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鉴定新型牛(Bos taurus)基因及其在胚胎植入前发育中的功能的生物学见解。

Identification of novel cattle (Bos taurus) genes and biological insights of their function in pre-implantation embryo development.

机构信息

School of Animal Sciences, Virginia Polytechnic Institute and State University, Blacksburg, VA, USA.

出版信息

BMC Genomics. 2024 Aug 9;25(1):775. doi: 10.1186/s12864-024-10685-5.

Abstract

BACKGROUND

Appropriate regulation of genes expressed in oocytes and embryos is essential for acquisition of developmental competence in mammals. Here, we hypothesized that several genes expressed in oocytes and pre-implantation embryos remain unknown. Our goal was to reconstruct the transcriptome of oocytes (germinal vesicle and metaphase II) and pre-implantation cattle embryos (blastocysts) using short-read and long-read sequences to identify putative new genes.

RESULTS

We identified 274,342 transcript sequences and 3,033 of those loci do not match a gene present in official annotations and thus are potential new genes. Notably, 63.67% (1,931/3,033) of potential novel genes exhibited coding potential. Also noteworthy, 97.92% of the putative novel genes overlapped annotation with transposable elements. Comparative analysis of transcript abundance identified that 1,840 novel genes (recently added to the annotation) or potential new genes were differentially expressed between developmental stages (FDR < 0.01). We also determined that 522 novel or potential new genes (448 and 34, respectively) were upregulated at eight-cell embryos compared to oocytes (FDR < 0.01). In eight-cell embryos, 102 novel or putative new genes were co-expressed (|r|> 0.85, P < 1 × 10) with several genes annotated with gene ontology biological processes related to pluripotency maintenance and embryo development. CRISPR-Cas9 genome editing confirmed that the disruption of one of the novel genes highly expressed in eight-cell embryos reduced blastocyst development (ENSBTAG00000068261, P = 1.55 × 10).

CONCLUSIONS

Our results revealed several putative new genes that need careful annotation. Many of the putative new genes have dynamic regulation during pre-implantation development and are important components of gene regulatory networks involved in pluripotency and blastocyst formation.

摘要

背景

适当调节卵母细胞和胚胎中表达的基因对于哺乳动物获得发育能力至关重要。在这里,我们假设卵母细胞和植入前胚胎中表达的几个基因仍然未知。我们的目标是使用短读长和长读长序列重建卵母细胞(生发泡和中期 II 期)和植入前牛胚胎(囊胚)的转录组,以鉴定可能的新基因。

结果

我们鉴定出 274,342 个转录序列,其中 3,033 个基因座与官方注释中存在的基因不匹配,因此是潜在的新基因。值得注意的是,63.67%(1,931/3,033)的潜在新基因具有编码潜力。同样值得注意的是,97.92%的假定新基因与转座元件重叠注释。转录丰度的比较分析表明,1,840 个新基因(最近添加到注释中)或潜在的新基因在发育阶段(FDR<0.01)之间存在差异表达。我们还确定,与卵母细胞相比,在 8 细胞胚胎中 522 个新基因或潜在的新基因(分别为 448 个和 34 个)上调(FDR<0.01)。在 8 细胞胚胎中,102 个新基因或假定新基因与几个与多能性维持和胚胎发育相关的基因本体生物学过程注释的基因呈共表达(|r|>0.85,P<1×10)。CRISPR-Cas9 基因组编辑证实,破坏在 8 细胞胚胎中高度表达的一个新基因会降低囊胚发育(ENSBTAG00000068261,P=1.55×10)。

结论

我们的研究结果揭示了一些需要仔细注释的假定新基因。许多假定的新基因在植入前发育过程中具有动态调节,是参与多能性和囊胚形成的基因调控网络的重要组成部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/acaf/11313146/5e8cf55ed59b/12864_2024_10685_Fig1_HTML.jpg

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