Research Area Gene Technology and Applied Biochemistry, Institute of Chemical Engineering, Vienna University of Technology, 1060 Vienna, Austria.
Fungal Genet Biol. 2012 Oct;49(10):814-24. doi: 10.1016/j.fgb.2012.07.004. Epub 2012 Aug 3.
Discovery of sexual development in the ascomycete Trichoderma reesei (Hypocrea jecorina) as well as detection of a novel class of peptide pheromone precursors in this fungus indicates promising insights into its physiology and lifestyle. Here we investigated the role of the two pheromone receptors HPR1 and HPR2 in the H. jecorina pheromone-system. We found that these pheromone receptors show an unexpectedly high genetic variability among H. jecorina strains. HPR1 and HPR2 confer female fertility in their cognate mating types (MAT1-1 or MAT1-2, respectively) and mediate induction of fruiting body development. One compatible pheromone precursor-pheromone receptor pair (hpr1-hpp1 or hpr2-ppg1) in mating partners was sufficient for sexual development. Additionally, pheromone receptors were essential for ascospore development, hence indicating their involvement in post-fertilisation events. Neither pheromone precursor genes nor pheromone receptor genes of H. jecorina were transcribed in a strictly mating type dependent manner, but showed enhanced expression levels in the cognate mating type. In the presence of a mating partner under conditions favoring sexual development, transcript levels of pheromone precursors were significantly increased, while those of pheromone receptor genes do not show this trend. In the female sterile T. reesei strain QM6a, transcriptional responses of pheromone precursor and pheromone receptor genes to a mating partner were clearly altered compared to the female fertile wild-type strain CBS999.97. Consequently, a delayed and inappropriate response to the mating partner may be one aspect causing female sterility in QM6a.
在曲霉属的里氏木霉(Hypocrea jecorina)中发现性发育,以及在该真菌中检测到一种新型肽信息素前体,这表明有望深入了解其生理和生活方式。在这里,我们研究了两个信息素受体 HPR1 和 HPR2 在 H. jecorina 信息素系统中的作用。我们发现这些信息素受体在 H. jecorina 菌株中表现出异常高的遗传变异性。HPR1 和 HPR2 在其同源交配型(分别为 MAT1-1 或 MAT1-2)中赋予雌性生育能力,并介导诱导产孢体发育。在交配伴侣中,一对相容的信息素前体-信息素受体对(hpr1-hpp1 或 hpr2-ppg1)足以进行性发育。此外,信息素受体对于子囊孢子发育也是必需的,这表明它们参与了受精后的事件。在严格依赖交配型的方式中,H. jecorina 的信息素前体基因和信息素受体基因都不转录,但在同源交配型中表现出增强的表达水平。在有利于性发育的条件下存在交配伴侣时,信息素前体的转录水平显著增加,而信息素受体基因则没有表现出这种趋势。在雌性不育的里氏木霉 QM6a 菌株中,与雌性可育的野生型 CBS999.97 菌株相比,信息素前体和信息素受体基因对交配伴侣的转录反应明显改变。因此,对交配伴侣的反应延迟和不适当可能是 QM6a 雌性不育的一个原因。