SLRfinder: A method to detect candidate sex‐linked regions with linkage disequilibrium clustering

Author:

Yi Xueling1ORCID,Kemppainen Petri1ORCID,Merilä Juha12ORCID

Affiliation:

1. Area of Ecology and Biodiversity, School of Biological Sciences The University of Hong Kong Hong Kong SAR Hong Kong

2. Ecological Genetics Research Unit, Organismal and Evolutionary Biology Programme University of Helsinki Helsinki Finland

Abstract

AbstractDespite their critical roles in genetic sex determination, sex chromosomes remain unknown in many non‐model organisms, especially those having recently evolved sex‐linked regions (SLRs). These evolutionarily young and labile sex chromosomes are important for understanding early sex chromosome evolution but are difficult to identify due to the lack of Y/W degeneration and SLRs limited to small genomic regions. Here, we present SLRfinder, a method to identify candidate SLRs using linkage disequilibrium (LD) clustering, heterozygosity and genetic divergence. SLRfinder does not rely on specific sequencing methods or a specific type of reference genome (e.g., from the homomorphic sex). In addition, the input of SLRfinder does not require phenotypic sexes, which may be unknown from population sampling, but sex information can be incorporated and is necessary to validate candidate SLRs. We tested SLRfinder using various published datasets and compared it to the local principal component analysis (PCA) method and the depth‐based method Sex Assignment Through Coverage (SATC). As expected, the local PCA method could not be used to identify unknown SLRs. SATC works better on conserved sex chromosomes, whereas SLRfinder outperforms SATC in analysing labile sex chromosomes, especially when SLRs harbour inversions. Power analyses showed that SLRfinder worked better when sampling more populations that share the same SLR. If analysing one population, a relatively larger sample size (around 50) is needed for sufficient statistical power to detect significant SLR candidates, although true SLRs are likely always top‐ranked. SLRfinder provides a novel and complementary approach for identifying SLRs and uncovering additional sex chromosome diversity in nature.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Reference49 articles.

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