A first complete catalog of highly expressed genes in eight chicken tissues reveals uncharacterized gene families specific for the chicken testis.

IF 2.5 4区 生物学 Q3 CELL BIOLOGY
Physiological genomics Pub Date : 2024-06-01 Epub Date: 2024-03-18 DOI:10.1152/physiolgenomics.00151.2023
Benoît Piégu, Gaëlle Lefort, Cécile Douet, Marine Milhes, Aurore Jacques, Jean-Jacques Lareyre, Philippe Monget, Sophie Fouchécourt
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引用次数: 0

Abstract

Based on next-generation sequencing, we established a repertoire of differentially overexpressed genes (DoEGs) in eight adult chicken tissues: the testis, brain, lung, liver, kidney, muscle, heart, and intestine. With 4,499 DoEGs, the testis had the highest number and proportion of DoEGs compared with the seven somatic tissues. The testis DoEG set included the highest proportion of long noncoding RNAs (lncRNAs; 1,851, representing 32% of the lncRNA genes in the whole genome) and the highest proportion of protein-coding genes (2,648, representing 14.7% of the protein-coding genes in the whole genome). The main significantly enriched Gene Ontology terms related to the protein-coding genes were "reproductive process," "tubulin binding," and "microtubule cytoskeleton." Using real-time quantitative reverse transcription-polymerase chain reaction, we confirmed the overexpression of genes that encode proteins already described in chicken sperm [such as calcium binding tyrosine phosphorylation regulated (CABYR), spermatogenesis associated 18 (SPATA18), and CDK5 regulatory subunit associated protein (CDK5RAP2)] but whose testis origin had not been previously confirmed. Moreover, we demonstrated the overexpression of vertebrate orthologs of testis genes not yet described in the adult chicken testis [such as NIMA related kinase 2 (NEK2), adenylate kinase 7 (AK7), and CCNE2]. Using clustering according to primary sequence homology, we found that 1,737 of the 2,648 (67%) testis protein-coding genes were unique genes. This proportion was significantly higher than the somatic tissues except muscle. We clustered the other 911 testis protein-coding genes into 495 families, from which 47 had all paralogs overexpressed in the testis. Among these 47 testis-specific families, eight contained uncharacterized duplicated paralogs without orthologs in other metazoans except birds: these families are thus specific for chickens/birds.NEW & NOTEWORTHY Comparative next-generation sequencing analysis of eight chicken tissues showed that the testis has highest proportion of long noncoding RNA and protein-coding genes of the whole genome. We identified new genes in the chicken testis, including orthologs of known mammalian testicular genes. We also identified 47 gene families in which all the members were overexpressed, if not exclusive, in the testis. Eight families, organized in duplication clusters, were unknown, without orthologs in metazoans except birds, and are thus specific for chickens/birds.

八种鸡组织中高表达基因的首个完整目录揭示了鸡睾丸特有的未表征基因家族。
基于新一代测序技术,我们在睾丸、脑、肺、肝、肾、肌肉、心脏和肠道这八种成年鸡组织中建立了差异过表达基因(DoEG)谱系。睾丸有 4499 个 DoEG,与七个体组织相比,睾丸的 DoEG 数量和比例最高。睾丸DoEG集包括比例最高的长非编码RNA(lncRNA;1851个,占全基因组lncRNA基因的32%)和比例最高的蛋白编码基因(2648个,占全基因组蛋白编码基因的14.7%)。与蛋白编码基因相关的基因本体(Gene Ontology)术语明显富集的主要是 "生殖过程"、"微管蛋白结合 "和 "微管细胞骨架"。通过使用实时定量反转录聚合酶链反应,我们证实了鸡精子中编码蛋白质的基因(如 CABYR、SPAT18 和 CDK5RAP2)的过表达,但这些基因的睾丸来源此前尚未得到证实。此外,我们还证明了尚未在成年鸡睾丸中描述的睾丸基因的脊椎动物直向同源物(如 NEK2、AK7 和 CCNE2)的过度表达。根据主序列同源性进行聚类,我们发现在2648个睾丸蛋白编码基因中,有67%(1737个)是独特的基因。这一比例明显高于除肌肉外的其他体细胞组织。我们将其他 911 个睾丸蛋白编码基因聚类为 495 个家族,其中 47 个家族的所有旁系亲属在睾丸中过度表达。在这 47 个睾丸特异性家族中,有 8 个家族的成员尚未定性,在除鸟类以外的其他后生动物中没有直向同源物:因此这些家族是鸡类(可能是更广泛的鸟类)的特异性家族。
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来源期刊
Physiological genomics
Physiological genomics 生物-生理学
CiteScore
6.10
自引率
0.00%
发文量
46
审稿时长
4-8 weeks
期刊介绍: The Physiological Genomics publishes original papers, reviews and rapid reports in a wide area of research focused on uncovering the links between genes and physiology at all levels of biological organization. Articles on topics ranging from single genes to the whole genome and their links to the physiology of humans, any model organism, organ, tissue or cell are welcome. Areas of interest include complex polygenic traits preferably of importance to human health and gene-function relationships of disease processes. Specifically, the Journal has dedicated Sections focused on genome-wide association studies (GWAS) to function, cardiovascular, renal, metabolic and neurological systems, exercise physiology, pharmacogenomics, clinical, translational and genomics for precision medicine, comparative and statistical genomics and databases. For further details on research themes covered within these Sections, please refer to the descriptions given under each Section.
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