| Literature DB >> 24882872 |
Jingying Zhang1, Yinan Ge1, Fenxia Han1, Bin Li1, Shurong Yan1, Junming Sun1, Lianzheng Wang1.
Abstract
Soybean isoflavone content has long been considered to be a desirable trait to target in selection programs for their contribution to human health and plant defense systems. The objective of this study was to determine isoflavone concentrations of various soybean cultivars from maturity groups 0 to VI grown in various environments and to analyze their relationship to other important seed characters. Forty soybean cultivars were grown in replicated trials at Wuhan and Beijing of China in 2009/2010 and their individual and total isoflavone concentrations were determined by HPLC. Their yield and quality traits were also concurrently analyzed. The isoflavone components had abundant genetic variation in soybean seed, with a range of coefficient variation from 45.01% to 69.61%. Moreover, individual and total isoflavone concentrations were significantly affected by cultivar, maturity group, site and year. Total isoflavone concentration ranged from 551.15 to 7584.07 μg g-1, and averaged 2972.64 μg g-1 across environments and cultivars. There was a similar trend regarding the isoflavone contents, in which a lower isoflavone concentration was generally presented in early rather than late maturing soybean cultivars. In spite of significant cultivar × year × site interactions, cultivars with consistently high or low isoflavone concentrations across environments were identified, indicating that a genetic factor plays the most important role for isoflavone accumulation. The total isoflavone concentration had significant positive correlations with plant height, effective branches, pods per plant, seeds per plant, linoleic acid and linolenic acid, while significant negative correlations with oleic acid and oil content, indicating that isoflavone concentration can be predicted as being associated with other desirable seed characteristics.Entities:
Keywords: Fatty acid; Isoflavone; Maturity group; Protein; Soybean (Glycine max L. Merrill); Yield
Year: 2014 PMID: 24882872 PMCID: PMC4033804 DOI: 10.1007/s11746-014-2440-3
Source DB: PubMed Journal: J Am Oil Chem Soc ISSN: 0003-021X Impact factor: 1.849
Forty soybean cultivars from various ecotype regions and maturity groups
| Ecotype region | Number | Cultivar identify code (maturity groups) |
|---|---|---|
| North region in China (NRT VER) | 3 | ZDD00041(0), ZDD00698 (I), ZDD07580 (I) |
| Huanghuaihai Valley region in China (HHH VER) | 20 | ZDD01761(III), ZDD02134 (III), ZDD02149 (V), ZDD02400 (IV), ZDD02764 (III), ZDD02891 (III), ZDD02892 (IV), ZDD02921 (III), ZDD03153 (IV), ZDD03570 (III), ZDD03741 (IV), ZDD04275 (IV), ZDD07391 (0), ZDD08190 (IV), ZDD09279 (IV), ZDD09884 (II), ZDD10100 (IV), ZDD18529 (II), ZDD18870 (IV), ZDD19027 (IV) |
| South region in China (SRT VER) | 15 | ZDD04620 (VI), ZDD05502 (I), ZDD06358 (III), ZDD06377 (IV), ZDD06378 (III), ZDD12527 (III), ZDD12680 (V), ZDD14125 (IV), ZDD14911 (V), ZDD15357 (IV), ZDD15624 (IV), ZDD16282 (V), ZDD20652 (V), ZDD21485 (VI), ZDD22145 (VI) |
| Abroad | 2 | WDD00528 (Amsoy, USA, II), WDD01252 (Tokachi Nagaha, Japan, I) |
Monthly precipitation and average temperature in Beijing and Wuhan of China from April to September
| Monthly | Precipitation (mm) | Temperature (°C) | ||||||
|---|---|---|---|---|---|---|---|---|
| Beijing | Wuhan | Beijing | Wuhan | |||||
| 2009 | 2010 | 2009 | 2010 | 2009 | 2010 | 2009 | 2010 | |
| April | 63.6 | 32.2 | 54.3 | 197.7 | 15.8 | 15.9 | 18.5 | 18.3 |
| May | 64.1 | 14.7 | 344.2 | 132.1 | 20.3 | 22.9 | 24.7 | 22.2 |
| June | 125.3 | 95.5 | 129.4 | 306.7 | 23.4 | 26.2 | 29.3 | 28.1 |
| July | 79.3 | 196.6 | 148.1 | 95.9 | 27.2 | 27.0 | 26.4 | 30.3 |
| August | 132.1 | 60.9 | 240.7 | 38.8 | 26.0 | 25.7 | 29.3 | 29.1 |
