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多个Hox簇基因的转录在早期胚胎中同时发生。

transcription of multiple Hox cluster genes takes place simultaneously in early embryos.

作者信息

Kondo Mariko, Matsuo Megumi, Igarashi Kento, Haramoto Yoshikazu, Yamamoto Takayoshi, Yasuoka Yuuri, Taira Masanori

机构信息

Misaki Marine Biological Station, Graduate School of Science and Center for Marine Biology, The University of Tokyo, Miura, Kanagawa 238-0225, Japan

Department of Biological Sciences, Graduate School of Science, The University of Tokyo, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

Biol Open. 2019 Mar 4;8(3):bio038422. doi: 10.1242/bio.038422.

Abstract

genes are found as clusters in the genome in most bilaterians. The order of genes in the cluster is supposed to be correlated with the site of expression along the anterior-posterior body axis and the timing of expression during development, and these correlations are called spatial and temporal collinearity, respectively. Here we studied the expression dynamics of all genes of the diploid species in four Hox clusters (A-D) by analyzing high-temporal-resolution RNA-seq databases and the results showed that temporal collinearity is not supported, which is consistent with our previous data from allotetraploid Because the temporal collinearity hypothesis implicitly assumes the collinear order of gene activation, not mRNA accumulation, we determined for the first time the timing of when new transcripts of genes are produced, by detecting pre-spliced RNA in whole embryos with reverse transcription and quantitative PCR (RT-qPCR) for all genes as well as several selected , and genes. Our analyses showed that, coinciding with the RNA-seq results, genes started to be transcribed in a non-sequential order, and found that multiple genes start expression almost simultaneously or more posterior genes could be expressed earlier than anterior ones. This tendency was also found in and genes. These results suggest that temporal collinearity of genes is not held during early development of .

摘要

在大多数两侧对称动物中,基因在基因组中以基因簇的形式存在。基因簇中基因的顺序被认为与沿前后体轴的表达位点以及发育过程中的表达时间相关,这些相关性分别被称为空间共线性和时间共线性。在这里,我们通过分析高时间分辨率的RNA-seq数据库,研究了四倍体物种四个Hox簇(A-D)中所有基因的表达动态,结果表明时间共线性不成立,这与我们之前来自异源四倍体的数据一致。由于时间共线性假设隐含地假定了基因激活的共线顺序,而非mRNA积累顺序,我们通过对所有基因以及几个选定的、和基因进行逆转录和定量PCR(RT-qPCR),在全胚胎中检测前体剪接RNA,首次确定了基因新转录本产生的时间。我们的分析表明,与RNA-seq结果一致,基因开始转录的顺序并非连续,并且发现多个基因几乎同时开始表达,或者更靠后的基因可能比靠前的基因更早表达。在和基因中也发现了这种趋势。这些结果表明,在的早期发育过程中,基因的时间共线性并不成立。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec15/6451350/94d91edf2aeb/biolopen-8-038422-g1.jpg

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