Department of Biology, Utah State University, Logan, UT, USA.
FEMS Microbiol Lett. 2011 Feb;315(2):81-6. doi: 10.1111/j.1574-6968.2010.02168.x. Epub 2011 Jan 10.
Light conditions during mycelial growth are known to influence fungi in many ways. The effect of visible-light exposure during mycelial growth was investigated on conidial tolerance to UVB irradiation and wet heat of Metarhizium robertsii, an insect-pathogenic fungus. Two nutrient media and two light regimens were compared. Conidia were produced on (A) potato dextrose agar plus yeast extract medium (PDAY) (A1) under dark conditions or (A2) under continuous visible light (provided by two fluorescent lamps with intensity 5.4 W m(-2)). For comparison, the fungus was also produced on (B) minimal medium (MM) under continuous-dark incubation, which is known to produce conidia with increased tolerance to heat and UVB radiation. The UVB tolerances of conidia produced on PDAY under continuous visible light were twofold higher than conidia produced on PDAY medium under dark conditions, and this elevated UVB tolerance was similar to that of conidia produced on MM in the dark. The heat tolerance of conidia produced under continuous light was, however, similar to that of conidia produced on MM or PDAY in the dark. Conidial yield on PDAY medium was equivalent when the fungus was grown either under continuous-dark or under continuous-light conditions.
光照条件在菌丝体生长过程中会以多种方式影响真菌。本研究调查了可见光在菌丝体生长过程中的暴露对昆虫病原真菌玫烟色棒束孢(Metarhizium robertsii)分生孢子对 UVB 辐射和湿热的耐受性的影响。比较了两种营养培养基和两种光照方案。在(A)马铃薯葡萄糖琼脂加酵母提取物培养基(PDAY)(A1)下黑暗条件或(A2)在连续可见光(由两个荧光灯提供,强度为 5.4 W m(-2))下生产分生孢子。为了进行比较,真菌还在(B)连续黑暗培养的最小培养基(MM)上生产,已知 MM 培养基产生的分生孢子对热和 UVB 辐射的耐受性更高。在连续可见光下 PDAY 上生产的分生孢子的 UVB 耐受性比在黑暗条件下 PDAY 上生产的分生孢子高两倍,这种提高的 UVB 耐受性与黑暗条件下 MM 上生产的分生孢子的耐受性相似。然而,连续光照下产生的分生孢子的耐热性与 MM 或 PDAY 上黑暗条件下产生的分生孢子相似。当真菌在连续黑暗或连续光照条件下生长时,PDAY 培养基上的分生孢子产量相当。