Intra-species variability in Fusarium langsethiae strains in growth and T-2/HT-2 mycotoxin production in response to climate change abiotic factors

IF 1.7 4区 医学 Q3 FOOD SCIENCE & TECHNOLOGY World Mycotoxin Journal Pub Date : 2021-06-30 DOI:10.3920/wmj2020.2584
C. Verheecke-vaessen, A. Lopez-Pietro, E. García-Cela, Á. Medina, N. Magan
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引用次数: 1

Abstract

The objective of this study was to evaluate the potential intra-species variability of 3 Fusarium langsethiae strains in response to extreme climate change (CC) conditions on an oat-based matrix. The impact of elevated temperature (25 vs 30-34 °C) coupled with increasing drought stress (0.98 vs 0.95 aw) and elevated CO2 (400 vs 1000 ppm) were examined on lag phases prior to growth, growth rate, and production of the mycotoxins T-2 and HT-2 and their ratio. In comparison to the control conditions (25 °C; 0.98; 400 ppm), exposure to increased temperature (30-34 °C), showed similar reductions in the lag phase and fungal growth rates of all 3 strains. However, with elevated CO2 a reduction in both lag phases prior to growth and growth rate occurred regardless of the aw examined. For T-2 and HT-2 mycotoxin production, T-2 showed the most intra-species variability in response to the interacting abiotic stress factors, with the 3 strains having different environmental conditions for triggering increases in T-2 production: Strain 1 produced higher T-2 toxin at 25 °C, while Strain 2 and the type strain (Fl201059) produced most at 0.98 aw/30 °C. Only Strain 2 showed a reduction in toxin production when exposed to elevated CO2. HT-2 production was higher at 25 °C for the type strain and higher at 30-34 °C for the other two strains, regardless of the aw or CO2 level examined. The HT-2/T-2 ratio showed no significant differences due to the imposed interacting CC abiotic conditions.
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langsethiae镰刀菌生长和T-2/HT-2真菌毒素产生的种内变异性对气候变化非生物因素的响应
本研究的目的是评估3个郎氏镰刀菌菌株在燕麦基质上对极端气候变化(CC)条件的潜在种内变异性。研究了温度升高(25 vs.30-34°C)、干旱胁迫增加(0.98 vs.0.95 aw)和二氧化碳升高(400 vs.1000 ppm)对真菌毒素T-2和HT-2生长、生长速率和产生及其比例之前的滞后期的影响。与对照条件(25°C;0.98;400ppm)相比,暴露于升高的温度(30-34°C)下,所有3株菌株的滞后期和真菌生长率都有类似的降低。然而,随着CO2浓度的升高,无论检查的aw如何,生长前的滞后阶段和生长速率都会降低。对于T-2和HT-2真菌毒素的产生,T-2在相互作用的非生物胁迫因素的反应中表现出最大的种内变异性,3个菌株具有不同的环境条件来触发T-2产量的增加:菌株1在25°C时产生更高的T-2毒素,而菌株2和型菌株(Fl201059)在0.98 aw/30°C时产量最高。只有菌株2在暴露于升高的CO2时显示出毒素产生的减少。无论检测的aw或CO2水平如何,该类型菌株在25°C时的HT-2产量更高,而其他两种菌株在30-34°C时更高。HT-2/T-2比率由于所施加的相互作用CC非生物条件而没有显示出显著差异。
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来源期刊
CiteScore
4.60
自引率
5.00%
发文量
25
审稿时长
>12 weeks
期刊介绍: ''World Mycotoxin Journal'' is a peer-reviewed scientific journal with only one specific area of focus: the promotion of the science of mycotoxins. The journal contains original research papers and critical reviews in all areas dealing with mycotoxins, together with opinions, a calendar of forthcoming mycotoxin-related events and book reviews. The journal takes a multidisciplinary approach, and it focuses on a broad spectrum of issues, including toxicology, risk assessment, worldwide occurrence, modelling and prediction of toxin formation, genomics, molecular biology for control of mycotoxigenic fungi, pre-and post-harvest prevention and control, sampling, analytical methodology and quality assurance, food technology, economics and regulatory issues. ''World Mycotoxin Journal'' is intended to serve the needs of researchers and professionals from the scientific community and industry, as well as of policy makers and regulators.
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