| September | 118.9 | 23.3 | 40.8 | 41.8 | 21.0 | 21.1 | 28.4 | 24.9 |
| Total/Mean | 583.3 | 423.2 | 957.5 | 813.0 | 22.3 | 23.1 | 26.1 | 25.5 |
Fig. 1The HPLC chromatogram of the standard samples of 12 isoflavone components. 1 daidzin, 2 glycitin, 3 genistin, 4 malonyldaidzin, 5 malonylglycitin, 6 acetyldaidzin, 7 acetylglycitin, 8 malonylgenistin, 9 daidzein, 10 glycitein, 11 acetylgenistin, 12 genistein
Analysis of variance for the isoflavone concentrations of soybean cultivars grown at Beijing and Hubei of China in 2009 and 2010
| Variance sources | Isoflavone components | |||||||
|---|---|---|---|---|---|---|---|---|
|
| Daidzin | Glycitin | Genistin | Malonyldaidzin | Malonylglycitin | Malonylgenistin | Total content | |
| Maturity group | 6 | *** | *** | ** | ** | *** | * | ** |
| Year | 1 | *** | *** | *** | * | * | ** | *** |
| Site | 1 | NS | *** | ** | *** | * | *** | *** |
| Site × Year | 1 | *** | NS | ** | ** | NS | NS | ** |
| Repeat | 2 | ** | NS | ** | NS | NS | NS | NS |
| Cultivar | 39 | *** | *** | *** | *** | *** | *** | *** |
| Cultivar × Site | 39 | *** | *** | *** | *** | *** | *** | *** |
| Cultivar × Year | 39 | NS | ** | * | *** | ** | ** | *** |
| Cultivar × Site × Year | 39 | ** | *** | * | *** | *** | * | *** |
*, ** and *** represent the significance levels at P ≤ 0.05, 0.01, and 0.001, respectively; NS not significant
Correlation analysis between years or sites on the isoflavone components in soybean seeds
| Environmental factor | Daidzin | Glycitin | Genistin | Malonylglycitin | Malonylgenistin | Malonylglycitin | Total content |
|---|---|---|---|---|---|---|---|
| Year† | 0.743** | 0.153 | 0.604** | 0.744** | 0.549** | 0.597** | 0.704** |
| Site§ | 0.533** | 0.242 | 0.522** | 0.499** | 0.563** | 0.508** | 0.460** |
** represents the significant level at P ≤ 0.01
† Correlation coefficient between two years on mean isoflavone contents were measured based on the two-site data
§Correlation coefficient between two sites on mean isoflavone contents were measured based on the two-year data
Genetic variation analysis of the isoflavone components in soybean seeds†
| Isoflavone component | Range | Minimum (μg g−1) | Maximum (μg g−1) | Mean (μg g−1) | Std. Deviation | CV% |
|---|---|---|---|---|---|---|
| Daidzin | 1218.15 | 31.09 | 1249.24 | 251.64 | 175.17 | 69.61 |
| Glycitin | 491.62 | 0.00 | 491.62 | 108.25 | 66.32 | 61.27 |
| Genistin | 1452.69 | 40.37 | 1493.05 | 465.78 | 272.11 | 58.42 |
| Malonyldaidzin | 2322.01 | 32.64 | 2354.65 | 707.00 | 407.77 | 57.68 |
| Malonylglycitin | 676.08 | 0.00 | 676.08 | 135.17 | 69.96 | 51.76 |
| Malonylgenistin | 3473.66 | 189.48 | 3663.14 | 1265.78 | 576.83 | 45.57 |
| Total content | 7032.92 | 551.15 | 7584.07 | 2972.64 | 1337.84 | 45.01 |
CV coefficient of variation
† The isoflavone values for individual components and total contents were measured based on the two-site and two -year collected data
Comparison of isoflavone composition in various years and sites in soybean seeds
| Isoflavone component | Year† | Mean (μg g−1) | Std. Deviation | Site§ | Mean (μg g−1) | Std. Deviation |
|---|---|---|---|---|---|---|
| Daidzin | 2009 | 112.42 | 55.92 | Beijing | 352.07 | 169.49 |
| 2010 | 352.07 | 169.49 | Wuhan | 276.52 | 171.91 | |
| Glycitin | 2009 | 63.54 | 37.54 | Beijing | 100.30 | 49.35 |
| 2010 | 100.30 | 49.35 | Wuhan | 144.89 | 75.06 | |
| Genistin | 2009 | 200.56 | 90.39 | Beijing | 638.50 | 213.68 |
| 2010 | 638.50 | 213.68 | Wuhan | 533.97 | 253.48 | |
| Malonyldaidzin | 2009 | 638.70 | 258.60 | Beijing | 1058.29 | 379.24 |
| 2010 | 1058.29 | 379.24 | Wuhan | 417.74 | 262.04 | |
| Malonylglycitin | 2009 | 122.90 | 73.58 | Beijing | 158.28 | 65.50 |
| 2010 | 158.28 | 65.50 | Wuhan | 123.19 | 65.49 | |
| Malonylgenistin | 2009 | 1108.12 | 384.39 | Beijing | 1767.84 | 487.24 |
