| Literature DB >> 27363861 |
Hong-Wei Zhang1,2, Ye-Yang Fan1, Yu-Jun Zhu1, Jun-Yu Chen1, Si-Bin Yu2, Jie-Yun Zhuang3.
Abstract
BACKGROUND: Most agronomical traits of crop species are complex traits controlled by multiple genes and affected by environmental factors. While considerable efforts have been made to fine-map and clone major quantitative trait loci (QTLs) for yield-related traits in rice, it is not until recently that the attention has been paid to minor QTLs. Following previous dissection of QTLs for grain weight and grain size in a 12-Mb interval on the long arm of chromosome 1 in rice, this study targeted at one putative QTL region for a more precise mapping and for analyzing the genotype-by-environment interaction of minor QTLs.Entities:
Keywords: Close linkage; Genotype-by-environment interaction; Grain size; Grain weight; Minor effect; Quantitative trait locus; Rice
Mesh:
Substances:
Year: 2016 PMID: 27363861 PMCID: PMC4929766 DOI: 10.1186/s12863-016-0410-5
Source DB: PubMed Journal: BMC Genet ISSN: 1471-2156 Impact factor: 2.797
Fig. 1Development of the rice populations used in this study
Fig. 2Genotypic compositions of the rice populations in the target region. a Four sets of NIL pairs. b Five NIL-F2 populations
Fig. 3Phenotypic distributions of the four NIL populations in the two trials conducted in Zhejiang and Hainan provinces of China, respectively
Significance levels of the F-test’s p-values for 1000-grain weight (TGW), grain length (GL) and grain width (GW) in four NIL populations
| Source of variation | Z1 | Z2 | Z3 | Z4 | ||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| TGW | GL | GW | TGW | GL | GW | TGW | GL | GW | TGW | GL | GW | |
| Environment (E) | d | d | d | d | d | d | d | d | d | d | d | d |
| Genotype (G) | d | a | a | ns | b | b | ns | a | b | b | d | ns |
| Lines within G | ns | a | a | a | ns | a | c | b | ns | ns | ns | ns |
| G-by-E | ns | ns | ns | ns | ns | ns | ns | ns | ns | ns | ns | ns |
a, b, c, and dsignificant at 0.05, 0.01, 0.001 and 0.0001 levels, respectively; ns not significant
QTL effects detected in four NIL populations
| Population | Segregating region | Trait | Mean trait values |
|
|
| |||
|---|---|---|---|---|---|---|---|---|---|
| Zhejiang trial | Hainan trial | ||||||||
| NILZS97 | NILMY46 | NILZS97 | NILMY46 | ||||||
| Z1 | Wn28382 − Wn28447 | TGW | 25.10 | 24.87 | 27.80 | 27.62 | <0.0001 | –0.10 | 14.83 |
| GL | 8.020 | 7.995 | 7.972 | 7.958 | 0.0135 | –0.009 | 6.02 | ||
| GW | 3.090 | 3.083 | 3.267 | 3.260 | 0.0481 | –0.004 | 4.03 | ||
| Z2 | Wn28382 − RM11554 | TGW | 24.63 | 24.49 | 28.02 | 27.97 | 0.0869 | ||
| GL | 8.040 | 8.054 | 7.960 | 7.992 | 0.0015 | 0.011 | 8.76 | ||
| GW | 3.070 | 3.062 | 3.276 | 3.262 | 0.0032 | –0.006 | 8.71 | ||
| Z3 | RM11543 − RM11569 | TGW | 25.06 | 25.19 | 28.10 | 28.12 | 0.2174 | ||
| GL | 8.040 | 8.056 | 7.939 | 7.960 | 0.0128 | 0.010 | 6.58 | ||
| GW | 3.080 | 3.076 | 3.277 | 3.267 | 0.0049 | –0.004 | 6.07 | ||
| Z4 | RM11569 | TGW | 24.33 | 24.50 | 27.91 | 28.00 | 0.0025 | 0.06 | 7.33 |
| GL | 7.970 | 8.012 | 7.855 | 7.879 | <0.0001 | 0.017 | 18.27 | ||
| GW | 3.020 | 3.026 | 3.288 | 3.289 | 0.6089 | ||||
TGW 1000-grain weight (g), GL grain length (mm), GW grain width (mm), NIL ZS97, NILMY46 NILs that are Zhenshan 97 and Milyang 46 homozygous in the segregating regions, respectively, A additive effect of replacing a ZS97 allele by a MY46 allele, R proportion of phenotypic variance explained by the QTL effect
Fig. 4QTLs for grain weight and grain size that were found to be segregated in the rice populations. a The qTGW1.1 region identified previously [17]. b Four sets of NIL pairs. c Five NIL-F2 populations
QTL effects detected in five NIL-F2 populations
| Population | No. of plants | Trait |
|
|
|
| QTLs matched |
|---|---|---|---|---|---|---|---|
| H1 | 237 | TGW | 3.53 | –0.14 | 0.08 | 6.89 |
|
| GL | 1.08 | ||||||
| GW | 0.41 | ||||||
| H2 | 227 | TGW | 2.09 | –0.19 | 0.04 | 4.15 |
|
| GL | 0.33 | ||||||
| GW | 0.24 | ||||||
| H3 | 276 | TGW | 0.35 | ||||
| GL | 3.11 | 0.021 | 0.00 | 5.09 |
| ||
| GW | 0.52 | ||||||
| H4 | 380 | TGW | 2.63 | 0.11 | 0.09 | 3.19 |
|
| GL | 3.41 | 0.020 | 0.01 | 4.04 |
| ||
| GW | 0.22 | ||||||
| H5 | 279 | TGW | 3.71 | 0.12 | 0.10 | 5.91 |
|
| GL | 3.37 | 0.019 | 0.02 | 5.38 |
| ||
| GW | 0.05 |
TGW 1000-grain weight (g), GL grain length (mm), GW grain width (mm), A additive effect of replacing a ZS97 allele by a MY46 allele, D dominance effect, R proportion of phenotypic variance explained by the QTL effect