| Literature DB >> 34095311 |
Anna Arina Bt Ab Halim1, Mohd Y Rafii1,2, Mohamad B Osman1, Yusuff Oladosu2, Samuel C Chukwu1,2,3.
Abstract
High kernel elongation (HKE) is one of the high-quality characteristics in rice. The objectives of this study were to determine the effects of ageing treatments, gene actions, and inheritance pattern of kernel elongation on cooking quality in two populations of rice and determine the path of influence and contribution of other traits to kernel elongation in rice. Two rice populations derived from crosses between MR219 × Mahsuri Mutan and MR219 × Basmati 370 were used. The breeding materials included two F1 progenies from the two populations, and their respective parents were grown in four different batches at a week interval to synchronize the flowering between the female and male plants. Scaling tests and generation means analysis were carried out to determine ageing effects and estimate additive-dominance gene action and epistasis. The estimation of gene interaction was based on quantitative traits. Path coefficient analysis was done using SAS software version 9.4 to determine the path of influence (direct or indirect) of six quantitative traits on HKE. Results obtained showed that nonallelic gene interaction was observed in all traits. The results before ageing and after ageing showed significant differences in all traits, while the gene interaction changed after ageing. The HKE value improved after ageing, suggesting that ageing is an external factor that could influence gene expression. The epistasis effect for HKE obtained from the cross Mahsuri Mutan × MR219 showed duplicate epistasis while that obtained from a cross between Basmati 370 × MR219 showed complimentary epistasis. Besides, the heritability of HKE was higher in Basmati 370 × MR219 compared to that obtained in Mahsuri Mutan × MR219. The path analysis showed that the cooked grain length and length-width ratio positively significantly affected HKE. It was concluded that ageing treatment is an external factor that could improve the expression of HKE. The findings from this study would be useful to breeders in the selection and development of new specialty (HKE) rice varieties.Entities:
Year: 2021 PMID: 34095311 PMCID: PMC8164538 DOI: 10.1155/2021/8350136
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Analysis of variance for grain quality traits from six generations of selected populations.
| Source of variance | df | Means square | ||||||
|---|---|---|---|---|---|---|---|---|
| MGL | CGL | MGW | CGW | HKE | PC | LW | ||
|
| ||||||||
| Generations (G) | 5 | 35.82∗∗ | 900.15∗∗ | 9.08∗∗ | 7.96∗∗ | 4.47∗∗ | 4.27∗∗ | 82.41∗∗ |
| Ageing (A) | 1 | 13.01∗∗ | 846.25∗∗ | 1.13∗∗ | 15.51∗∗ | 43.26∗∗ | 0.44∗∗ | 0.015 ns |
| G × A | 5 | 1.95∗∗ | 349.50∗∗ | 3.09∗∗ | 0.47∗∗ | 2.76∗∗ | 9.25∗∗ | 7.39∗∗ |
| Error | 24 | 0.104 | 0.188 | 0.478 | 0.595 | 0.692 | 0.442 | 0.151 |
|
| ||||||||
|
| ||||||||
| Generations (G) | 5 | 819.58∗∗ | 3609.35∗∗ | 11.41∗∗ | 10.72∗∗ | 5.05∗∗ | 22.27∗∗ | 397.12∗∗ |
| Ageing (A) | 1 | 345.63∗∗ | 4742.85∗∗ | 11.33∗∗ | 87.22∗∗ | 20.27∗∗ | 75.42∗∗ | 165.61∗∗ |
| G × A | 5 | 186.65∗∗ | 673.31∗∗ | 3.32∗∗ | 0.76∗∗ | 5.42∗∗ | 39.32∗∗ | 76.34∗∗ |
| Error | 24 | 0.198 | 0.096 | 0.225 | 0.709 | 0.009 | 0.017 | 0.485 |
∗∗Significant at P ≤ 0.01; ∗significant at P ≤ 0.05. ns: nonsignificant difference; MGL: milled grain length; CGL: cooked grain length; MGW: milled grain width; CGW: cooked grain width; HKE: high kernel elongation ratio; PC: proportionate change; LW: length-width ratio. Population size: P1: 20, P2: 20, F1: 60, F2: 160, BCP1: 120, and BCP2: 120 for both populations.
