全外显子组测序发现与猪单侧隐睾相关的新候选基因。

IF 2.4 4区 医学 Q2 DEVELOPMENTAL BIOLOGY
Arthur Nery da Silva, Adriana Mércia Guaratini Ibelli, Igor Ricardo Savoldi, Maurício Egídio Cantão, Eraldo Lourenso Zanella, Mariana Groke Marques, Marcos Vinicius Gualberto Barbosa da Silva, Jane Oliveira de Peixoto, Mônica Corrêa Ledur, Jader Silva Lopes, José Eduardo Vargas, Ricardo Zanella
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引用次数: 1

摘要

隐睾症是一种遗传性异常,其特征是一个或两个睾丸不完全下降到阴囊。这种异常的挑战之一是保留的睾丸维持其内分泌功能。因此,与阉割的动物相比,隐睾动物生产的肉受到激素污染,可能更具攻击性。隐睾症可导致动物福利下降并造成经济损失。鉴定隐睾的遗传标记是减轻这些负面结果的重要步骤,并可能促进基因组操作以减少隐睾的发生。试图识别这些标记已经使用了全基因组关联研究。利用全外显子组测序,我们旨在鉴定隐伏猪编码区域的单核苷酸多态性(SNPs),并表征这些snp的功能途径。方法:采用Illumina HiSeq 2500平台,提取5只健康动物和5只长白猪的DNA并进行测序。使用SeqyClean工具对数据进行预处理,并使用BWA软件进一步定位猪参考基因组(Sus scrofa 11.1)。使用GATK识别多态性(snp和InDels),并使用VEP工具对其进行注释。使用Cytoscape平台进行网络预测和基因本体富集分析,使用STRING软件进行可视化。结果:在PIGB、CCPG1、COMMD9、LDLRAD3、TRIM44、MYLPF、SEPTIN、ZNF48、TIA1、FAIM2、KRT18、FBP1、FBP2、CTSL、DAPK1、DHX8、GPR179、DEPDC1B、ENSSSCG00000049573、ENSSSCG00000016384、ENSSSCG00000022657、ENSSSCG00000038825和ENSSSCG00000001229基因中共鉴定出63个snp。通过通路富集分析和网络预测,我们确定了以下显著调整后的p值阈值为0.001,涉及雌激素信号传导、细胞骨架组织和戊糖磷酸途径的生物学功能途径。结论:我们的数据表明新的snp和基因参与了猪隐睾症的发生。然而,需要进一步的研究在更大的队列人群中验证我们的结果。在蛋白质水平上,GPR179基因的变异可能与猪的这种异常的出现有关。最后,我们表明雌激素信号通路可能参与了这种先天性异常的病理生理机制,正如之前在GWAS中报道的那样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Whole-Exome Sequencing Indicated New Candidate Genes Associated with Unilateral Cryptorchidism in Pigs.

Introduction: Cryptorchidism is a hereditary anomaly characterized by the incomplete descent of one or both testicles to the scrotum. One of the challenges of this anomaly is that the retained testicle maintains its endocrine function. As a consequence, cryptorchid animals produce hormone-tainted meat in comparison to castrated animals and are likely to be more aggressive. Cryptorchidism can lead to reduced animal welfare outcomes and cause economic losses. Identifying genetic markers for cryptorchidism is an essential step toward mitigating these negative outcomes and may facilitate genome manipulation to reduce the occurrence of cryptorchidism. Attempts to identify such markers have used genome-wide association studies. Using whole-exome sequencing, we aimed to identify single nucleotide polymorphisms (SNPs) in the coding regions of cryptorchid pigs and to characterize functional pathways concerning these SNPs.

Methods: DNA was extracted and sequenced from 5 healthy and 5 cryptorchid animals from the Landrace breed, using the Illumina HiSeq 2500 platform. Data were pre-processed using the SeqyClean tool and further mapped against the swine reference genome (Sus scrofa 11.1) using BWA software. GATK was used to identify polymorphisms (SNPs and InDels), which were annotated using the VEP tool. Network prediction and gene ontology enrichment analysis were conducted using the Cytoscape platform, and STRING software was used for visualization.

Results: A total of 63 SNPs were identified across the genes PIGB, CCPG1, COMMD9, LDLRAD3, TRIM44, MYLPF, SEPTIN, ZNF48, TIA1, FAIM2, KRT18, FBP1, FBP2, CTSL, DAPK1, DHX8, GPR179, DEPDC1B, ENSSSCG00000049573, ENSSSCG00000016384, ENSSSCG00000022657, ENSSSCG00000038825, and ENSSSCG00000001229. Using pathway enrichment analyses and network prospection, we have identified the following significant adjusted p value threshold of 0.001 involved with the biological function pathways of estrogen signaling, cytoskeleton organization, and the pentose phosphate pathway.

Conclusion: Our data suggest the involvement of new SNPs and genes in developing cryptorchidism in pigs. However, further studies are needed to validate our results in a larger cohort population. Variations in the GPR179 gene, with implications at the protein level, may be associated with the appearance of this anomaly in the swine. Finally, we are showing that the estrogen signaling pathway may be involved in the pathophysiological mechanisms of this congenital anomaly as previously reported in GWAS.

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来源期刊
Sexual Development
Sexual Development 生物-发育生物学
CiteScore
4.00
自引率
4.30%
发文量
25
审稿时长
>12 weeks
期刊介绍: Recent discoveries in experimental and clinical research have led to impressive advances in our knowledge of the genetic and environmental mechanisms governing sex determination and differentiation, their evolution as well as the mutations or endocrine and metabolic abnormalities that interfere with normal gonadal development. ‘Sexual Development’ provides a unique forum for this rapidly expanding field. Its broad scope covers all aspects of genetics, molecular biology, embryology, endocrinology, evolution and pathology of sex determination and differentiation in humans and animals. It publishes high-quality original research manuscripts, review articles, short reports, case reports and commentaries. An internationally renowned and multidisciplinary editorial team of three chief editors, ten prominent scientists serving as section editors, and a distinguished panel of editorial board members ensures fast and author-friendly editorial processing and peer reviewing.
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