| Literature DB >> 31698757 |
Kristina Habschied1, Rudolf Krska2,3, Michael Sulyok2, Bojan Šarkanj4, Vinko Krstanović1, Alojzije Lalić5, Gordana Šimić5, Krešimir Mastanjević1.
Abstract
Climatic changes influence considerably the distribution and occurrence of different secondary metabolites in cereals. The aim of this investigation was to assess the changes in metabolite prevalence observed in six different winter barley varieties over a statistically significant period of three years by linking agro-climatic conditions with metabolite concentrations in chosen samples. The results showed that temperatures and precipitation levels varied during the observed timeframe and that the multi-toxin concentrations followed the trend of changing climatic conditions depending on the variety. All quantified (fungal) metabolites showed significant variations throughout the years and, for some (tryptophol and the cyclic dipeptides cyclo(L-Pro-L-Tyr) and cyclo(L-Pro-L-Val)), an unexpected, but clear connection can be made with temperature changes and precipitation levels during the growing season.Entities:
Keywords: barley crop; climate changes; metabolites
Year: 2019 PMID: 31698757 PMCID: PMC6921044 DOI: 10.3390/microorganisms7110532
Source DB: PubMed Journal: Microorganisms ISSN: 2076-2607
Precipitation and mean temperature during the growing season of winter barley (October–June).
| Mean Precipitation (mm) | Total Precipitation (mm) | Mean Temperature (°C) | |
|---|---|---|---|
| 2015–2016 | 66.11 | 594.99 | 8.3 |
| 2016–2017 | 46.20 | 415.83 | 9.1 |
| 2017–2018 | 60.43 | 543.90 | 10.2 |
Statistical analysis of the temperature and precipitation in May and June for each year.
| 2016 | 2017 | 2018 | |
|---|---|---|---|
|
| |||
|
| 16.35c | 17.35b | 20.05a |
|
| 21.15b | 22.25a | 20.09b |
|
| |||
|
| 63.0a | 50.5b | 27.3c |
|
| 99.3b | 45.3c | 126.6a |
Values in the same row with different letters a–c are significantly different (p < 0.05).
Concentrations of other positively identified mycotoxins and fungal metabolites in barley samples.
| Toxin (µg kg−1) | Barun (Dual) | Bingo (Feed) | Bravo (Feed) | ||||||
|---|---|---|---|---|---|---|---|---|---|
| 2016 | 2017 | 2018 | 2016 | 2017 | 2018 | 2016 | 2017 | 2018 | |
| 15-Acetyldeoxynivalenol | <LOD | 25.37a | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD |
| 15-Hydroxyculmorin | 2.57b | 1.40c | 9.19a | 1.64a | 1.38c | 1.59b | 10.5a | 3.31b | 1.24c |
| 15-Hydroxyculmoron | 27.4a | <LOD | <LOD | 1.51c | 57.7a | 12.4b | <LOD | <LOD | <LOD |
| 3-Acetyldeoxynivalenol | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD |
