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Trait Overview
Trait | plant height |
Trait Category | stature or vigor trait |
Abbreviation | PH |
Definition | Height of the plant at maturity |
Descriptors | [view all 6] |
QTLs | [view all 139] |
Dataset | Type |
NCGC germplasm evaluation, AZ01 | phenotype |
NCGC germplasm evaluation, AZ02 | phenotype |
NCGC germplasm evaluation, CS10 | phenotype |
NCGC germplasm evaluation, CS11 | phenotype |
NCGC germplasm evaluation, CS12 | phenotype |
NCGC germplasm evaluation, CS13 | phenotype |
NCGC germplasm evaluation, CS14 | phenotype |
NCGC germplasm evaluation, CS15 | phenotype |
NCGC germplasm evaluation, T06 | phenotype |
NCGC germplasm evaluation, T07 | phenotype |
NCGC germplasm evaluation, T08 | phenotype |
NCGC germplasm evaluation, T09 | phenotype |
NCGC germplasm evaluation, T10 | phenotype |
NCGC germplasm evaluation, T11 | phenotype |
NCGC germplasm evaluation, T12 | phenotype |
NCGC germplasm evaluation, T14 | phenotype |
NCGC germplasm evaluation, GH | phenotype |
NCGC germplasm evaluation, Before2006 | phenotype |
T3-RIL-2014 | QTL |
CG-RIL-2016 | QTL |
LX-RIL-2020 | QTL |
SB-F2-2019 | QTL |
RBTN 2007 | phenotype |
RBTN 2008 | phenotype |
RBTN 2009 | phenotype |
RBTN 2010 | phenotype |
RBTN 2012 | phenotype |
RBTN 2013 | phenotype |
RBTN 2014 | phenotype |
RBTN 2016 | phenotype |
RBTN 2017 | phenotype |
RBTN 2018 | phenotype |
DS-RIL-2022 | QTL |
AD1-NBI_root-traits_CRI-Chen-2022_GWAS | GWAS |
AD1-NBI_root-traits_CRI-Chen-2022_PHENO | phenotype |
4Su-F2-2021 | QTL |
4J-F2-2021 | QTL |
SgJ-F2-2021 | QTL |
Sg4-F2-2021 | QTL |
P68-RIL-2020 | QTL |
NCGC Germplasm Evaluation | phenotype |
TM1_x_G1-NAU_MAALs_PHENO | phenotype |
Year | Publication |
2022 | Gowda SA, Katageri IS, Patil RS, Kumar PS, Tiwari GJ, Jena SN, Sawant SV. 63 K and 50 K SNP array based high-density genetic mapping and QTL analysis for productivity and fiber quality traits in cotton. Euphytica. 2022; 218(7):93. |
2021 | Li H, Pan Z, He S, Jia Y, Geng X, Chen B, Wang L, Pang B, Du X. QTL mapping of agronomic and economic traits for four F2 populations of upland cotton. Journal of Cotton Research. 2021 Jan 21; 4:3. |
2020 | Liu RX, Xiao XH, Gong JW, Li JW, Zhang Z, Liu AY, Lu QW, Shang HH, Shi YZ, Ge Q, Iqbal MS, Chen QuanJQJ, Yuan YL, Gong WK. QTL mapping for plant height and fruit branch number based on RIL population of upland cotton. . Journal of Cotton Research. 2020 Feb 20; 3:5. |
2020 | Abdelraheem A, Fang DD, Dever J, Zhang J. QTL analysis of agronomic, fiber quality, and abiotic stress tolerance traits in a recombinant inbred population of pima cotton. Crop science. 2020; 60(4):1823-1843. |
2019 | Ma J, Pei W, Ma Q, Geng Y, Liu G, Liu J, Cui Y, Zhang X, Wu M, Li X, Li D, Zang X, Song J, Tang S, Zhang J, Yu S, Yu J. QTL analysis and candidate gene identification for plant height in cotton based on an interspecific backcross inbred line population of Gossypium hirsutum × Gossypium barbadense. TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik. 2019 Jun 24. |
2019 | Kumar NVM, Katageri IS, Gowda SA, Adiger S, Yadava SK, Lachagari VBR. 63K SNP chip based linkage mapping and QTL analysis for fibre quality and yield component traits in Gossypium barbadense L. cotton. Euphytica. 2019; 215(1):6. |
2017 | Huang C, Nie X, Shen C, You C, Li W, Zhao W, Zhang X, Lin Z. Population structure and genetic basis of the agronomic traits of upland cotton in China revealed by a genome-wide association study using high-density SNPs. Plant Biotechnol J. 2017 Nov;15(11):1374-1386. |
2016 | Jia X, Pang C, Wei H, Wang H, Ma Q, Yang J, Cheng S, Su J, Fan S, Song M, Wusiman N, Yu S. High-density linkage map construction and QTL analysis for earliness-related traits in Gossypium hirsutum L. BMC Genomics. 2016; 17:909. |
2015 | Percy R, Hendon B, Bechere E, Auld D. 2015. Qualitative Genetics and Utilization of Mutants. In: Cotton, 2nd ed., Agron. Monogr. 57. ASA, CSSA, and SSSA, Madison, WI. pp. 155-186. doi:10.2134/agronmonogr57.2013.0042 |
2011 | Jing C, Ma XJ, Di JC, Chen XS. [Gene mapping of an ultra-dwarf mutant in upland cotton]. Yi chuan = Hereditas / Zhongguo yi chuan xue hui bian ji. 2011 Dec; 33(12):1393-7. |
2011 | Zhang C, Sun J, Jia Y, Wang J, Xu Z, Du X. Morphological characters, inheritance and response to exogenous hormones of a cotton super-dwarf mutant of Gossypium hirsutum. Plant breeding. 2011; 130(1):67-72. |
1999 | Percy RG, Kohel RJ. 1999. Qualitative genetics. In: Cotton: Origin, History, Technology and Production, C.W. Smith (ed) (John Wiley & Sons Inc) pp. 319-360 |
1998 | JCS-2-153 |
1973 | Kohel R. Genetic analysis of the depauperate mutant in cotton, Gossypium hirsutum L. Crop science. 1973 July/Aug; 427-428 |
1973 | JHR-64-291 |
1949 | Johnson BL. Complementary factors for dark-red plant color in Upland cotton. Journal of Agricultural Research. 1949 Jun 1 1949; 78(11):535-543. |
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