Generation means and interaction of ageing and nonageing treatments for grain quality traits in a population derived from a cross between MR219 × Mahsuri Mutan.
| Traits | MGL | CGL | MGW | CGW | HKE | PC | LW |
|---|---|---|---|---|---|---|---|
| Mahsuri Mutan | 6.54a | 11.10a | 1.76e | 1.93d | 1.65a | 0.55a | 3.71a |
| MR219 | 5.56b | 7.23e | 2.14a | 2.38a | 1.37d | 0.17c | 2.60d |
| F1 | 6.08c | 9.72b | 2.03b | 2.19b | 1.52c | 0.49a | 2.99c |
| F2 | 5.75d | 9.09c | 1.97c | 2.13c | 1.51c | 0.51a | 2.94c |
| BCP1(Mahsuri Mutan) | 6.42e | 11.19a | 1.84d | 2.11c | 1.59b | 0.52a | 3.49b |
| BCP2(MR219) | 5.44f | 8.14d | 2.15a | 2.35a | 1.37d | 0.37b | 2.53e |
|
| |||||||
|
| |||||||
| Ageing (90°C, 3 hours) | 5.83a | 9.98a | 2.01a | 2.26a | 1.62a | 0.47a | 3.00a |
| Nonageing | 5.97b | 8.92b | 1.97b | 2.11b | 1.38b | 0.45b | 2.99a |
MGL: milled grain length; CGL: cooked grain length; MGW: milled grain width; CGW: cooked grain width; HKE: high kernel elongation ratio; PC: proportionate change; LW: length-width ratio. Means followed by different letters in the same column are significantly different at P ≤ 0.05 based on DMRT.
Scaling test of the three-parameter model for MR219 × Mahsuri Mutan cross for grain parameters under nonageing treatment.
| Parameter | MGL | CGL | MGW | CGW | HKE | PC | LW |
|---|---|---|---|---|---|---|---|
|
| −0.292 ± 0.106∗∗ | 0.202 ± 0.348ns | −0.051 ± 0.015∗∗ | −0.098 ± 0.023∗∗ | 0.037 ± 0.030ns | 0.128 ± 0.062∗ | −0.369 ± 0.085ns |
|
| 0.867 ± 0.100∗∗ | −0.299 ± 0.349ns | 0.004 ± 0.026ns | −0.141 ± 0.026∗∗ | 0.086 ± 0.027∗ | −0.171 ± 0.060∗ | 0.826 ± 0.051∗∗ |
|
| 1.691 ± 0.219∗∗ | 0.395 ± 0.660ns | 0.486 ± 0.064∗∗ | 0.403 ± 0.060∗∗ | 0.180 ± 0.053∗ | −1.199 ± 0.18∗∗ | −2.526 ± 0.147∗∗ |
MGL: milled grain length; CGL: cooked grain length; MGW: milled grain width; CGW: cooked grain width; HKE: high kernel elongation ratio; PC: proportionate change; LW: length-width ratio; ns: nonsignificant. A = 2B1 − P1 − F1; B = 2B2 − P2 − F1; C = 4F2 − 2F1 − P1 − P2. ∗ and ∗∗ are the significant t-test from zero at 0.05 and 0.01 probability levels, respectively.