| 5-Hydroxyculmorin | 42.1a | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD |
| Alternariol | 0.59b | 0.86a | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | 0.71a |
| Alternariolmethylether | 0.47a | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD |
| Alternariolmethylether-glucoside | 24.8b | 24.3c | 28.8a | 14.2b | 21.9a | <LOD | 10.8b | 7.90c | 25.3a |
| Brevianamid | 10.6a | 4.35c | 8.41b | 9.86a | 5.41b | <LOD | 12.5a | 9.28b | 5.46c |
| Citreorosein | 9.21a | 8.38b | 0.83c | 5.52a | 0.83b | <LOD | 2.28a | <LOD | 1.99b |
| Culmorin | 6.72b | 1.20c | 17.60a | 11.8a | 7.52b | 2.94c | 10.4a | 4.67b | 3.08c |
| Cyclo(L-Pro-L-Tyr) | 21.1a | 5.21c | 12.5b | 15.1a | 9.29b | <LOD | 25.4a | 11.5b | 5.61c |
| Cyclo(L-Pro-L-Val) | 18.8a | 3.40c | 15.1b | 20.1a | 10.4b | <LOD | 21.6a | 14.9b | 4.40c |
| Deoxynivalenol | 55.5c | 80.0a | 57.9b | 34.6a | 24.9b | 0.75c | 63.5b | 39.4c | 86.0a |
| DON-3-glucoside | <LOD | <LOD | 2.90a | <LOD | <LOD | <LOD | <LOD | 1.73a | <LOD |
| Emodin | 7.73a | 4.37b | 0.46c | 4.87a | 0.27b | <LOD | 1.32a | <LOD | 0.97b |
| Enniatin A | 0.12a | <LOD | <LOD | <LOD | <LOD | <LOD | 0.28a | <LOD | <LOD |
| Enniatin A1 | 1.46a | 0.49b | <LOD | 3.70a | <LOD | <LOD | 1.35a | 0.15b | <LOD |
| Enniatin B | 9.54a | 2.50b | <LOD | 1.15a | <LOD | <LOD | 0.43b | 0.79a | 0.11c |
| Enniatin B1 | 7.91a | 3.72b | <LOD | 4.70a | <LOD | <LOD | 1.57a | 0.86b | <LOD |
| Enniatin B2 | 0.33a | 0.16b | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD |
| Fumonisin B1 | <LOD | 7.86a | 7.10b | 7.32a | 6.01b | <LOD | 10.9a | 9.91b | 6.74c |
| HT-2 toxin | <LOD | <LOD | <LOD | 12.3a | <LOD | <LOD | <LOD | <LOD | <LOD |
| Lotaustralin | 8.90b | 9.08a | 7.71c | 8.46a | 7.24b | 6.41c | 8.40b | 8.13c | 9.31a |
| Moniliformin | <LOD | <LOD | <LOD | 0.38b | 2.16a | <LOD | 2.13b | 2.48a | 1.88c |
| Monocerin | 2.79a | <LOD | <LOD | 0.63a | <LOD | <LOD | 0.31a | 0.12b | <LOD |
| Rugulusovin | 2.30a | 0.99b | 0.94c | 1.05a | 0.54b | <LOD | 1.80a | 0.64c | 1.19b |
| T-2 toxin | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | 0.80b | 1.48 |
| Tentoxin | 0.17a | 0.11b | 0.08c | 0.30a | 0.24b | <LOD | 0.47a | 0.28b | <LOD |
| Tryptophol | 69.1a | 31.3c | 33.4b | 37.6b | 38.0a | 2.51c | 84.0a | 45.4b | 29.3c |
Values are means of triplicate. Values in the same row (2016–2018 for each variety) with different letters a–c are significantly different (p < 0.05). LOD and LOQ values are shown in Table S1, Supplementary Materials.
Concentrations of other positively identified mycotoxins and fungal metabolites in barley samples.
