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澳大利亚淡水鱼鲈科中不稳定的性染色体。

Labile sex chromosomes in the Australian freshwater fish family Percichthyidae.

作者信息

Pavlova Alexandra, Harrisson Katherine A, Turakulov Rustam, Lee Yin Peng, Ingram Brett A, Gilligan Dean, Sunnucks Paul, Gan Han Ming

机构信息

School of Biological Sciences, Monash University, Clayton, Vic., Australia.

Department of Ecology, Environment & Evolution, La Trobe University, Bundoora, Vic., Australia.

出版信息

Mol Ecol Resour. 2022 May;22(4):1639-1655. doi: 10.1111/1755-0998.13569. Epub 2021 Dec 16.

Abstract

Sex-specific ecology has management implications, but rapid sex-chromosome turnover in fishes hinders sex-marker development for monomorphic species. We used annotated genomes and reduced-representation sequencing data for two Australian percichthyids, Macquarie perch Macquaria australasica and golden perch M. ambigua, and whole genome resequencing for 50 Macquarie perch of each sex, to identify sex-linked loci and develop an affordable sexing assay. In silico pool-seq tests of 1,492,004 Macquarie perch SNPs revealed that a 275-kb scaffold was enriched for gametologous loci. Within this scaffold, 22 loci were sex-linked in a predominantly XY system, with females being homozygous for the X-linked allele at all 22, and males having the Y-linked allele at >7. Seven XY-gametologous loci (all males, but no females, are heterozygous or homozygous for the male-specific allele) were within a 146-bp region. A PCR-RFLP sexing assay targeting one Y-linked SNP, tested in 66 known-sex Macquarie perch and two of each sex of three confamilial species, plus amplicon sequencing of 400 bp encompassing the 146-bp region, revealed that the few sex-linked positions differ between species and between Macquarie perch populations. This indicates sex-chromosome lability in Percichthyidae, supported by nonhomologous scaffolds containing sex-linked loci for Macquarie- and golden perches. The present resources facilitate genomic research in Percichthyidae, including formulation of hypotheses about candidate genes of interest such as transcription factor SOX1b that occurs in the 275-kb scaffold ~38 kb downstream of the 146-bp region containing seven XY-gametologous loci. Sex-linked markers will be useful for determining genetic sex in some populations and studying sex chromosome turnover.

摘要

性别特异性生态学具有管理意义,但鱼类中快速的性染色体更替阻碍了单态物种性别标记的开发。我们利用两个澳大利亚鲈形目鱼类麦夸里鲈(Macquaria australasica)和黄金鲈(M. ambigua)的注释基因组和简化代表性测序数据,以及对每种性别的50条麦夸里鲈进行全基因组重测序,来识别性连锁位点并开发一种经济实惠的性别鉴定方法。对1,492,004个麦夸里鲈单核苷酸多态性(SNP)进行的计算机模拟池测序测试表明,一个275 kb的支架富含同源位点。在这个支架内,22个位点在主要为XY的系统中是性连锁的,所有22个位点上雌性对于X连锁等位基因是纯合的,而雄性在>7个位点上具有Y连锁等位基因。七个XY同源位点(所有雄性,但没有雌性,对于雄性特异性等位基因是杂合或纯合的)位于一个146 bp的区域内。针对一个Y连锁SNP的PCR-RFLP性别鉴定方法,在66条已知性别的麦夸里鲈以及三个同科物种的每种性别的两条鱼中进行了测试,加上对包含146 bp区域的400 bp进行扩增子测序,结果表明,少数性连锁位置在物种之间以及麦夸里鲈种群之间存在差异。这表明鲈形目鱼类中性染色体的不稳定性,这得到了包含麦夸里鲈和黄金鲈性连锁位点的非同源支架的支持。目前的资源有助于鲈形目鱼类的基因组研究,包括对感兴趣的候选基因(如转录因子SOX1b)提出假设,该转录因子出现在包含七个XY同源位点的146 bp区域下游约38 kb处的275 kb支架中。性连锁标记将有助于确定某些种群的遗传性别并研究性染色体更替。

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