| Literature DB >> 24766773 |
Lin Qin, Chenyang Hao, Jian Hou, Yuquan Wang, Tian Li, Lanfen Wang, Zhengqiang Ma, Xueyong Zhang1.
Abstract
BACKGROUND: TaGW2-6A, cloned in earlier research, strongly influences wheat grain width and TKW. Here, we mainly analyzed haplotypes of TaGW2-6B and their effects on TKW and interaction with haplotypes at TaGW2-6A.Entities:
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Year: 2014 PMID: 24766773 PMCID: PMC4021350 DOI: 10.1186/1471-2229-14-107
Source DB: PubMed Journal: BMC Plant Biol ISSN: 1471-2229 Impact factor: 4.215
Figure 1Gene structures of and Variations mainly occurred in the promoter regions.
Figure 2Haplotypes and predicted -acting regulatory elements in the promoter regions of and A, two haplotypes were formed by 8 SNPs in the TaGW2-6A promoter region. B, four haplotypes were formed by 11 SNPs in the TaGW2-6B promoter region. The ellipses mean the polymorphic sites where markers were developed. The rectangles mean cis-acting regulatory elements. ABRE, abscisic acid-responsive element; GCN4_motif, endosperm tissue-specific expression; GT1-motif, light responsive element; WUN-motif, wound responsive element; AuxRR-core, auxin responsive element; G-box, light responsive element.
Figure 3Marker development and genetic mapping of A, CAPS marker was developed using nucleotide polymorphism at -1709 bp; B, ACAS-PCR marker was designed for SNP-83 T/C; C, dCAPS marker was based on one SNP difference at -721 bp; D, All of the markers based on polymorphisms in the upstream region of TaGW2-6B were mapped on chromosome 6B in common wheat. All wheat accessions used in this study for developing markers were listed in Additional file 1: Table S3.
haplotype associations with grain traits in two environments
| | | | | | | | | |
| KL (mm) | 6.77 ± 0.06a (A) | 6.58 ± 0.06ab (AB) | 6.40 ± 0.05bc(B) | 6.27 ± 0.09c(B) | 6.73 ± 0.05a(A) | 6.56 ± 0.06a(AB) | 6.35 ± 0.06b(BC) | 6.15 ± 0.08b(C) |
| KW (mm) | 3.23 ± 0.02a(A) | 3.15 ± 0.03a(A) | 3.04 ± 0.02b(B) | 2.91 ± 0.04c(B) | 3.29 ± 0.02a(A) | 3.19 ± 0.02b(B) | 3.11 ± 0.02c(BC) | 3.05 ± 0.03c(C) |
| KT(mm) | 2.90 ± 0.02a(A) | 2.84 ± 0.02ab(AB) | 2.79 ± 0.02b(BC) | 2.67 ± 0.04c(C) | 2.93 ± 0.02a(A) | 2.86 ± 0.02b(AB) | 2.80 ± 0.02bc(B) | 2.74 ± 0.03c(B) |
| KL/KW ratio | 2.10 ± 0.02a | 2.09 ± 0.02a | 2.11 ± 0.02a | 2.16 ± 0.04a | 2.05 ± 0.02a | 2.06 ± 0.02a | 2.05 ± 0.02a | 2.02 ± 0.03a |
| TKW (g) | 40.39 ± 0.71a(A) | 36.72 ± 0.88b(B) | 33.89 ± 0.72c(BC) | 29.35 ± 0.89d(C) | 40.99 ± 0.72a(A) | 36.94 ± 0.83b(B) | 33.88 ± 0.60c(BC) | 31.20 ± 0.82c(C) |
| | | | | | | | | |
| KL (mm) | 6.70 ± 0.16a | 6.38 ± 0.08ab | 6.36 ± 0.06b | 6.27 ± 0.10b | 6.64 ± 0.13a(A) | 6.38 ± 0.07ab(AB) | 6.33 ± 0.06ab(AB) | 6.15 ± 0.09b(B) |
