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2. Large palindromes on the primate X Chromosome are preserved by natural selection

3. SHIMS 3.0: Highly efficient single-haplotype iterative mapping and sequencing using ultra-long nanopore reads

5. Reduced Expression of the Kinesin-Associated Protein 3 (KIFAP3) Gene Increases Survival in Sporadic Amyotrophic Lateral Sclerosis

6. A gene deriving from the ancestral sex chromosomes was lost from the X and retained on the Y chromosome in eutherian mammals

7. Sequence analysis in Bos taurus reveals pervasiveness of X–Y arms races in mammalian lineages

8. Additional file 2 of A gene deriving from the ancestral sex chromosomes was lost from the X and retained on the Y chromosome in eutherian mammals

11. Mammalian Y chromosomes retain widely expressed dosage-sensitive regulators

13. Strict evolutionary conservation followed rapid gene loss on human and rhesus Y chromosomes

15. Sequence analysis in Bos taurus reveals pervasiveness of X–Y arms races in mammalian lineages

17. Sequence analysis in Bos taurus reveals pervasiveness of X–Y arms races in mammalian lineages

20. Locating and Characterizing a Transgene Integration Site by Nanopore Sequencing

24. Avian W and mammalian Y chromosomes convergently retained dosage-sensitive regulators

25. Mammalian Y chromosomes retain widely expressed dosage-sensitive regulators

26. