Kim Hye-Ryun, Chae Keon-Sang, Han Kap-Hoon, Han Dong-Min
Division of Life Science, Wonkwang University, Iksan, South Korea.
Genetics. 2009 Jul;182(3):771-83. doi: 10.1534/genetics.109.101667. Epub 2009 May 4.
The formation of the Aspergillus nidulans fruiting body is affected by a number of genetic and environmental factors. Here, the nsdC (never in sexual development) gene-encoding a putative transcription factor carrying a novel type of zinc-finger DNA-binding domain consisting of two C(2)H(2)'s and a C(2)HC motif that are highly conserved in most fungi but not in plants or animals-was investigated. Two distinct transcripts of 2.6 and 3.0 kb were generated from nsdC. The 2.6-kb mRNA accumulated differentially in various stages of growth and development, while the level of the 3.0-kb mRNA remained relatively constant throughout the life cycle. While the deletion of nsdC resulted in the complete loss of fruiting body formation under all conditions favoring sexual development, overexpression of nsdC not only enhanced formation of fruiting bodies (cleistothecia) but also overcame inhibitory effects of certain stresses on cleistothecial development, implying that NsdC is a key positive regulator of sexual development. Deletion of nsdC also retarded vegetative growth and hyperactive asexual sporulation, suggesting that NsdC is necessary not only for sexual development but also for regulating asexual sporulation negatively. Overexpression of veA or nsdD does not rescue the failure of fruiting body formation caused by nsdC deletion. Furthermore, nsdC expression is not affected by either VeA or NsdD, and vice versa, indicating that NsdC regulates sexual development independently of VeA or NsdD.
构巢曲霉子实体的形成受到多种遗传和环境因素的影响。在此,对编码假定转录因子的nsdC(性发育缺失)基因进行了研究,该转录因子带有一种新型锌指DNA结合结构域,由两个C(2)H(2)和一个C(2)HC基序组成,在大多数真菌中高度保守,但在植物或动物中不保守。nsdC产生了两种不同的转录本,大小分别为2.6 kb和3.0 kb。2.6 kb的mRNA在生长和发育的各个阶段差异积累,而3.0 kb的mRNA水平在整个生命周期中保持相对恒定。虽然nsdC的缺失导致在所有有利于有性发育的条件下子实体形成完全丧失,但nsdC的过表达不仅增强了子实体(闭囊壳)的形成,还克服了某些胁迫对闭囊壳发育的抑制作用,这意味着NsdC是有性发育的关键正向调节因子。nsdC的缺失也延缓了营养生长并导致无性孢子形成过度活跃,表明NsdC不仅对有性发育是必需的,而且对负向调节无性孢子形成也是必需的。veA或nsdD的过表达不能挽救由nsdC缺失导致的子实体形成失败。此外,nsdC的表达不受VeA或NsdD的影响,反之亦然,这表明NsdC独立于VeA或NsdD调节有性发育。