Savelieva Elena I, Gustyleva Liudmila K, Kessenikh Elizaveta D, Khlebnikova Natalya S, Leffingwell John, Gavrilova Olga P, Gagkaeva Tatiana Yu
Research Institute of Hygiene, Occupational Pathology and Human Ecology Federal State Unitary Enterprise, Federal Medical Biological Agency, Build. 93, Kapitolovo Station, Kuz'molovsky g/p, Vsevolozhsky District, Leningrad Region, RU-188663.
Leffingwell & Associates, 4699 Arbor Hill Rd., Canton, GA, 30115, USA.
Chem Biodivers. 2016 Jul;13(7):891-903. doi: 10.1002/cbdv.201500284. Epub 2016 Jul 4.
The compositions of volatile organic compounds (VOCs) emitted by Fusarium fungi (F. langsethiae, F. sibiricum, F. poae, and F. sporotrichioides) grown on two nutritive substrates: potato sucrose agar (PSA) and autoclaved wheat kernels (WK) were investigated. The culturing of fungi and study of their VOC emissions were performed in chromatographic vials at room temperature (23 - 24 °C) and the VOCs were sampled by a solid-phase microextraction on a 85 μm carboxen/polydimethylsiloxane fiber. GC/MS was performed using a 60-m HP-5 capillary column. Components of the VOC mixture were identified by electron impact mass spectra and chromatographic retention indices (RIs). The most abundant components of the VOC mixture emitted by Fusarium fungi are EtOH, AcOH, (i) BuOH, 3-methylbutan-1-ol, 2-methylbutan-1-ol, ethyl 3-methylbutanoate, terpenes with M 136, sesquiterpenes with M 204 (a total of about 25), and trichodiene. It was found that the strains grown on PSA emit a wider spectrum and larger amount of VOCs compared with those grown on wheat kernels. F. langsethiae strain is the most active VOC producer on both substrates. The use of SPME and GC/MS also offers the potential for differentiation of fungal species and strains.
研究了在两种营养基质(马铃薯蔗糖琼脂(PSA)和高压灭菌的小麦粒(WK))上生长的镰刀菌(拟长孢镰刀菌、西伯利亚镰刀菌、早熟禾镰刀菌和拟枝孢镰刀菌)所排放的挥发性有机化合物(VOCs)的组成。在室温(23 - 24°C)下于色谱瓶中进行真菌培养及其VOC排放研究,并使用85μm碳分子筛/聚二甲基硅氧烷纤维通过固相微萃取对VOCs进行采样。使用60米的HP - 5毛细管柱进行气相色谱/质谱分析。通过电子轰击质谱和色谱保留指数(RIs)鉴定VOC混合物的成分。镰刀菌排放的VOC混合物中最丰富的成分是乙醇、乙酸、异丁醇、3 - 甲基丁醇、2 - 甲基丁醇、3 - 甲基丁酸乙酯、分子量为136的萜类、分子量为204的倍半萜类(总共约25种)以及木霉菌素。研究发现,与在小麦粒上生长的菌株相比,在PSA上生长的菌株排放的VOCs光谱更宽、数量更多。拟长孢镰刀菌菌株在两种基质上都是最活跃的VOC产生菌。固相微萃取和气相色谱/质谱联用也为区分真菌物种和菌株提供了可能。