| KW (mm) | 3.01 ± 0.05a | 3.01 ± 0.03a | 3.01 ± 0.02a | 2.92 ± 0.04a | 3.13 ± 0.05a | 3.11 ± 0.02a | 3.10 ± 0.02a | 3.06 ± 0.03a |
| KT (mm) | 2.79 ± 0.05a | 2.77 ± 0.03a | 2.77 ± 0.02a | 2.69 ± 0.04a | 2.83 ± 0.04a | 2.79 ± 0.03a | 2.78 ± 0.02a | 2.75 ± 0.03a |
| KL/KW ratio | 2.23 ± 0.05a | 2.12 ± 0.03a | 2.12 ± 0.02a | 2.16 ± 0.05a | 2.13 ± 0.04a | 2.06 ± 0.03a | 2.05 ± 0.02a | 2.01 ± 0.03a |
| TKW (g) | 36.08 ± 2.03a(A) | 32.44 ± 1.02ab(AB) | 33.06 ± 0.70ab(AB) | 29.70 ± 0.90b(B) | 36.21 ± 1.76a | 32.50 ± 0.79b | 33.29 ± 0.60ab | 31.53 ± 0.81b |
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| KL (mm) | 6.79 ± 0.06a | 6.80 ± 0.08a | 6.63 ± 0.09a | 6.22 ± 0.02a | 6.76 ± 0.05a | 6.76 ± 0.10a | 6.48 ± 0.15a | 6.13 ± 0.03a |
| KW (mm) | 3.30 ± 0.02a(A) | 3.30 ± 0.03a(A) | 3.23 ± 0.06a(AB) | 2.85 ± 0.10b(B) | 3.34 ± 0.02a | 3.29 ± 0.03ab | 3.21 ± 0.04ab | 2.95 ± 0.15b |
| KT (mm) | 2.94 ± 0.02a(A) | 2.90 ± 0.03a(A) | 2.91 ± 0.05a(A) | 2.49 ± 0.11b(B) | 2.96 ± 0.02a | 2.94 ± 0.02a | 2.91 ± 0.05ab | 2.63 ± 0.13b |
| KL/KW ratio | 2.06 ± 0.02a | 2.06 ± 0.02a | 2.06 ± 0.04a | 2.19 ± 0.08a | 2.03 ± 0.02a | 2.06 ± 0.03a | 2.02 ± 0.04a | 2.09 ± 0.12a |
| TKW (g) | 41.77 ± 0.59a(A) | 41.32 ± 1.08a(A) | 39.71 ± 2.16a(A) | 25.09 ± 3.62b(B) | 42.52 ± 0.67a(A) | 41.70 ± 1.09a(A) | 37.98 ± 1.81ab(AB) | 27.27 ± 4.39b(B) |
02LY, Luoyang (2002); 06LY, Luoyang (2006).
Different capital and small letters within groups indicate significance differences between haplotypes at P <0.01 and P <0.05 for each trait, respectively.
*Hap-6B-1, landraces, N = 20; Modern cultivars, N = 62.
*Hap-6B-2, landraces, N = 44; Modern cultivars, N = 41.
*Hap-6B-3, landraces, N = 63; Modern cultivars, N = 9.
*Hap-6B-4, landraces, N = 24; Modern cultivars, N = 2.
Figure 4haplotype distribution in ten Chinese wheat ecological regions. A, TaGW2-6B haplotype distribution in 151 Chinese landraces; B, TaGW2-6B haplotype distribution in 320 modern cultivars. I, Northern winter wheat region; II, Yellow and Huai River valley winter wheat region; III, Low and middle Yangtze River valley winter wheat region; IV, Southwestern winter wheat region; V, Southern winter wheat region; VI, Northeastern spring wheat region; VII, Northern spring wheat region; VIII, Northwestern spring wheat region; IX, Qinghai-Tibet spring-winter wheat region; X, Xinjiang winter-spring wheat region.
Figure 5Haplotype frequencies of in 151 landraces and 320 modern cultivars released in different periods in China.
Figure 6Geographic distribution of haplotypes at haplotypes and in global wheat cultivars. A, Geographic distribution of TaGW2-6A haplotypes in 320 Chinese, 374 European, 471 American, 51 Australian, 53 CIMMYT and 83 Russian accessions; B, Geographic distribution of TaGW2-6B haplotypes. North America; II, CIMMYT; III, Europe; IV, Former USSR; V, China; VI, Australia.
