![]() ![]() Ten years ago, if you were building or renovating a golf course in the southern portion of the United States where warm-season turfgrasses have traditionally been used, grass selection was a simple proposition.īermudagrass, and primarily the hybrid cultivar Tifway (419), was the standard and was considered to have very good overall adaptation for tee, fairway, and rough areas. Occurrence Handle1:CAS:528:DyaK3sXmt1Wrtbg%3DĪrticleTitleExploiting EST databases for the development and characterization of gene-derived SSR-markers in barley ( Hordeum vulgare L.This article originally appeared in the November/December 2006 issue of the Green Section Record. Occurrence Handle1:CAS:528:DyaK1MXnvVykurg%3DĪrticleTitleChloroplast DNA evidence for the interrelationships of tomatoes, potatoes and pepinos (Solanaceae) Preparation of genomic DNA from plant tissueĪrticleTitleAbundancevariability and chromosomal location of microsatellites in wheatĪrticleTitleAngiosperm phylogeny inferred from multiple genes as a tool for comparative biology Occurrence Handle1:CAS:528:DC%2BD38XmsVagtLk%3D Phylogeny and provisional classification of the Solanaceae based on chloroplast DNAĪrticleTitleA genetic linkage map of diploid Paspalum notatum Crop Sci. Occurrence Handle1:CAS:528:DyaK2MXnt1agsrg%3D Occurrence Handle10.1016/S0092-8674(00)80618-2ĪrticleTitleCereal genome evolution: grasses, line up and form a circle Occurrence Handle1:CAS:528:DC%2BD3cXisVaitb8%3D Occurrence Handle1:CAS:528:DyaK2MXnsFKrsbY%3D Occurrence Handle1:CAS:528:DyaK2MXjs12ktb8%3DĪrticleTitleCharacterization and analysis of simple sequence repeat (SSR) loci in seashore paspalum ( Paspalum vaginatum Swartz) Occurrence Handle1:CAS:528:DC%2BD2cXivV2js70%3DĬomparative salinity tolerance and salt tolerance mechanisms of seashore paspalum ecotypesĪrticleTitleGenetic relationships and variation of ecotypes of seashore paspalum ( Paspalum vaginatum) determined by random amplified polymorphic DNA markers Occurrence Handle1:CAS:528:DC%2BD3MXitFWrt70%3DĪrticleTitleTransferability of SSR markers among wheatrye and triticale Occurrence Handle1:CAS:528:DC%2BD38XjsFWrsbc%3DĪrticleTitleEvolutionary history of the grasses 102ĪrticleTitleData mining for simple sequence repeats in expressed sequence tags from barley, maizericesorghum and wheat Occurrence Handle1:CAS:528:DC%2BD3sXpsFyltbw%3DĪrticleTitleMicrosatellites and RFLP probes from maize are efficient sources of molecular markers for the biomass energy crop Miscanthus Theor. Seashore Paspalum (The Environmental Turfgrass)ĪrticleTitleSeashore paspalum: a turfgrass for tomorrow stress tolerance and versatileit promises to meet 21-century environmental challengesĪrticleTitleTransferable EST SSR markers for the study of polymorphism and genetic diversity in bread wheat Turfgrass Biology, Genetics, and Breeding Seashore paspalum ( Paspalum vaginatum Swart) ![]() Occurrence Handle1:CAS:528:DyaK2sXlvVCltb8%3D This is the first report of the transfer of SSR markers from major field crops to newly emerged environmental turfgrasses.ĪrticleTitleGenome relations between tetraploid Paspalum dilatatum and four diploid Paspalum species The number of SSR markers required for germplasm characterization and evaluation is discussed. This led us to determine that 18 of the transferred SSR markers were sufficient for genetically differentiating the investigated germplasm accessions. Two very similar dendrograms can be generated from either 109 or 209 polymorphic bands. The Paspalum accessions clustered into three major groups. In total, 209 polymorphic bands were detected from these 40 SSR markers, with an average of five polymorphic bands per marker. Forty transferred polymorphic SSR markers were selected and used for characterization and evaluation of seventy-three Paspalum accessions. The high level of polymorphism is directly related to the high degree of heterozygosity maintained by its way of reproduction, i.e. The polymorphism level for transferred SSR markers was 51.5% within species ( Paspalum vaginatum) and 87.1% among Paspalum species. This would be a very efficient approach for DNA marker development for species which are not well studied molecularly. The transfer rate was 67.5, 49.0 and 66.8% respectively. ![]() One hundred and thirty SSR markers from wheat, maize and sorghum were screened for the transferability to Paspalum. ![]()
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