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新型无性繁殖期特异性基因沉默在粗糙脉孢菌中的应用。

Novel sexual-cycle-specific gene silencing in Aspergillus nidulans.

机构信息

Department of Biological Sciences, Center for Reproductive Biology, University of Idaho, Moscow, ID 83844-3051, USA.

出版信息

Genetics. 2013 Apr;193(4):1149-62. doi: 10.1534/genetics.112.147546. Epub 2013 Jan 22.

Abstract

We report a novel sexual-cycle-specific gene-silencing system in the genetic model Aspergillus nidulans. Duplication of the mating type matA(HMG) gene in this haploid organism triggers Mat-induced silencing (MatIS) of both endogenous and transgenic matA genes, eliminates function of the encoded SRY structural ortholog, and results in formation of barren fruiting bodies. MatIS is spatiotemporally restricted to the prezygotic stage of the sexual cycle and does not interfere with vegetative growth, asexual reproduction, differentiation of early sexual tissues, or fruiting body development. MatIS is reversible upon deletion of the matA transgene. In contrast to other sex-specific silencing phenomena, MatIS silencing has nearly 100% efficiency and appears to be independent of homologous duplicated DNA segments. Remarkably, transgene-derived matA RNA might be sufficient to induce MatIS. A unique feature of MatIS is that RNA-mediated silencing is RNA interference/Argonaute-independent and is restricted to the nucleus having the duplicated gene. The silencing phenomenon is recessive and does not spread between nuclei within the common cytoplasm of a multinucleate heterokaryon. Gene silencing induced by matA gene duplication emerges as a specific feature associated with matA(HMG) regulation during sexual development.

摘要

我们在遗传模型 Aspergillus nidulans 中报告了一种新的性周期特异性基因沉默系统。在这个单倍体生物中,交配型 matA(HMG)基因的复制触发了 Mat 诱导的沉默(MatIS),包括内源性和转基因 matA 基因,消除了编码的 SRY 结构同源物的功能,并导致不育的生殖体形成。MatIS 在时空上局限于性周期的预配子阶段,不干扰营养生长、无性繁殖、早期性组织的分化或生殖体发育。在 matA 转基因缺失后,MatIS 是可逆的。与其他性别特异性沉默现象不同,MatIS 沉默具有近 100%的效率,并且似乎独立于同源重复的 DNA 片段。值得注意的是,来自转基因的 matA RNA 可能足以诱导 MatIS。MatIS 的一个独特特征是,RNA 介导的沉默与 RNA 干扰/Argonaute 无关,并且仅限于具有重复基因的细胞核。沉默现象是隐性的,不会在多核异核体的共同细胞质内的细胞核之间传播。由 matA 基因复制诱导的基因沉默作为与性发育期间 matA(HMG)调控相关的特定特征出现。

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