Full TGIF Record # 324944
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Web URL(s):https://scisoc.confex.com/scisoc/2022am/meetingapp.cgi/Paper/142685
    Last checked: 01/25/2023
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Publication Type:
Content Type:Abstract or Summary only
Author(s):Yu, Xingwang; de Siqueira Gesteira, Gabriel; Schoonmaker, Ashley; Milla-Lewis, Susana R.
Author Affiliation:Yu: Presenting Author and North Carolina State University; de Siqueira Gesteira, Schoonmaker, and Milla-Lewis: North Carolina State University
Title:Genetic resistance of gray leaf spot in St. Augustinegrass: QTL mapping and transcriptomics
Section:Turfgrass Physiology, Molecular Biology, Microbiome, and Genetics Poster (includes student competition)
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C05 turfgrass science
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Meeting Info.:Baltimore, Maryland: November 6-9, 2022
Source:ASA, CSSA, SSSA International Annual Meeting. 2022, p. 142685.
Publishing Information:[Madison, Wisconsin]: [American Society of Agronomy, Crop Science Society of America, and Soil Science Society of America]
# of Pages:1
Abstract/Contents:"Gray leaf spot (GLS), caused by Magnaporthe grisea, is a major fungal disease of St. Augustinegrass [Stenotaphrum secundatum (Walt.) Kuntze], causing widespread blighting of the foliage under warm, humid conditions. We used QTL mapping and transcriptomics approaches to identify the genetic resistance of GLS, with aim to identify the geneitc markers and candidate genes, which could be used in marker assisted selection for GLS improvement in St. Augustinegrass."
See Also:See also related abstract in ASA, CSSA and SSSA International Annual Meetings, 2019, p. 119452, R=309589. R=309589
Note:This item is an abstract only!
ASA/CSSA/SSSA Citation (Crop Science-Like - may be incomplete):
Yu, X., G. de Siqueira Gesteira, A. Schoonmaker, and S. R. Milla-Lewis. 2022. Genetic resistance of gray leaf spot in St. Augustinegrass: QTL mapping and transcriptomics. Agron. Abr. p. 142685.
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