Molecular Method Based on Hydrolysis Probe Assays to Identify the Sex Chromosomes of Iberian Desman (Galemys pyrenaicus) Using Non-Invasive Sampling.

IF 3.5 1区 生物学 Q1 ZOOLOGY Integrative zoology Pub Date : 2024-12-08 DOI:10.1111/1749-4877.12933
Adriana Ripa, María Jesús Palacios-Gonzalez, José A Díaz-Caballero, Antonio Espinosa, Francisco Javier Zalba, Juan Luis García-Zapata, José Luis Fernádez-García
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Abstract

Desmans belong to the subfamily Desmaninae, which are members of the family Talpidae. Desmans and moles show limited sexual dimorphism, making unclear sex discrimination by phenotypic assessment. The Iberian desman (Galemys pyrenaicus) is an endangered species with a severe population decline. Knowledge of sex and sex ratio is essential for conservation and management. Based on these arguments and although previous conventional PCR studies amplifying DBX/DBY genes were relatively successful in sexing the desman, high-resolution sex-specific PCR has been requested. All these reasons encouraged us to develop new species-specific RT-qPCR assays by TaqMan probes to determine the sex in desman, especially with genetic material from non-invasive samples. Accordingly, efficiency, limit of detection (LOD), specificity, and DNA analysis from faeces were verified. The target genes DBX and DBY were amplified with gDNA from both sexes, with Y-chromosome consistently absent in the female. Despite the modest efficiency, regression analysis (R2 > 0.999) indicated a linear range of the DBX and DBY assays extending from 20 to 0.2 ng/µL DNA. LOD analyses estimated that twice as much gDNA was needed in males as in females for DBX detection. Paradoxically, the Y-chromosome required three times as much gDNA as the X-chromosome using a male sample. Therefore, an unexpected dosage imbalance in the genome in favour of the X chromosome was discussed in light of an apparent multicopy nature of the DBX gene and with a sexing success rate of 49.9% of the non-invasive samples, supporting Fisher's principle for the mammalian XX/XY sex system, as expected.

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基于水解探针的分子法无创取样鉴定伊比利亚Desman性染色体
desmanes属于Desmaninae亚科,是Talpidae科的成员。Desmans和mole表现出有限的性别二态性,通过表型评估使性别歧视不明确。伊比利亚desman (Galemys pyrenaicus)是一种种群数量严重下降的濒危物种。了解性别和性别比例对保护和管理至关重要。基于这些论点,尽管先前的传统PCR研究在扩增DBX/DBY基因方面相对成功,但高分辨率的性别特异性PCR已经被要求。所有这些原因促使我们利用TaqMan探针开发新的物种特异性RT-qPCR检测方法,特别是利用非侵入性样本的遗传物质来确定desman的性别。因此,效率、检出限(LOD)、特异性和粪便DNA分析得到验证。靶基因DBX和DBY用两性的gDNA扩增,在雌性中y染色体始终缺失。尽管效率不高,但回归分析(R2 > 0.999)表明,DBX和DBY测定的线性范围为20 ~ 0.2 ng/µL DNA。LOD分析估计,男性检测DBX所需的gDNA是女性的两倍。矛盾的是,使用男性样本,y染色体需要的gDNA是x染色体的三倍。因此,鉴于DBX基因具有明显的多拷贝性,并且非侵入性样本的性别成功率为49.9%,我们讨论了基因组中有利于X染色体的意外剂量失衡,正如预期的那样,支持Fisher关于哺乳动物XX/XY性别系统的原理。
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来源期刊
CiteScore
6.40
自引率
12.10%
发文量
81
审稿时长
>12 weeks
期刊介绍: The official journal of the International Society of Zoological Sciences focuses on zoology as an integrative discipline encompassing all aspects of animal life. It presents a broader perspective of many levels of zoological inquiry, both spatial and temporal, and encourages cooperation between zoology and other disciplines including, but not limited to, physics, computer science, social science, ethics, teaching, paleontology, molecular biology, physiology, behavior, ecology and the built environment. It also looks at the animal-human interaction through exploring animal-plant interactions, microbe/pathogen effects and global changes on the environment and human society. Integrative topics of greatest interest to INZ include: (1) Animals & climate change (2) Animals & pollution (3) Animals & infectious diseases (4) Animals & biological invasions (5) Animal-plant interactions (6) Zoogeography & paleontology (7) Neurons, genes & behavior (8) Molecular ecology & evolution (9) Physiological adaptations
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