Figure 7Mean relative expression levels of in 22 wheat accessions at different stages of grain development. A, Mean relative expression levels of TaGW2-6A, TaGW2-6B and TaGW2-6D; B, Mean relative expression levels of haplotypes of TaGW2-6B. First Y-axis means relative expression levels of TaGW2. Secondary Y-axis means average Ct values of actin and Ta2776 genes in cultivars at different stages of grain development. As endogenous control, the actin and Ta2776 genes were not varying too much at different stages. Normalized values of TaGW2 relative expression to actin were given as Mean ± SD.
Effects of and haplotype interaction on grain traits in two environments
| | | | | | | | | |
| KL (mm) | 6.79 ± 0.07a(A) | 6.66 ± 0.08abc(AB) | 6.36 ± 0.06bc(B) | 6.11 ± 0.17abc(AB) | 6.73 ± 0.11 ac(AB) | 6.51 ± 0.09abc(AB) | 6.44 ± 0.08abc(AB) | 6.31 ± 0.10c(B) |
| KW (mm) | 3.28 ± 0.03a(A) | 3.25 ± 0.03a(A) | 3.05 ± 0.03b(BC) | 3.05 ± 0.03abc(ABC) | 3.15 ± 0.04ab(AB) | 3.06 ± 0.03b(BC) | 3.03 ± 0.03bc(BC) | 2.88 ± 0.04c(C) |
| KT (mm) | 2.91 ± 0.03a(A) | 2.89 ± 0.03ab(A) | 2.78 ± 0.03b(AB) | 2.86 ± 0.05abc(AB) | 2.89 ± 0.03ab(A) | 2.79 ± 0.03b(AB) | 2.80 ± 0.03ab(AB) | 2.63 ± 0.04c(B) |
| KL/KW ratio | 2.08 ± 0.02ab | 2.05 ± 0.02a | 2.09 ± 0.02ab | 2.00 ± 0.04ab | 2.15 ± 0.03ab | 2.13 ± 0.03ab | 2.13 ± 0.03ab | 2.20 ± 0.05b |
| TKW (g) | 41.33 ± 0.80a(A) | 39.35 ± 1.25a(ACD) | 33.57 ± 0.91bc(BE) | 33.34 ± 1.64abc(ABE) | 38.98 ± 1.28ab(AB) | 34.59 ± 1.16b(BCE) | 34.35 ± 1.17b(BDE) | 28.39 ± 0.93c(E) |
| | | | | | | | | |
| KL (mm) | 6.71 ± 0.21a | 6.40 ± 0.11a | 6.33 ± 0.07a | 6.11 ± 0.17a | 6.70 ± 0.23a | 6.37 ± 0.10a | 6.41 ± 0.09a | 6.32 ± 0.12a |
| KW (mm) | 3.02 ± 0.05ab(AB) | 3.11 ± 0.05a(A) | 3.01 ± 0.03ab(AB) | 3.05 ± 0.03ab(AB) | 3.01 ± 0.08ab(AB) | 2.97 ± 0.03ab(AB) | 3.01 ± 0.03ab(AB) | 2.88 ± 0.04b(B) |
| KT (mm) | 2.67 ± 0.07ab | 2.79 ± 0.06ab | 2.76 ± 0.03ab | 2.86 ± 0.05ab | 2.87 ± 0.06a | 2.76 ± 0.04ab | 2.79 ± 0.03ab | 2.64 ± 0.05b |
| KL/KW ratio | 2.23 ± 0.08a | 2.06 ± 0.04a | 2.11 ± 0.02a | 2.00 ± 0.04a | 2.23 ± 0.06a | 2.15 ± 0.03a | 2.13 ± 0.03a | 2.20 ± 0.05a |
| TKW(g) | 34.38 ± 2.55ab(AB) | 34.33 ± 1.76ab(AB) | 32.63 ± 0.84ab(AB) | 33.34 ± 1.64ab(AB) | 37.22 ± 2.96a(A) | 31.64 ± 1.24ab(AB) | 33.68 ± 1.22ab(AB) | 28.74 ± 0.95b(B) |
