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Diversity of reptile sex chromosome evolution revealed by cytogenetic and linked-read sequencing

摘要Reptile sex determination is attracting much attention because the great diversity of sex-determination and dosage compensation mechanisms permits us to approach fundamental questions about mechanisms of sex chromosome turnover.Recent studies have made significant progress in better understanding diversity and conservation of reptile sex chromosomes,with however no reptile master sex determination genes identified.Here we describe an integrated genomics and cytogenetics pipeline,combining probes generated from the microdissected sex chromosomes with transcriptome and genome sequencing to explore the sex chromosome diversity in non-model Australian reptiles.We tested our pipeline on a turtle,two species of geckos,and a monitor lizard.Genes identified on sex chromosomes were compared to the chicken genome to identify homologous regions among the four species.We identified candidate sex determining genes within these regions,including conserved vertebrate sex-determining genes pdgfa,pdgfra amh and wt1,and demonstrated their testis or ovary-specific expression.All four species showed gene-by-gene rather than chromosome-wide dosage compensation.Our results imply that reptile sex chromosomes originated by independent acquisition of sex-determining genes on different autosomes,as well as translocations between different ancestral macro-and microchromosomes.We discuss the evolutionary drivers of the slow differentiation and turnover of reptile sex chromosomes.

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作者 Ze-Xian Zhu [1] Kazumi Matsubara [2] Foyez Shams [3] Jason Dobry [3] Erik Wapstra [4] Tony Gamble [5] Stephen D.Sarre [3] Arthur Georges [3] Jennifer A.Marshall Graves [6] Qi Zhou [7] Tariq Ezaz [3] 学术成果认领
作者单位 MOE Laboratory of Biosystems Homeostasis and Protection and Zhejiang Provincial Key Laboratory for Cancer Molecular Cell Biology,Life Sciences Institute,Zhejiang University,Hangzhou,Zhejiang 310058,China [1] Institute for Applied Ecology,University of Canberra,Canberra 2601,Australia;Department of Environmental Biology,College of Bioscience and Biotechnology,Chubu University,Kasugai,Aichi 487-8501,Japan [2] Institute for Applied Ecology,University of Canberra,Canberra 2601,Australia [3] School of Biological Sciences,University of Tasmania,Hobart,Tasmania 7001,Australia [4] Department of Biological Sciences,Marquette University,Milwaukee,Wisconsin 52322,USA [5] Institute for Applied Ecology,University of Canberra,Canberra 2601,Australia;School of Life Science,La Trobe University,Melbourne 3168 Australia [6] MOE Laboratory of Biosystems Homeostasis and Protection and Zhejiang Provincial Key Laboratory for Cancer Molecular Cell Biology,Life Sciences Institute,Zhejiang University,Hangzhou,Zhejiang 310058,China;Department of Neuroscience and Developmental Biology,University of Vienna,Vienna 1030,Austria;Center for Reproductive Medicine,The 2nd Affiliated Hospital,School of Medicine,Zhejiang University,Hangzhou,Zhejiang 310009,China [7]
发布时间 2022-11-18
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动物学研究

动物学研究

2022年43卷5期

719-733页

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