发育、幼年和成年日本黑牛31个组织中124个转录组的综合分析。

Taichi Arishima, Hiroyuki Wakaguri, Ryotaro Nakashima, Seigo Sakakihara, Keisuke Kawashima, Yoshikazu Sugimoto, Yutaka Suzuki, Shinji Sasaki
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引用次数: 2

摘要

对经济上重要的动物,包括日本黑牛,目前正在世界范围内进行组学分析。特别是,组织和发育阶段特异性转录组表征对于理解遗传疾病和经济性状表型表达的分子机制至关重要。在这里,我们使用短读测序技术对来自胎儿、幼犊和成年日本黑牛的31个主要组织的124个转录组进行了全面分析。我们发现,高组织特异性表达的基因在受精60天后趋于增加,并显著反映了组织相关生物学。根据发育过程中的基因表达变化和拐点,我们将每个组织中的基因表达模式分为稳定、增加、减少、暂时或复杂。我们还分析了牛遗传疾病的致病基因(如SLC12A1、ANXA10和MYH6)的表达谱,揭示了疾病相关的表达模式。此外,为了直接分析全长转录本的结构而无需转录本重建,我们使用长读测序对22个组织进行了RNA测序分析,鉴定出232种新的非refseq亚型。总的来说,我们的综合转录组学分析可以作为基因表达生物学和功能解释的重要资源,并使日本黑牛遗传疾病和经济性状的机制解释成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Comprehensive analysis of 124 transcriptomes from 31 tissues in developing, juvenile, and adult Japanese Black cattle.

Comprehensive analysis of 124 transcriptomes from 31 tissues in developing, juvenile, and adult Japanese Black cattle.

Comprehensive analysis of 124 transcriptomes from 31 tissues in developing, juvenile, and adult Japanese Black cattle.

Comprehensive analysis of 124 transcriptomes from 31 tissues in developing, juvenile, and adult Japanese Black cattle.

Omic analyses of economically important animals, including Japanese Black cattle, are currently underway worldwide. In particular, tissue and developmental stage-specific transcriptome characterization is essential for understanding the molecular mechanisms underlying the phenotypic expression of genetic disorders and economic traits. Here, we conducted a comprehensive analysis of 124 transcriptomes across 31 major tissues from fetuses, juvenile calves, and adult Japanese Black cattle using short-read sequencing. We found that genes exhibiting high tissue-specific expression tended to increase after 60 days from fertilization and significantly reflected tissue-relevant biology. Based on gene expression variation and inflection points during development, we categorized gene expression patterns as stable, increased, decreased, temporary, or complex in each tissue. We also analysed the expression profiles of causative genes (e.g. SLC12A1, ANXA10, and MYH6) for genetic disorders in cattle, revealing disease-relevant expression patterns. In addition, to directly analyse the structure of full-length transcripts without transcript reconstruction, we performed RNA sequencing analysis of 22 tissues using long-read sequencing and identified 232 novel non-RefSeq isoforms. Collectively, our comprehensive transcriptomic analysis can serve as an important resource for the biological and functional interpretation of gene expression and enable the mechanistic interpretation of genetic disorders and economic traits in Japanese Black cattle.

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