| | | | | | | | | |
| KL (mm) | 6.81 ± 0.08a | 6.79 ± 0.10a | 6.59 ± 0.16a | | 6.75 ± 0.11a | 6.80 ± 0.15a | 6.68 ± 0.05a | 6.22 ± 0.02a |
| KW (mm) | 3.33 ± 0.02a(A) | 3.33 ± 0.04a(A) | 3.29 ± 0.06ab(AB) | | 3.23 ± 0.04ab(AB) | 3.24 ± 0.05ab(AB) | 3.15 ± 0.09ab(AB) | 2.85 ± 0.10b(B) |
| KT (mm) | 2.96 ± 0.02a(A) | 2.95 ± 0.04a(A) | 2.94 ± 0.05a(AB) | | 2.90 ± 0.03a(AB) | 2.84 ± 0.05ab(AB) | 2.88 ± 0.11ab(AB) | 2.49 ± 0.11b(B) |
| KL/KW ratio | 2.05 ± 0.02a | 2.04 ± 0.02a | 2.00 ± 0.03a | | 2.10 ± 0.04a | 2.10 ± 0.05a | 2.13 ± 0.08a | 2.19 ± 0.08a |
| TKW(g) | 42.68 ± 0.65a(A) | 41.97 ± 1.41a(A) | 40.53 ± 3.09a(AB) | | 39.99 ± 1.11a(A) | 40.30 ± 1.69a(A) | 38.69 ± 3.37ab(AB) | 25.09 ± 3.62b(B) |
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| KL (mm) | 6.71 ± 0.06a(A) | 6.60 ± 0.10ab(AB) | 6.30 ± 0.07bc(B) | 6.05 ± 0.13abc(AB) | 6.75 ± 0.09a(A) | 6.53 ± 0.08abc(AB) | 6.42 ± 0.10abc(AB) | 6.17 ± 0.09c(B) |
| KW (mm) | 3.34 ± 0.03a(A) | 3.24 ± 0.03acd(AB) | 3.12 ± 0.03bf(BC) | 3.12 ± 0.07abf(ABC) | 3.20 ± 0.04bc(ABC) | 3.15 ± 0.03bdf(BC) | 3.10 ± 0.02bef(BC) | 3.03 ± 0.03f(C) |
| KT(mm) | 2.93 ± 0.03a(A) | 2.86 ± 0.03ab(AB) | 2.76 ± 0.02bc(B) | 2.83 ± 0.04abc(AB) | 2.93 ± 0.03a(A) | 2.85 ± 0.03abc(AB) | 2.85 ± 0.02abc(AB) | 2.72 ± 0.03c(B) |
| KL/KW ratio | 2.01 ± 0.02a | 2.04 ± 0.03a | 2.02 ± 0.02a | 1.95 ± 0.07a | 2.11 ± 0.03a | 2.08 ± 0.03a | 2.07 ± 0.03a | 2.04 ± 0.03a |
| TKW (g) | 41.85 ± 0.84a(A) | 39.09 ± 1.25acde(AC) | 33.38 ± 0.83b(B) | 32.48 ± 2.09cb(AB) | 39.70 ± 1.28 ac(AC) | 35.19 ± 1.05bd(BC) | 34.57 ± 0.83be(BC) | 30.89 ± 0.90bf(BD) |
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| KL (mm) | 6.52 ± 0.20a | 6.33 ± 0.11a | 6.26 ± 0.07a | 6.05 ± 0.13a | 6.72 ± 0.18a | 6.40 ± 0.09a | 6.42 ± 0.11a | 6.18 ± 0.10a |
| KW (mm) | 3.13 ± 0.08a | 3.12 ± 0.04a | 3.10 ± 0.03a | 3.12 ± 0.07a | 3.13 ± 0.07a | 3.10 ± 0.03a | 3.10 ± 0.03a | 3.04 ± 0.03a |
| KT (mm) | 2.74 ± 0.07a | 2.73 ± 0.03a | 2.74 ± 0.03a | 2.83 ± 0.04a | 2.88 ± 0.05a | 2.81 ± 0.04a | 2.83 ± 0.03a | 2.73 ± 0.03a |
| KL/KW ratio | 2.09 ± 0.07a | 2.03 ± 0.04a | 2.03 ± 0.03a | 1.95 ± 0.07a | 2.15 ± 0.06a | 2.07 ± 0.03a | 2.08 ± 0.04a | 2.03 ± 0.03a |
| TKW (g) | 34.22 ± 2.28ab | 33.24 ± 1.21ab | 32.69 ± 0.83ab | 32.48 ± 2.09ab | 37.55 ± 2.51a | 32.19 ± 1.00ab | 34.15 ± 0.83ab | 31.27 ± 0.89b |
