Wyatt T T, van Leeuwen M R, Wösten H A B, Dijksterhuis J
CBS-KNAW Fungal Biodiversity Centre, Uppsalalaan 8, 3584 CT Utrecht, The Netherlands.
Utrecht University, Microbiology, Padualaan 8, 3584 CH Utrecht, The Netherlands.
Fungal Genet Biol. 2014 Mar;64:11-24. doi: 10.1016/j.fgb.2013.12.010. Epub 2014 Jan 9.
The polyol mannitol is one of the main compatible solutes in Neosartorya fischeri and accumulates in conidia and ascospores. Here, it is shown that biosynthesis of mannitol in N. fischeri mainly depends on mannitol 1-phosphate dehydrogenase (MpdA). Reporter studies and qPCR analysis demonstrated that mpdA is moderately expressed in vegetative hyphae and conidiophores, while it is highly expressed during development of ascospores. Deletion of mpdA reduced mannitol in whole cultures as much as 85% of the wild type, while trehalose levels had increased more than 4-fold. Decreased mannitol accumulation had no effect on mycelial growth irrespective of heat- or oxidative stress. Notably, conidia of the ΔmpdA strain had higher mannitol and lower trehalose levels. They were more sensitive to heat stress. The most distinct phenotype of mpdA deletion was the absence of full development of ascospores. Formation of cleistothecia, and asci was not affected. The ascus cell wall, however, did not dissolve and asci contained incompletely formed or aborted ascospores. Addition of the Mpd inhibitor nitrophenide to the wild type strain also resulted in disturbed ascospore formation. Taken together, these results show that mannitol has a role in sexual development of N. fischeri and in stress resistance of conidia.
多元醇甘露醇是费氏新萨托菌中的主要相容性溶质之一,在分生孢子和子囊孢子中积累。在此研究中发现,费氏新萨托菌中甘露醇的生物合成主要依赖于甘露醇-1-磷酸脱氢酶(MpdA)。报告基因研究和定量PCR分析表明,mpdA在营养菌丝和分生孢子梗中适度表达,而在子囊孢子发育过程中高度表达。mpdA的缺失使整个培养物中的甘露醇含量降低至野生型的85%,而海藻糖水平增加了4倍多。无论热应激还是氧化应激,甘露醇积累的减少对菌丝生长均无影响。值得注意的是,ΔmpdA菌株的分生孢子中甘露醇含量较高,海藻糖水平较低。它们对热应激更敏感。mpdA缺失最明显的表型是子囊孢子无法完全发育。闭囊壳和子囊的形成不受影响。然而,子囊细胞壁不溶解,子囊中含有未完全形成或败育的子囊孢子。向野生型菌株中添加Mpd抑制剂硝基苯也会导致子囊孢子形成受阻。综上所述,这些结果表明甘露醇在费氏新萨托菌的有性发育和分生孢子的抗逆性中发挥作用。