Zhong Mian Suo 8

Germplasm Overview
NameZhong Mian Suo 8
AliasCCRI-8 [view all 7]
GRIN IDN/A
TypeObsolete Cultivar
SpeciesGossypium hirsutum
DescriptionN/A
Origin CountryChina
Origin DetailCRI, CAAS
PedigreeN/A
Maternal ParentN/A
Paternal ParentN/A
Maternal Parent ofN/A
Paternal Parent ofN/A
Phenotypic Data[view all 32]
SSR Genotype Data[view all 191]
SNP Genotype DataN/A
MapN/A
DNA LibraryN/A
SequenceN/A
CommentsEarly variety. Used to explorate structural variation, GWAS for fiber quality and yield traits
ReferenceMa Z, Zhang Y, Wu L, Zhang G, Sun Z, Li Z, Jiang Y, Ke H, Chen B, Liu Z, Gu Q, Wang Z, Wang G, Yang J, Wu J, Yan Y, Meng C, Li L, Li X, Mo S, Wu N, Ma L, Chen L, Zhang M, Si A, Yang Z, Wang N, Wu L, Zhang D, Cui Y, Cui J, Lv X, Li Y, Shi R, Duan Y, Tian S, Wang X. High-quality genome assembly and resequencing of modern cotton cultivars provide resources for crop improvement.. Nature genetics. 2021 Aug 09.
Alias
Synonym
CCRI-8
CN-CRI-8
Zhong-758
Zhong-Mian-Suo 8
Zhong Mian Suo 8 hao
CN-G100300
CCRI8
Phenotypic Data
Phenotypic Data
Total 32 trait scores
Download Table
# Dataset Descriptor Value Environment Replication Plot
1HEAU 202 variety Agronomic TraitsFEL (%)6.785CN_HN_SY_2016
2HEAU 202 variety Agronomic TraitsFS (cN/tex)30.325CN_HN_SY_2016
3HEAU 202 variety Agronomic TraitsFUI (%)87.264983476417CN_HN_SY_2018
4HEAU 202 variety Agronomic TraitsMIC (unit)4.1334459806631CN_HN_SY_2018
5HEAU 202 variety Agronomic TraitsFL (mm)33.050268329884CN_HN_SY_2018
6HEAU 202 variety Agronomic TraitsFEL (%)7.5124542358046CN_HN_SY_2018
7HEAU 202 variety Agronomic TraitsFS (cN/tex)32.506195858017CN_HN_SY_2018
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Ssr Genotype Data
Total 191 records
Download Table
# Dataset Marker Marker Type Genotype Marker_Allele
1NCGC_SNTD_SSR_genotype_2015jespr0008genetic_marker273|273jespr0008_273; jespr0008_273
2NCGC_SNTD_SSR_genotype_2015tmb0382genetic_marker179|179tmb0382_179; tmb0382_179
3NCGC_SNTD_SSR_genotype_2015bnl0387genetic_marker210|212bnl0387_210; bnl0387_212
4NCGC_SNTD_SSR_genotype_2015jespr0300genetic_marker198|207jespr0300_198; jespr0300_207
5NCGC_SNTD_SSR_genotype_2015tmb1295genetic_marker215|220tmb1295_215; tmb1295_220
6NCGC_SNTD_SSR_genotype_2015tmb0799genetic_marker150|187tmb0799_150; tmb0799_187
7NCGC_SNTD_SSR_genotype_2015jespr0153genetic_marker96|126jespr0153_96; jespr0153_126
8NCGC_SNTD_SSR_genotype_2015gh048genetic_marker85|85gh048_85; gh048_85
9NCGC_SNTD_SSR_genotype_2015bnl1551genetic_marker172|172bnl1551_172; bnl1551_172
10NCGC_SNTD_SSR_genotype_2015bnl2572genetic_marker249|249bnl2572_249; bnl2572_249
11NCGC_SNTD_SSR_genotype_2015cir0286genetic_marker124|130cir0286_124; cir0286_130
12NCGC_SNTD_SSR_genotype_2015jespr0274genetic_marker101|119jespr0274_101; jespr0274_119
13NCGC_SNTD_SSR_genotype_2015dpl0168genetic_marker213|236dpl0168_213; dpl0168_236
14NCGC_SNTD_SSR_genotype_2015dpl0071genetic_marker158|196dpl0071_158; dpl0071_196
15NCGC_SNTD_SSR_genotype_2015bnl1673genetic_marker197|197bnl1673_197; bnl1673_197
16NCGC_SNTD_SSR_genotype_2015bnl3090genetic_marker212|239bnl3090_212; bnl3090_239
17NCGC_SNTD_SSR_genotype_2015cir0320genetic_marker235|235cir0320_235; cir0320_235
18NCGC_SNTD_SSR_genotype_2015dpl0249genetic_marker119|125dpl0249_119; dpl0249_125
19NCGC_SNTD_SSR_genotype_2015mghes0022genetic_marker192|195mghes0022_192; mghes0022_195
20NCGC_SNTD_SSR_genotype_2015bnl4028genetic_marker183|183bnl4028_183; bnl4028_183
21NCGC_SNTD_SSR_genotype_2015bnl1897genetic_marker141|141bnl1897_141; bnl1897_141
22NCGC_SNTD_SSR_genotype_2015dpl0570genetic_marker126|140dpl0570_126; dpl0570_140
23NCGC_SNTD_SSR_genotype_2015tmb1427genetic_marker160|191tmb1427_160; tmb1427_191
24NCGC_SNTD_SSR_genotype_2015cir0105genetic_marker96|96cir0105_96; cir0105_96
25NCGC_SNTD_SSR_genotype_2015cir0253genetic_marker154|186cir0253_154; cir0253_186
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Publications
YearPublication
2021Ma Z, Zhang Y, Wu L, Zhang G, Sun Z, Li Z, Jiang Y, Ke H, Chen B, Liu Z, Gu Q, Wang Z, Wang G, Yang J, Wu J, Yan Y, Meng C, Li L, Li X, Mo S, Wu N, Ma L, Chen L, Zhang M, Si A, Yang Z, Wang N, Wu L, Zhang D, Cui Y, Cui J, Lv X, Li Y, Shi R, Duan Y, Tian S, Wang X. High-quality genome assembly and resequencing of modern cotton cultivars provide resources for crop improvement.. Nature genetics. 2021 Aug 09; 53:1385-1391.