| 2010 | 1767.84 | 487.24 | Wuhan | 906.93 | 441.30 | |
| Total content | 2009 | 2228.84 | 710.98 | Beijing | 4186.43 | 1123.95 |
| 2010 | 4186.43 | 1123.95 | Wuhan | 2434.47 | 1107.97 |
†Mean isoflavone contents in various years were measured based on the two-site data
§ Mean isoflavone contents in various sites were measured based on the two-year data
Comparison of isoflavone composition among maturity groups§ in soybean seeds†
| Maturity group | Daidzin | Glycitin | Genistin | Malonyldaidzin | Malonylglycitin | Malonylgenistin | Total content |
|---|---|---|---|---|---|---|---|
| 0 | 182.13a | 67.42a | 351.61a | 501.19a | 87.60a | 1018.98a | 2225.21a |
| I | 247.39a | 89.37ab | 373.89a | 613.82a | 108.79a | 977.86a | 2473.48a |
| II | 231.91a | 107.27b | 433.28a | 598.16a | 114.88b | 1112.75a | 2620.57a |
| III | 246.27a | 111.87b | 445.29a | 697.53a | 131.12b | 1204.71a | 2878.25a |
| IV | 203.23a | 110.59b | 410.31a | 597.37a | 137.04b | 1125.61a | 2616.37a |
| V | 338.94b | 104.17ab | 557.32b | 830.01b | 132.89b | 1349.20b | 3351.17b |
| VI | 337.87b | 158.14c | 581.47b | 818.16b | 180.78c | 1445.87b | 3569.41b |
§ Isoflavone contents are expressed in μg g−1
† Mean values within a column, in each maturity group followed by the same letter are not significantly different at the 0.05% level as determined by Fishers LSD test. Mean isoflavone contents for each maturity group were measured based on the two-site and two-year data
Correlation analysis among the isoflavone components in soybean seeds†
| Isoflavone composition | Daidzin | Glycitin | Genistin | Malonyldaidzin | Malonylglycitin | Malonylgenistin |
|---|---|---|---|---|---|---|
| Glycitin | 0.479** | |||||
| Genistin | 0.912** | 0.520** | ||||
| Malonyldaidzin | 0.726** | 0.293** | 0.702** | |||
| Malonylglycitin | 0.159* | 0.461** | 0.238** | 0.338** | ||
| Malonylgenistin | 0.567** | 0.268** | 0.737** | 0.791** | 0.376** | |
| Total content | 0.812** | 0.447** | 0.892** | 0.907** | 0.406** | 0.925** |
* and ** represent significance levels at P ≤ 0.05 and 0.01, respectively
† Correlation coefficient between mean isoflavone contents were measured based on the two-site and two-year data
Correlations between isoflavone contents and seed yield related traits, quality traits†
| Trait | Daidzin | Glycitin | Genistin | Malonyldaidzin | Malonylglycitin | Malonylgenistin | Total content |
|---|---|---|---|---|---|---|---|
| Palmitic acid | −0.027 | 0.346** | −0.058 | 0.040 | 0.282** | −0.014 | 0.024 |
| Stearic acid | −0.055 | −0.310** | 0.013 | −0.078 | −0.246* | 0.000 | −0.053 |
| Oleic acid | −0.366** | −0.301** | −0.376** | −0.403** | −0.403** | −0.398** | −0.427** |
| Linoleic acid | 0.448** | 0.150 | 0.481** | 0.485** | 0.278** | 0.470** | 0.493** |
| Linolenic acid | 0.269** | 0.259* | 0.261* | 0.279** | 0.331** | 0.281** | 0.306** |
| Oil content | −0.317** | −0.260* | −0.264** | −0.392** | −0.348** | −0.288** | −0.344** |
| Protein content | 0.122 | 0.187 | 0.039 | 0.137 | 0.243* | 0.054 | 0.100 |
| Plant height | 0.357** | 0.351** | 0.425** | 0.475** | 0.384** | 0.463** | 0.488** |
| Bottom pod height | 0.147 | −0.172 | 0.131 | 0.177 | 0.001 | 0.136 | 0.145 |
| Node number | 0.155 | 0.044 | 0.158 | 0.161 | 0.044 | 0.111 | 0.141 |
| Effective branch | 0.318** | 0.139 | 0.322** | 0.435** | 0.225* | 0.372** | 0.398** |
| Pods per plant | 0.327** | 0.276** | 0.362** | 0.340** | 0.246* | 0.335** | 0.364** |
| Seeds per plant | 0.246* | 0.283** | 0.299** | 0.265** | 0.223* | 0.288** | 0.302** |
| 100-seed weight | −0.021 | −0.042 | 0.017 | −0.017 | −0.027 | 0.038 | 0.012 |
* and ** represent the significant levels at P ≤ 0.05 and 0.01, respectively
† Correlation coefficient between mean isoflavone contents and agronomic or quality traits were measured based on the two-site and two-year data