Scaling test of the three-parameter model for MR219 × Mahsuri Mutan cross for grain parameters under ageing treatment.
| Parameter | MGL | CGL | MGW | CGW | HKE | PC | LW |
|---|---|---|---|---|---|---|---|
|
| 0.153 ± 0.112ns | 3.368 ± 0.487∗∗ | −0.271 ± 0.014∗∗ | 0.083 ± 0.023∗ | 0.095 ± 0.043∗ | −0.138 ± 0.074∗ | −0.514 ± 0.064∗∗ |
|
| −0.654 ± 0.110∗∗ | −1.625 ± 0.137∗∗ | 0.270 ± 0.027∗∗ | 0.127 ± 0.022∗∗ | −0.201 ± 0.013∗∗ | 0.008 ± 0.045ns | 0.625 ± 0.065∗∗ |
|
| 1.528 ± 0.231∗∗ | 4.207 ± 0.863∗∗ | −0.554 ± 0.061∗∗ | −0.437 ± 0.078∗∗ | −0.304 ± 0.076∗∗ | 0.557 ± 0.113∗∗ | −0.317 ± 0.103∗∗ |
MGL: milled grain length; CGL: cooked grain length; MGW: milled grain width; CGW: cooked grain width; HKE: high kernel elongation ratio; PC: proportionate change; LW: length-width ratio; ns: nonsignificant. A = 2B1 − P1 − F1; B = 2B2 − P2 − F1; C = 4F2 − 2F1 − P1 − P2. ∗ and ∗∗ are the significant t-test from zero at 0.05 and 0.01 probability levels, respectively.
Estimation of gene effect under nonageing in MR219 × Mahsuri Mutan cross.
| Character | Means ( | Additive ( | Dominance ( | Additive × additive ( | Additive × dominant ( | Dominant × dominant ( | Type of epistasis |
|---|---|---|---|---|---|---|---|
| MGL | 5.746 ± 0.042∗∗ | 0.999 ± 0.047∗∗ | 1.229 ± 0.205∗∗ | 1.116 ± 0.193∗∗ | 1.160 ± 0.118∗∗ | −0.541 ± 0.288∗∗ | Duplicate |
| CGL | 8.815 ± 0.113∗∗ | 1.044 ± 0.149∗∗ | 1.721 ± 0.593∗ | 0.492 ± 0.542ns | −0.500 ± 0.406ns | −0.589 ± 0.890ns | Duplicate |
| MGW | 1.851 ± 0.015∗∗ | −0.173 ± 0.008∗∗ | 0.590 ± 0.062∗ | 0.533 ± 0.060∗ | 0.055 ± 0.028∗∗ | −0.579 ± 0.072ns | Duplicate |
| CGW | 2.019 ± 0.013∗∗ | −0.249 ± 0.009∗∗ | 0.675 ± 0.057∗∗ | 0.643 ± 0.054∗ | −0.022 ± 0.015ns | −0.882 ± 0.071∗∗ | Duplicate |
| HKE | 1.321 ± 0.008∗∗ | 0.074 ± 0.009∗∗ | 0.111 ± 0.043∗ | 0.055 ± 0.038∗ | 0.052 ± 0.039ns | 0.070 ± 0.064ns | Complimentary |
| PC | 0.649 ± 0.040∗∗ | −0.029 ± 0.026ns | −0.962 ± 0.173∗∗ | −1.156 ± 0.168∗∗ | −0.299 ± 0.071∗∗ | 1.113 ± 0.208∗∗ | Duplicate |
| LW | 2.813 ± 0.037∗∗ | 0.770 ± 0.027∗∗ | 0.877 ± 0.163∗∗ | 0.968 ± 0.158∗∗ | 0.454 ± 0.075∗∗ | −0.559 ± 0.2∗∗ | Duplicate |
∗ and ∗∗ are significant to the χ2 test, from 0 to 0.5 probability. χ2 tabulated value = 7.81. ns: nonsignificant difference; MGL: milled grain length; CGL: cooked grain length; MGW: milled grain width; GCW: cooked grain width; HKE: high kernel elongation ratio; PC: proportionate change; LW: length-width ratio.
