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Research Project:
MOLECULAR ANALYSIS OF DEVELOPMENT TO IMPROVE COTTON FIBER
Location: Cotton Fiber Bioscience Research Unit
Publications
(Clicking on the reprint icon
will take you to the publication reprint.)
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Cloning and expression analysis of novel Aux/IAA family genes in Gossypium hirsutum
- (Peer Reviewed Journal)
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| Han,, X.Y., Xu, X.Y., Fang, D.D., Zhang, T.Z., Guo, W.Z. 2012. Cloning and expression analysis of novel Aux/IAA family genes in Gossypium hirsutum. Gene. 503:83-91. |
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Improving Cotton (Gossypium hirsutum L.) Plant Resistance to Reniform Nematodes by Pyramiding Ren1 and Ren2
- (Peer Reviewed Journal)
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| Fang, D.D., Stetina, S.R. 2011. Improving Cotton (Gossypium hirsutum L.) Plant Resistance to Reniform Nematodes by Pyramiding Ren1 and Ren2. Plant Breeding. 130:673-678. |
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Elevated growing degree days influence transition stage timing during cotton (Gossypium hirsutum L.) fiber development and result in increased fiber strength
- (Peer Reviewed Journal)
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| Hinchliffe, D.J., Meredith Jr, W.R., Delhom, C.D., Thibodeaux, D.P., Fang, D.D. 2011. Elevated growing degree days influence transition stage timing during cotton (Gossypium hirsutum L.) fiber development and result in increased fiber strength. Crop Science. 51:1683-1692. DOI: 10.2135/cropsci2010.10.0569. |
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Are Renari from Gossypium aridum and Renlon from G. longicalyx Duplicate Genes?
- (Abstract Only)
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| Fang, D.D., Stetina, S.R. 2011. Are Renari from Gossypium aridum and Renlon from G. longicalyx Duplicate Genes?. National Cotton Council Beltwide Cotton Conference. CD ROM. |
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Regulation of auxin on secondary cell wall cellulose biosynthesis in developing cotton fibers
- (Abstract Only)
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| (05-Nov-10) |
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Functional analysis of Gossypium hirsutum cellulose synthase catalytic subunit 4 promoter in transgenic Arabidopsis and cotton tissues.
- (Peer Reviewed Journal)
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| Kim, H.J., Murai, N., Fang, D.D., Triplett, B.A. 2010. Functional analysis of Gossypium hirsutum cellulose synthase catalytic subunit 4 promoter in transgenic Arabidopsis and cotton tissues. Plant Science. 180(2011);323-332. |
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Near-Isogenic Cotton Germplasm Lines that Differ in Fiber-Bundle Strength have Temporal Differences in Fiber Gene Expression Pattern as Revealed by Comparative High-Throughput Profiling
- (Peer Reviewed Journal)
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| Hinchliffe, D.J., Meredith Jr, W.R., Yeater, K.M., Kim, H. 2010. Near-Isogenic Cotton Germplasm Lines that Differ in Fiber-Bundle Strength have Temporal Differences in Fiber Gene Expression Pattern as Revealed by Comparative High-Throughput Profiling. Theoretical and Applied Genetics. 120:1347-1366. |
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A New SNP Haplotype associated with blue disease resistance gene in cotton (Gossypium hirsutum L.)
- (Peer Reviewed Journal)
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| Fang, D.D., Xiao, J., Canci, P.C., Cantrell, R.G. 2009. A New SNP Haplotype associated with blue disease resistance gene in cotton (Gossypium hirsutum L.). Journal of Theoretical and Applied Genetics. 120:943-953. |
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A SNP Haplotype Associated with a gene resistant to Xanthomonas axonopodis pv. malvacearum in Upland Cotton (Gossyium hirsutum L.)
- (Peer Reviewed Journal)
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| Xiao, J., Fang, D.D., Bhatti, M., Hendrix, B., Cantrell, R.G. 2009. A SNP Haplotype Associated with a gene resistant to Xanthomonas axonopodis pv. malvacearum in Upland Cotton (Gossyium hirsutum L.). Molecular Breeding.25(4):593-602 |
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Involvement of Extracellular Cu/Zn Superoxide Dismutase in Cotton Fiber Primary and Secondary Cell Wall Biosynthesis
- (Peer Reviewed Journal)
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| Kim, H., Triplett, B.A. 2008. Involvement of Extracellular Cu/Zn Superoxide Dismutase in Cotton Fiber Primary and Secondary Cell Wall Biosynthesis. Plant Signaling and Behavior. 3(12):1119-1121. |
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Identification of Molecular Markers Associated with Root-Knot Nematode Resistance in Upland Cotton
- (Peer Reviewed Journal)
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| Niu, C., Hinchliffe, D.J., Cantrell, R.G., Wang, C., Roberts, P.A., Zhang, J. 2007. Identification of Molecular Markers Associated with Root-Knot Nematode Resistance in Upland Cotton. Crop Science. 47:951-960. |
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