Département des Sols, Faculté des Sciences de l'Agriculture et de l'Alimentation, Université Laval, Québec, Québec, Canada G1K 7P4, and Station de recherches, Agriculture Canada, 2560 Boulevard Hochelaga, Sainte-Foy, Québec, Canada G1V 2J3.
Appl Environ Microbiol. 1992 Sep;58(9):2960-4. doi: 10.1128/aem.58.9.2960-2964.1992.
Twenty fungal genera, including 14 Fusarium species, were examined for ice nucleation activity at -5.0 degrees C, and this activity was found only in Fusarium acuminatum and Fusarium avenaceum. This characteristic is unique to these two species. Ice nucleation activity of F. avenaceum was compared with ice nucleation activity of a Pseudomonas sp. strain. Cumulative nucleus spectra are similar for both microorganisms, while the maximum temperatures of ice nucleation were -2.5 degrees C for F. avenaceum and -1.0 degrees C for the bacteria. Ice nucleation activity of F. avenaceum was stable at pH levels from 1 to 13 and tolerated temperature treatments up to 60 degrees C, suggesting that these ice nuclei are more similar to lichen ice nuclei than to bacterial ones. Ice nuclei of F. avenaceum, unlike bacterial ice nuclei, pass through a 0.22-mum-pore-size filter. Fusarial nuclei share some characteristics with the so-called leaf-derived nuclei with which they might be identified: they are cell free and stable up to 60 degrees C, and they are found in the same kinds of environment. Highly stable ice nuclei produced by fast-growing microorganisms have potential applications in biotechnology. This is the first report of ice nucleation activity in free-living fungi.
二十种真菌属,包括 14 种镰刀菌,在-5.0°C 下检测其冰核活性,仅在尖孢镰刀菌和燕麦镰刀菌中发现该活性。该特性是这两个物种所特有的。与假单胞菌菌株的冰核活性进行了比较。两种微生物的累积核谱相似,而燕麦镰刀菌的冰核形成温度最大值为-2.5°C,细菌为-1.0°C。燕麦镰刀菌的冰核活性在 pH 值为 1 到 13 的范围内稳定,并能耐受高达 60°C 的温度处理,表明这些冰核与地衣冰核更相似,而不是与细菌冰核相似。与细菌冰核不同,燕麦镰刀菌的冰核可以通过 0.22 微米孔径的滤器。镰刀菌核与所谓的叶衍生核具有一些共同特征,可能与之有关:它们是无细胞的,在 60°C 下稳定,并且存在于相同的环境中。由快速生长的微生物产生的高度稳定的冰核在生物技术中有潜在的应用。这是首次报道自由生活真菌的冰核活性。