Estimation of gene effect under ageing in MR219 × Mahsuri Mutan cross.
| Character | Means ( | Additive ( | Dominant ( | Additive × additive ( | Additive × dominant ( | Dominant × dominant ( | Type of epistasis |
|---|---|---|---|---|---|---|---|
| MGL | 6.342 ± 0.045∗∗ | 0.962 ± 0.041∗∗ | −2.074 ± 0.211∗∗ | −2.028 ± 0.198∗∗ | 0.404 ± 0.074∗∗ | 2.529 ± 0.283∗∗ | Duplicate |
| CGL | 11.018 ± 0.185∗∗ | 5.071 ± 0.143∗∗ | −2.588 ± 0.823∗∗ | −2.465 ± 0.792∗∗ | 2.497 ± 0.240∗∗ | 0.722 ± 1.036ns | Duplicate |
| MGW | 1.875 ± 0.013∗∗ | −0.452 ± 0.009∗∗ | 0.664 ± 0.057∗∗ | 0.553 ± 0.055∗∗ | −0.271 ± 0.013∗∗ | −0.552 ± 0.070∗∗ | Duplicate |
| CGW | 2.121 ± 0.018∗∗ | −0.243 ± 0.009∗∗ | 0.680 ± 0.076∗∗ | 0.647 ± 0.074∗∗ | −0.022 ± 0.014ns | −0.857 ± 0.087∗∗ | Duplicate |
| HKE | 1.580 ± 0.011∗ | 0.361 ± 0.007∗ | 0.176 ± 0.049∗ | 0.197 ± 0.047∗ | 0.296 ± 0.030∗ | −0.091 ± 0.061ns | Duplicate |
| PC | 0.366 ± 0.020∗∗ | 0.326 ± 0.025∗∗ | 0.762 ± 0.102∗∗ | 0.688 ± 0.094∗∗ | 0.147 ± 0.079∗∗ | −0.818 ± 0.15ns | Duplicate |
| LW | 3.073 ± 0.015∗∗ | 1.140 ± 0.024∗∗ | −0.664 ± 0.086∗∗ | −0.428 ± 0.075∗∗ | 1.139 ± 0.085∗∗ | 0.539 ± 0.140∗∗ | Duplicate |
∗ and ∗∗ are significant to the χ2 test, from 0 to 0.5 probability. χ2 tabulated value = 7. ns: nonsignificant difference; MGL: milled grain length; CGL: cooked grain length; MGW: milled grain width; GCW: cooked grain width; HKE: high kernel elongation ratio; PC: proportionate change; LW: length-width ratio.
Generation means and interaction of ageing and nonageing treatments for grain quality traits in a population derived from a cross between MR219 × Basmati 370.
| Traits | MGL | CGL | MGW | CGW | HKE | PC | LW |
|---|---|---|---|---|---|---|---|
| Basmati 370 | 8.48a | 15.40a | 1.76e | 1.99e | 1.66a | 0.21a | 4.84a |
| MR219 | 5.20e | 7.24b | 2.20a | 2.44a | 1.45d | 0.02c | 2.37b |
| F1 | 6.86c | 11.02c | 2.01c | 2.23b | 1.59c | 0.03bc | 3.41c |
| F2 | 7.18b | 9.85d | 2.08b | 2.19c | 1.51b | 0.08d | 3.53d |
| BCP1 | 8.47a | 14.16e | 1.85d | 2.12d | 1.67a | 0.23c | 4.59e |
| BCP2 | 5.39d | 8.17f | 2.19a | 2.42a | 1.49c | 0.09b | 2.47f |
|
| |||||||
| Ageing (90°C, 3 hours) | 6.66b | 11.99a | 2.09a | 2.41a | 1.64a | 0.17a | 3.76a |
| Nonageing | 7.33a | 9.48b | 1.97b | 2.07b | 1.47b | 0.15b | 3.29b |
MGL: milled grain length; CGL: cooked grain length; MGW: milled grain width; CGW: cooked grain width; HKE: high kernel elongation ratio; PC: proportionate change; LW: length-width ratio. Means followed by different letters in the same column are significantly different at P ≤ 0.05 based on DMRT.
