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Web URL(s): | https://archive.lib.msu.edu/tic/ressum/2019/2019.pdf#page=72 Last checked: 04/14/2020 Requires: PDF Reader Notes: Item is within a single large file |
Publication Type:
| Report |
Author(s): | Kellogg, Elizabeth;
Olsen, Kenneth;
Baxter, Ivan;
Goad, David |
Author Affiliation: | Donald Danforth Plant Science Center |
Title: | Developing phenotypic and genomic tools to study salt-tolerance in seashore paspalum |
Section: | Genetics and breeding Other records with the "Genetics and breeding" Section
Warm-season grasses Other records with the "Warm-season grasses" Section
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Source: | Turfgrass and Environmental Research Program: 2019 Research Summaries. 2019, p. 64-69. |
Publishing Information: | [New York, New York]: The United States Golf Association Green Section |
# of Pages: | 6 |
Keywords: | TIC Keywords: Paspalum vaginatum; Salt tolerance
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Cultivar Names: | Paspalum vaginatum; Paspalum distichum |
Language: | English |
References: | 0 |
See Also: | Other Reports from this USGA research project: 2016-35-605 |
Note: | Pictures, color Graphs |
USGA Summary Points: | Generated genome-wide SNP markers and used these to genotype over 200 accessions. Determined that the "coarse" ecotype of seashore paspalum is a hybrid between the "turf" ecotype and a so-far unidentified paspalum species. Extracted high-molecular weight DNA and generated long PacBio reads, which have substantially improved the quality of the reference genome assembly. Prepared manuscript on diversity and population genetics in paspalum species; target submission in February 2020. Identified genotype specific ionomics responses to increased salinity. Completed a high-throughput phenotyping experiment, growing paspalum accessions under varying salinity levels. 140,000 images were produced from which to calculate biomass. Completed RNA sequencing to determine which gene are involved in response to changing salinity. |
| ASA/CSSA/SSSA Citation (Crop Science-Like - may be incomplete): Kellogg, E., K. Olsen, I. Baxter, and D. Goad. 2019. Developing phenotypic and genomic tools to study salt-tolerance in seashore paspalum. USGA Turfgrass Environ. Res. Summ. p. 64-69. |
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| Web URL(s): https://archive.lib.msu.edu/tic/ressum/2019/2019.pdf#page=72 Last checked: 04/14/2020 Requires: PDF Reader Notes: Item is within a single large file |
|  MSU catalog number: b3609415 |
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