| Literature DB >> 31278483 |
Cheng Chen1, Yan Zhang2, Wenhui Pi3, Wenting Yang1, Cunxi Nie1,4, Jing Liang1, Xi Ma1,4, Wen-Ju Zhang5.
Abstract
Gossypol is a toxic polyphenolic product that is derived from cotton plants. The toxicity of gossypol has limited the utilization of cottonseed meal (CSM) in the feed industry. The gene, Helicoverpa armigera CYP9A12, is a gossypol-inducible cytochrome P450 gene. The objective of our study was to obtain the functional recombinant H. armigera CYP9A12 enzyme in Pichia pastoris and to verify whether this candidate enzyme could decrease gossypol in vitro. Free and total gossypol contents were detected in the enzyme solution and in CSM. The H. armigera CYP9A12 enzyme degraded free concentration of gossypol. After optimization of the single-test and response surface method, free gossypol content could be decreased to 40.91 mg/kg in CSM by the H. armigera CYP9A12 enzyme when the initial temperature was 35 °C, the enzymatic hydrolysis time lasted 2.5 h, the enzyme addition was 2.5 mL, and the substrate moisture was 39%.Entities:
Keywords: CYP9A12; Cytochrome P450; Detoxification; Gossypol; Helicoverpa armigera
Year: 2019 PMID: 31278483 PMCID: PMC6611853 DOI: 10.1186/s13568-019-0823-4
Source DB: PubMed Journal: AMB Express ISSN: 2191-0855 Impact factor: 3.298
The level table of single test factor
| Variable | A | B | C | D |
|---|---|---|---|---|
| 1 | 25 | 1 | 0.5 | 35 |
| 2 | 30 | 2 | 1.5 | 40 |
| 3 | 35 | 6 | 2.5 | 45 |
| 4 | 40 | 12 | 3.5 | 50 |
Box–Behnken experimental factors and coding levels
| Code | Variable | The coding level | ||
|---|---|---|---|---|
| − 1 | 0 | 1 | ||
| A | Initial temperature °C | 33 | 35 | 37 |
| B | Enzymolysis time h | 1.5 | 2 | 2.5 |
| C | Enzyme additive amount mL | 2.25 | 2.5 | 2.75 |
| D | Substrate moisture % | 38 | 40 | 42 |
Effect of different treatments on gossypol content in cottonseed meal
| Treatment | Enzyme reaction solution | |||
|---|---|---|---|---|
| Total gossypol (TG) | Detoxification rate (%) | Free gossypol (FG) | Detoxification rate (%) | |
| Control group | 34.25a ± 3.35 | – | 27.53 ± 2.80 | – |
| Endogenous group | 29.16b ± 2.37 | 14.8 | 26.81 ± 1.55 | 2.6 |
| 26.53b ± 1.91 | 22.5 | 20.59 ± 2.54 | 2.5 | |
Fig. 1The single-factor test of the effect on gossypol of cottonseed meal by the H. armigera CYP9A12. The four different factors include initial temperature, enzymatic hydrolysis time, enzyme content, and substrate moisture. In accordance with the abscissa, the ordinate free gossypol content for concentration curve for result analysis. The optimal condition of the effect of H. armigera CYP9A12 enzyme on CSM gossypol degradation was achieved with 2.5 mL of enzyme. The enzymatic hydrolysis lasted 2 h at 35 °C, and the substrate moisture was 40%
Box–Behnken design and gossypol content
| Treatment | Factor | Result | |||
|---|---|---|---|---|---|
| A | B | C | D | Y mg/kg | |
| 1 | 33 | 1.5 | 2.5 | 40 | 65.59 |
| 2 | 37 | 1.5 | 2.5 | 40 | 58.5 |
| 3 | 33 | 2.5 | 2.5 | 40 | 46.07 |
| 4 | 37 | 2.5 | 2.5 | 40 | 45.16 |
| 5 | 35 | 2 | 2.25 | 38 | 63.21 |
| 6 | 35 | 2 | 2.75 | 38 | 47.61 |
| 7 | 35 | 2 | 2.25 | 42 | 67.95 |
| 8 | 35 | 2 | 2.75 | 42 | 58.11 |
| 9 | 33 | 2 | 2.5 | 38 | 61.35 |
| 10 | 37 | 2 | 2.5 | 38 | 50.14 |
| 11 | 33 | 2 | 2.5 | 42 | 48.12 |
| 12 | 37 | 2 | 2.5 | 42 | 48.32 |
| 13 | 35 | 1.5 | 2.25 | 40 | 45.4 |
| 14 | 35 | 2.5 | 2.25 | 40 | 46.88 |
| 15 | 35 | 1.5 | 2.75 | 40 | 51.48 |
| 16 | 35 | 2.5 | 2.75 | 40 | 45.33 |
| 17 | 33 | 2 | 2.25 | 40 | 56.18 |
| 18 | 37 | 2 | 2.25 | 40 | 44.56 |
| 19 | 33 | 2 | 2.75 | 40 | 62.08 |
| 20 | 37 | 2 | 2.75 | 40 | 53.37 |
| 21 | 35 | 1.5 | 2.5 | 38 | 73.18 |
| 22 | 35 | 2.5 | 2.5 | 38 | 42.56 |
| 23 | 35 | 1.5 | 2.5 | 42 | 48.11 |
| 24 | 35 | 2.5 | 2.5 | 42 | 51.48 |
| 25 | 35 | 2 | 2.5 | 40 | 44.11 |
| 26 | 35 | 2 | 2.5 | 40 | 39.22 |
| 27 | 35 | 2 | 2.5 | 40 | 36.94 |
| 28 | 35 | 2 | 2.5 | 40 | 43.87 |
| 29 | 35 | 2 | 2.5 | 40 | 36.54 |
This table is the experimental results of Box–Behnken design and corresponding schemes. The gossypol content is selected as the response value Y. The independent variables A, B, C and D was corresponding to initial temperature, enzymatic hydrolysis time, enzyme content, and substrate moisture are shown in the table
Fig. 2Contour plots and response surface diagram of the effect of reaction time (B) and cottonseed meal moisture (D) was analyzed on gossypol contents. The shape of contours could reflect the intensity of the interaction effect. The ellipse indicates that the interaction between the effect of reaction time (B) and cottonseed meal moisture (D) on gossypol content is significant
Fig. 3Extracted LC–MS ion chromatogram of the gossypol metabolites in negative ion mode and representative mass spectra of respective of chromatograms for quantification of gossypol and metabolites. a The control group without enzyme (blue) the free gossypol spontaneously degraded to compounds G1 (m/z 265) and G2 (m/z 293); b the recombinant of H. armigera CPR and CYP9A12 enzyme (black) was capable to degrade free gossypol by decarboxylation of G1 (m/z 265) and G2 (m/z 293) to compound G0 (m/z 209) and G0′ (m/z 249). The endogenous enzyme was as shown in blue (Chen et al. 2019)