Department of Biology, Stanford University, Stanford, CA 94305, USA.
Science. 2019 Apr 5;364(6435):52-56. doi: 10.1126/science.aav6428.
In multicellular organisms, the entry into meiosis is a complex process characterized by increasing meiotic specialization. Using single-cell RNA sequencing, we reconstructed the developmental program into maize male meiosis. A smooth continuum of expression stages before meiosis was followed by a two-step transcriptome reorganization in leptotene, during which 26.7% of transcripts changed in abundance by twofold or more. Analysis of cell-cycle gene expression indicated that nearly all pregerminal cells proliferate, eliminating a stem-cell model to generate meiotic cells. Mutants defective in somatic differentiation or meiotic commitment expressed transcripts normally present in early meiosis after a delay; thus, the germinal transcriptional program is cell autonomous and can proceed despite meiotic failure.
在多细胞生物中,进入减数分裂是一个复杂的过程,其特征是减数分裂特化程度增加。使用单细胞 RNA 测序,我们重建了玉米雄性减数分裂的发育程序。在减数分裂之前,有一个连续的表达阶段,随后在细线期发生了两步转录组重排,在此期间,有 26.7%的转录物丰度增加了两倍或更多。对细胞周期基因表达的分析表明,几乎所有的前生殖细胞都在增殖,从而消除了产生减数分裂细胞的干细胞模型。体细胞分化或减数分裂启动缺陷的突变体在延迟后表达通常在早期减数分裂中出现的转录本;因此,生殖细胞的转录程序是细胞自主的,尽管减数分裂失败,但仍能进行。