| | | | | | | | | |
| KL (mm) | 6.75 ± 0.06a | 6.74 ± 0.13a | 6.53 ± 0.16a | | 6.77 ± 0.09a | 6.79 ± 0.15a | 6.41 ± 0.29a | 6.13 ± 0.03a |
| KW (mm) | 3.38 ± 0.02a | 3.31 ± 0.04ab | 3.28 ± 0.05ab | | 3.24 ± 0.04ab | 3.25 ± 0.05ab | 3.11 ± 0.03ab | 2.95 ± 0.15b |
| KT (mm) | 2.97 ± 0.02a | 2.93 ± 0.03ab | 2.89 ± 0.07ab | | 2.95 ± 0.03ab | 2.95 ± 0.04ab | 2.94 ± 0.06ab | 2.63 ± 0.13b |
| KL/KW ratio | 2.00 ± 0.02a | 2.04 ± 0.04a | 1.99 ± 0.05a | | 2.09 ± 0.04a | 2.09 ± 0.04a | 2.06 ± 0.08a | 2.09 ± 0.12a |
| TKW (g) | 43.34 ± 0.70a(A) | 42.14 ± 1.47a(AB) | 38.47 ± 2.49ab(AB) | 40.93 ± 1.39a(AB) | 41.01 ± 1.65a(AB) | 37.36 ± 3.02ab(AB) | 27.27 ± 4.39b(B) | |
02LY, Luoyang (2002); 06LY, Luoyang (2006).
Different capital and small letters indicate significant between haplotypes at P <0.01 and P <0.05.
*A/1, Hap-6A-A/Hap-6B-1; landraces, N = 8; Modern cultivars, N = 41.
*A/2, Hap-6A-A/Hap-6B-2; landraces, N = 13; Modern cultivars, N = 25.
*A/3, Hap-6A-A/Hap-6B-3; landraces, N = 37; Modern cultivars, N = 5.
*A/4, Hap-6A-A/Hap-6B-4; landraces, N = 5; Modern cultivars, N = 0.
*G/1, Hap-6A-G/Hap-6B-1; landraces, N = 12; Modern cultivars, N = 21.
*G/2, Hap-6A-G/Hap-6B-2; landraces, N = 31; Modern cultivars, N = 16.
*G/3, Hap-6A-G/Hap-6B-3; landraces, N = 26; Modern cultivar, N = 4.
*G/4, Hap-6A-G/Hap-6B-4; landraces, N = 19; Modern cultivars, N = 2.
Figure 8TKWs and kernel widths for the combination and for single haplotypes. A and B: landraces; C and D: modern cultivars. The bars represent the standard deviation.
Phenotypic explanation rates ( ) of and their combinations for grain traits in landrace and modern cultivar subpopulations in two environments
| Landraces | | | | | | |
| TKW (g) | 0.44 | 7.17 | 10.40 | 0.09 | 6.19 | 8.52 |
| KL (mm) | 0.13 | 5.77 | 6.41 | 1.12 | 6.81 | 8.57 |
| KW (mm) | 3.58 | 3.76 | 9.76 | 0.27 | 1.58 | 2.33 |
| KT (mm) | 0.01 | 2.71 | 9.57 | 3.47 | 1.62 | 9.52 |
| Modern cultivars | | | | | | |
| TKW (g) | 5.79 | 13.54 | 16.82 | 3.94 | 12.88 | 14.99 |
| KL (mm) | 0.26 | 3.23 | 3.49 | 0.03 | 4.84 | 5.04 |
| KW (mm) | 9.73 | 10.51 | 17.36 | 10.55 | 9.73 | 18.38 |
| KT (mm) | 8.31 | 12.08 | 17.79 | 0.36 | 8.55 | 8.97 |
02LY, Luoyang (2002); 06LY, Luoyang (2006).