| Toxin (µg kg−1) | Lukas (Dual) | Maxim (Dual) | Vanessa (Brewing) | ||||||
|---|---|---|---|---|---|---|---|---|---|
| 2016 | 2017 | 2018 | 2016 | 2017 | 2018 | 2016 | 2017 | 2018 | |
| 15-Acetyldeoxynivalenol | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD |
| 15-Hydroxyculmorin | 5.69b | 17.6a | 1.70c | 5.27a | 5.14b | 3.99c | 4.19b | 8.60a | 1.85c |
| 15-Hydroxyculmoron | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | 33.44a | <LOD |
| 3-Acetyldeoxynivalenol | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD |
| 5-Hydroxyculmorin | <LOD | <LOD | <LOD | 59.9a | <LOD | <LOD | <LOD | <LOD | <LOD |
| Alternariol | 1.50b | <LOD | 8.61a | <LOD | <LOD | 8.52a | <LOD | <LOD | 4.74a |
| Alternariolmethylether | <LOD | <LOD | 3.90a | <LOD | <LOD | 2.51a | <LOD | <LOD | 0.75a |
| Alternariolmethylether-glucoside | 11.4c | 12.5b | 24.1a | 16.1b | 23.8a | 15.0c | 12.2b | 22.8a | 7.15c |
| Brevianamid | 9.23a | 5.58b | 4.46c | 23.2a | 17.4b | 6.99c | 9.05a | 7.46b | 3.40c |
| Citreorosein | 2.33b | <LOD | 3.54a | 4.84b | <LOD | 7.39a | 9.76b | 13.3a | 6.60c |
| Culmorin | 18.6b | 36.2a | 0.15c | <LOD | 23.5a | 4.05b | 15.8b | 16.7a | 5.04c |
| Cyclo(L-Pro-L-Tyr) | 23.0a | 8.08b | 3.79c | 26.6a | 17.6b | 5.64c | 24.1a | 14.7b | 4.36c |
| Cyclo(L-Pro-L-Val) | 19.1a | 9.32b | 3.03c | 30.1a | 21.0b | 4.15c | 19.8a | 15.2b | 1.79c |
| Deoxynivalenol | 75.5b | 75.8a | 68.5c | 67.4c | 107.2a | 75.1b | 51.0a | 40.9c | 60.2b |
| DON-3-glucoside | 2.82b | 10.6a | <LOD | 1.64b | 3.35a | <LOD | 1.86b | 3.59a | <LOD |
| Emodin | 1.94a | 0.08 | 1.51b | 5.33a | 0.19 | 5.14b | 9.06a | 4.23c | 5.86b |
| Enniatin A | <LOD | <LOD | <LOD | 0.03a | <LOD | <LOD | <LOD | <LOD | <LOD |
| Enniatin A1 | 0.22a | <LOD | <LOD | 0.16a | <LOD | <LOD | <LOD | <LOD | <LOD |
| Enniatin B | 1.48a | 0.02c | 0.04b | 0.77a | <LOD | 0.08b | 0.08a | <LOD | <LOD |
| Enniatin B1 | 0.87a | 0.11b | <LOD | 0.39a | <LOD | <LOD | 0.06a | <LOD | <LOD |
| Enniatin B2 | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD |
| Fumonisin B1 | 4.95c | 5.45a | 5.22b | 8.15a | 5.92b | 5.56c | 6.64b | 7.34a | 5.43c |
| HT-2 toxin | <LOD | 2.61a | <LOD | <LOD | <LOD | <LOD | <LOD | <LOD | 4.57a |
| Lotaustralin | 10.4a | 8.65c | 8.95b | 10.4b | 11.2a | 9.60c | 9.67a | 8.58c | 9.08b |
| Moniliformin | 1.25b | 1.79a | <LOD | <LOQ | 2.69a | <LOD | 0.17 | 3.14a | 1.28b |
| Monocerin | 3.77a | <LOD | <LOD | 1.33a | 0.20b | <LOD | <LOD | <LOD | <LOD |
| Rugulusovin | 2.36a | 0.70 | 0.91b | 2.63a | 1.94b | 1.50c | 1.48a | 0.60c | 0.77b |
| T-2 toxin | 1.26b | 1.65a | <LOD | <LOD | 0.44b | 0.50a | 1.79b | 0.05c | 13.1a |
| Tentoxin | 0.31b | <LOD | 0.33a | <LOD | <LOD | 0.21a | <LOD | 0.42a | <LOD |
| Tryptophol | 61.6a | 37.1c | 38.3b | 64.3a | 41.6b | 39.0c | 53.6a | 40.7c | 41.2b |
Values are means of triplicate. Values in the same row (2016–2018 for each variety) with different letters a–c are significantly different (p < 0.05). LOD and LOQ values are shown in Table S1, Supplementary Materials.