1, DTH8, SDG708, and GW5 between SN265 and R99. (PDF 47Â k...
Table S1. Seed setting rates of BC5F1 plants obtained from fertile BC4F1 plants. Table S2. Seed sett...
Wild rice possesses a large number of valuable genes that have been lost or do not exist in cultivat...