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裂殖酵母减数分裂和孢子形成的转录程序。

The transcriptional program of meiosis and sporulation in fission yeast.

作者信息

Mata Juan, Lyne Rachel, Burns Gavin, Bähler Jürg

机构信息

The Wellcome Trust Sanger Institute, Cambridge CB10 1SA, UK.

出版信息

Nat Genet. 2002 Sep;32(1):143-7. doi: 10.1038/ng951. Epub 2002 Aug 5.

Abstract

Sexual reproduction requires meiosis to produce haploid gametes, which in turn can fuse to regenerate a diploid organism. We have studied the transcriptional program that drives this developmental process in Schizosaccharomyces pombe using DNA microarrays. Here we show that hundreds of genes are regulated in successive waves of transcription that correlate with major biological events of meiosis and sporulation. Each wave is associated with specific promoter motifs. Clusters of neighboring genes (mostly close to telomeres) are co-expressed early in the process, which reflects a more global control of these genes. We find that two Atf-like transcription factors are essential for the expression of late genes and formation of spores, and identify dozens of potential Atf target genes. Comparison with the meiotic program of the distantly related Saccharomyces cerevisiae reveals an unexpectedly small shared meiotic transcriptome, suggesting that the transcriptional regulation of meiosis evolved independently in both species.

摘要

有性生殖需要减数分裂来产生单倍体配子,这些配子进而可以融合以再生出二倍体生物。我们利用DNA微阵列研究了驱动粟酒裂殖酵母中这一发育过程的转录程序。在此我们表明,数百个基因在与减数分裂和孢子形成的主要生物学事件相关的连续转录波中受到调控。每一波都与特定的启动子基序相关联。相邻基因簇(大多靠近端粒)在此过程早期共同表达,这反映了对这些基因的更全局的控制。我们发现两个Atf样转录因子对于晚期基因的表达和孢子的形成至关重要,并鉴定出数十个潜在的Atf靶基因。与远缘相关的酿酒酵母的减数分裂程序进行比较,发现意外地只有很小一部分共享的减数分裂转录组,这表明减数分裂的转录调控在这两个物种中是独立进化的。

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