Graduate School of Natural Science and Technology, Okayama University, Okayama 700-8530, Okayama, Japan.
Fungal Genet Biol. 2011 Oct;48(10):939-46. doi: 10.1016/j.fgb.2011.06.003. Epub 2011 Jun 13.
Coprinopsis cinerea is a model for studies of sexual development in agaricomycetes (homobasidiomycetes). Efficient gene targeting should facilitate such studies, especially because increasing genome and transcriptome information is now available in C. cinerea. To estimate the frequency of gene disruption by homologous integration in this fungus, we tried to disrupt Cc.wc-2, which encodes a WC-2 homolog, a partner of the fungal blue-light photoreceptor, WC-1. Disruption of Cc.wc-2 did not occur when recipients (protoplasts) of the disrupting construct were prepared from asexual spores, oidia, from the wild type, 326, while it occurred when protoplasts were prepared from mycelial cells from the same strain, albeit at a low frequency (3%). Double-stranded RNA-mediated silencing of a ku70 homolog, named Cc.ku70, or the lig4 homolog Cc.lig4 more or less increased the frequency of Cc.wc-2 targeting. On the basis of these results, we disrupted Cc.ku70 using a Cc.lig4-silenced strain. We then disrupted Cc.lig4 using the Cc.ku70 disruptant. We found that the disruption of Cc.ku70 or Cc.lig4 greatly enhanced gene targeting. In addition, this study demonstrates that Cc.wc-2 is involved in blue light perception in this fungus.
灰花纹鹅膏是研究伞菌目(同担子菌)有性发育的模式生物。高效的基因靶向应该有助于此类研究,尤其是因为现在在灰花纹鹅膏中有更多的基因组和转录组信息。为了估计同源整合在这种真菌中基因中断的频率,我们试图破坏 Cc.wc-2,它编码一个 WC-2 同源物,是真菌蓝光光感受器 WC-1 的伴侣。当破坏结构的受体(原生质体)由无性孢子、卵孢子从野生型 326 中制备时,Cc.wc-2 的破坏没有发生,而当原生质体由同一菌株的菌丝细胞制备时,它确实发生了,尽管频率较低(3%)。Ku70 同源物 Cc.ku70 或 lig4 同源物 Cc.lig4 的双链 RNA 介导沉默或多或少地增加了 Cc.wc-2 靶向的频率。基于这些结果,我们使用 Cc.lig4 沉默的菌株破坏了 Cc.ku70。然后,我们使用 Cc.ku70 缺陷体破坏了 Cc.lig4。我们发现 Cc.ku70 或 Cc.lig4 的破坏大大增强了基因靶向。此外,这项研究表明 Cc.wc-2 参与了该真菌中的蓝光感知。