Scaling test of MR219 × Basmati 370 cross for grain parameter under ageing treatment.
| Parameter | MGL | CGL | MGW | CGW | HKE | PC | LW |
|---|---|---|---|---|---|---|---|
|
| 0.153 ± 0.112ns | 3.368 ± 0.487∗∗ | −0.271 ± 0.014∗∗ | 0.083 ± 0.023∗ | 0.095 ± 0.043∗ | −0.138 ± 0.074∗ | −0.514 ± 0.064∗∗ |
|
| −0.654 ± 0.110∗∗ | −1.625 ± 0.137∗∗ | 0.270 ± 0.027∗∗ | 0.127 ± 0.022∗∗ | −0.201 ± 0.013∗∗ | 0.008 ± 0.045 ns | 0.625 ± 0.065∗∗ |
|
| 1.528 ± 0.231∗∗ | 4.207 ± 0.863∗∗ | −0.554 ± 0.061∗∗ | −0.437 ± 0.078∗∗ | −0.304 ± 0.076∗∗ | 0.557 ± 0.113∗∗ | −0.317 ± 0.103∗∗ |
MGL: milled grain length; CGL: cooked grain length; MGW: milled grain width; CGW: cooked grain width; HKE: high kernel elongation ratio; PC: proportionate change; LW: length-width ratio; ns: nonsignificant. A = 2B1 − P1 − F1; B = 2B2 − P2 − F1; C = 4F2 − 2F1 − P1 − P2. ∗ and ∗∗ are the significant t-test from zero at 0.05 and 0.01 probability levels, respectively.
Scaling test of Basmati 370 × MR219 cross for grain parameter under nonageing treatment.
| Parameter | MGL | CGL | MGW | CGW | HKE | PC | LW |
|---|---|---|---|---|---|---|---|
|
| −1.340 ± 0.090∗∗ | 1.340 ± 0.090∗∗ | 0.126 ± 0.029∗∗ | 0.041 ± 0.022∗ | 0.094 ± 0.019∗∗ | −0.179 ± 0.019∗∗ | 3.788 ± 0.025∗∗ |
|
| 1.678 ± 0.082∗∗ | −1.678 ± 0.082∗∗ | −0.031 ± 0.027ns | 0.028 ± 0.027ns | −0.354 ± 0.015∗∗ | −0.026 ± 0.018∗∗ | −1.563 ± 0.022∗∗ |
|
| −5.546 ± 0.144∗∗ | 5.546 ± 0.144∗∗ | −0.670 ± 0.064∗∗ | −0.176 ± 0.090∗ | −0.182 ± 0.037ns | 0.027 ± 0.032∗∗ | −0.352 ± 0.040∗∗ |
MGL: milled grain length; CGL: cooked grain length; MGW: milled grain width; CGW: cooked grain width; HKE: high kernel elongation ratio; PC: proportionate change; LW: length-width ratio; ns: nonsignificant. A = 2B1 − P1 − F1; B = 2B2 − P2 − F1; C = 4F2 − 2F1 − P1 − P2. ∗ and ∗∗ are the significant t-test from zero at 0.05 and 0.01 probability levels, respectively.
Estimation of gene effect under nonageing in MR219 × Basmati 370 cross.
