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Cold activity of Beauveria and Metarhizium, and thermotolerance of Beauveria

机译:白僵菌和白僵菌的寒冷活动及白僵菌的耐热性

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摘要

Heat and cold are environmental abiotic factors that restrict the use of entomopathogenic fungi as agents for biological control of insects. The thermotolerance and cold activity of 60 entomopathogenic fungal isolates, including five species of Beauveria and one isolate of Engyodontium albus (=Beauveria alba) were examined as to tolerance of temperatures that might be encountered during field use. In addition, cold activity of eight Metarhizium spp. isolates was evaluated. The isolates were from various geographic regions, arthropod hosts or substrates. High variability in conidial thermotolerance was found among the Beauveria spp. isolates after exposure to 45 degrees C for 2 h, as evidenced by low (0-20%), medium (20-60%), or high germination (60-80%). The thermal death point (0% germination) for three rather thermotolerant B. bassiana isolates (CG 138, GHA and ARSEF 252),was 46 degrees C for 6 h. At low temperatures (5 degrees C), with few exceptions (e.g. CG 66, UFPE 479, CG 227, CG 02), most of the B. bassiana isolates germinated well (ca. 100%). On the other hand, only one isolate of Metarhizium sp. was cold-active (i.e. ARSEF 4343 from Macquarie Island, 54.4 degrees S, Australia). This probably is a M. frigidum isolate. The E albus isolate (UFPE 3138) was the most susceptible isolate to both heat and cold stress. Isolates ARSEF 252 and GHA of B. bassiana, on the other hand, presented exceptionally high thermotolerance and cold activity. Some isolates with high cold activity, however, were thermosensitive (e.g. ARSEF 1682) and others with high thermotolerance had low cold activity (e.g. CG 227). An attempt to correlate the latitude of origin with thermotolerance or cold activity indicated that B. bassiana isolates from higher latitudes were more cold-active than isolates from nearer the equator, but there was not a similar correlation for heat
机译:热和冷是环境非生物因素,其限制了昆虫病原真菌作为昆虫生物防治的试剂。检查了60种昆虫病原真菌分离株的耐热性和低温活性,其中包括5种白僵菌和1种白僵菌(= Beauveria alba),以了解其在田间使用过程中可能遇到的温度耐受性。此外,八种属的冷活性。分离株进行了评估。分离株来自不同的地理区域,节肢动物宿主或底物。球孢白僵菌中分生孢子耐热性的高变异性。暴露于45°C 2 h后分离出细菌,表现为低(0-20%),中(20-60%)或高萌发(60-80%)。三个相当耐热的球孢白僵菌菌株(CG 138,GHA和ARSEF 252)的热死点(0%萌发)在46°C下保温6小时。在低温(5摄氏度)下,除少数例外(例如CG 66,UFPE 479,CG 227,CG 02)外,大多数球孢杆菌均能很好地发芽(约100%)。另一方面,只有一个分离的Metrahizium sp。呈冷态(即来自澳大利亚54.4度的麦格理岛的ARSEF 4343)。这可能是霜霉分枝杆菌。大肠杆菌分离株(UFPE 3138)是对热和冷胁迫最敏感的分离株。另一方面,球孢杆菌的ARSEF 252和GHA的分离物表现出极高的耐热性和低温活性。但是,一些具有高抗寒活性的菌株对热敏感(例如ARSEF 1682),而其他具有高耐热性的菌株则具有低抗寒活性(例如CG 227)。尝试将起源纬度与耐热性或寒冷活动相关联,表明来自较高纬度的球孢杆菌分离株比来自赤道的分离株更具冷活性,但对热量的相似性不高。

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