| Character | Means ( | Additive ( | Dominant ( | Additive × additive ( | Additive × dominant ( | Dominant × dominant ( | Type of epistasis |
|---|---|---|---|---|---|---|---|
| MGL | 8.317 ± 0.024∗∗ | 2.963 ± 0.037∗∗ | −5.878 ± 0.133∗∗ | −5.884 ± 0.122∗∗ | 1.509 ± 0.055∗∗ | 6.222 ± 0.208∗∗ | Duplicate |
| CGL | 11.918 ± 0.238∗∗ | 3.204 ± 0.127∗∗ | −7.213 ± 1.002∗ | −6.891 ± 0.983ns | −0.108 ± 0.197ns | 6.517 ± 1.143ns | Duplicate |
| MGW | 1.791 ± 0.014∗∗ | −0.146 ± 0.016∗∗ | 0.772 ± 0.063∗∗ | 0.765 ± 0.061∗∗ | 0.078 ± 0.018∗∗ | −0.860 ± 0.084∗∗ | Duplicate |
| CGW | 2.012 ± 0.021∗∗ | −0.265 ± 0.011∗∗ | 0.255 ± 0.089∗ | 0.246 ± 0.087∗ | 0.007 ± 0.016ns | −0.315 ± 0.100∗∗ | Duplicate |
| HKE | 1.444 ± 0.006∗∗ | −0.076 ± 0.008∗∗ | 0.215 ± 0.031∗∗ | 0.196 ± 0.029∗∗ | −0.453 ± 0.021∗∗ | −0.457 ± 0.045∗∗ | Duplicate |
| PC | −0.592 ± 0.014∗∗ | −0.308 ± 0.025∗∗ | 2.606 ± 0.083∗∗ | 2.692 ± 0.076∗∗ | −0.935 ± 0.075∗∗ | −2.998 ± 0.133∗∗ | Duplicate |
| LW | 4.242 ± 0.030∗∗ | 1.765 ± 0.033∗∗ | −3.123 ± 0.144∗∗ | −2.983 ± 0.138∗∗ | 1.195 ± 0.092∗∗ | 3.440 ± 0.198∗ | Duplicate |
∗ and ∗∗ are significant to the χ2 test, from 0 to 0.5 probability. χ2 tabulated value = 7.81. ns: nonsignificant difference; MGL: milled grain length; CGL: cooked grain length; MGW: milled grain width; CGW: cooked grain width; HKE: high kernel elongation ratio; PC: proportionate change; LW: length-width ratio.
Estimation of gene effect under ageing in MR219 × Basmati 370 cross.
| Character | Means ( | Additive ( | Dominant ( | Additive × additive ( | Additive × dominant ( | Dominant × dominant ( | Type of epistasis |
|---|---|---|---|---|---|---|---|
| MGL | 7.633 ± 0.105∗∗ | 3.067 ± 0.065∗∗ | −2.402 ± 0.468∗∗ | −2.357 ± 0.439∗∗ | 1.597 ± 0.164∗∗ | 1.634 ± 0.588∗ | Duplicate |
| CGL | 14.203 ± 0.338∗∗ | 8.779 ± 0.207∗∗ | −8.569 ± 1.452∗∗ | −8.279 ± 1.413∗∗ | 3.937 ± 0.353∗∗ | 8.720 ± 1.720∗∗ | Duplicate |
| MGW | 1.912 ± 0.019∗∗ | −0.539 ± 0.009∗∗ | 0.6760.079∗∗ | 0.616 ± 0.078∗∗ | −0.314 ± 0.014∗∗ | −0.746 ± 0.089∗∗ | Duplicate |
| CGW | 2.322 ± 0.013∗∗ | −0.334 ± 0.009∗∗ | 0.622 ± 0.057∗∗ | 0.601 ± 0.055∗∗ | −0.159 ± 0.015∗∗ | −0.924 ± 0.069∗∗ | Duplicate |
| HKE | 1.638 ± 0.013∗ | 0.210 ± 0.022∗ | 0.748 ± 0.076∗ | −0.289 ± 0.067∗ | −0.358 ± 0.070∗ | 1.210 ± 0.123∗ | Complimentary |
| PC | 0.426 ± 0.028∗∗ | 0.132 ± 0.024∗∗ | −1.729 ± 0.129∗∗ | −1.679 ± 0.123∗∗ | 0.170 ± 0.076∗∗ | 2.213 ± 0.167∗∗ | Duplicate |
| LW | 2.810 ± 0.048∗∗ | 2.469 ± 0.022∗∗ | 2.774 ± 0.201∗∗ | 3.016 ± 0.198∗∗ | 2.329 ± 0.065∗∗ | −3.670 ± 0.221∗∗ | Duplicate |
∗ and ∗∗ are significant to the χ2 test, from 0 to 0.5 probability. χ2 tabulated value = 7.81. ns: nonsignificant difference; MGL: milled grain length; CGL: cooked grain length; MGW: milled grain width; CGW: cooked grain width; HKE: high kernel elongation ratio; PC: proportionate change; LW: length-width ratio.
Heritability of grain quality traits in the F2 populations.
| Traits | Mahsuri Mutan × MR219 | Basmati 370 × MR219 | ||
|---|---|---|---|---|
|
|
|
|
| |
| MGL | 0.74 | 0.95 | 0.52 | 0.11 |
| CGL | 0.57 | 0.42 | 0.95 | 0.95 |
| MGW | 0.93 | 0.93 | 0.85 | 0.85 |
| CGW | 0.87 | 0.87 | 0.96 | 0.96 |
| HKE | 0.54 | 0.02 | 0.67 | 0.63 |
| PC | 0.91 | 0.91 | 0.53 | 0.41 |
| LW | 0.90 | 0.90 | 0.33 | 0.51 |
MGL: milled grain length; CGL: cooked grain length; MGW: milled grain width; CGW: cooked grain width; HKE: high kernel elongation ratio; PC: proportionate change; LW: length-width ratio.
Inheritance pattern of HKE for MR219 × Mahsuri Mutan and MR219 × Basmati 370.
| Cross | Observation on segregation | Expected ratio |
|
| |
|---|---|---|---|---|---|
| NE | HKE | ||||
| MR219 × Mahsuri Mutan | 110 | 50 | 3 : 01 | 3.3 ns | 0.068 |
| MR219 × Basmati 370 | 114 | 46 | 3 : 01 | 1.21 ns | 0.273 |
Note: ∗P ≤ 0.05 and ∗∗P ≤ 0.01. ns = nonsignificant; χ2 = chi-square; NE = normal elongation; HKE = high kernel elongation.
Figure 1The segregation pattern of F2 generation of (a) MR219 × Mahsuri Mutan and (b) MR219 × Basmati 370. NKE = normal kernel elongation; HKE = high kernel elongation.
Phenotypic path analysis of the direct effect levels among six traits associated with HKE of rice.
| Variable | MGL | CGL | MGW | CGW | PC | LW |
|---|---|---|---|---|---|---|
| MGL | 0.08748ns | 0.08748 | -0.08275 | -0.05186 | -0.09517 | 0.16695 |
| CGL | -0.61138 | 1.31001∗∗ | -0.58361 | 0.02410 | 0.40113 | 0.74107 |
| MGW | 0.07901 | 0.12034 | -0.27013∗∗ | -0.09247 | -0.01737 | 0.19625 |
| CGW | -0.00775 | 0.00027 | 0.00494 | 0.01443ns | -0.00121 | -0.00469 |
| PC | 0.00013 | 0.00004 | 0.00001 | -0.00001 | 0.00014ns | -0.00006 |
| LW | -0.11258 | -0.1146 | 0.14729 | 0.06587 | 0.08685 | 0.20274∗∗ |
Note: ∗P ≤ 0.05 and ∗∗P ≤ 0.01. ns: nonsignificance; MGL: milled grain length; CGL: cooked grain length; MGW: milled grain width; CGW: cooked grain width; HKE: high kernel elongation ratio; PC: proportionate change; LW: length-width ratio.
Figure 2Path diagram and coefficient of factors influencing HKE. P values are the direct effects, and r values are the correlation coefficients. MGL: milled grain length; CGL: cooked grain length; MGW: milled grain width; CGW: cooked grain width; HKE: high kernel elongation ratio; PC: proportionate change; LW: length-width ratio.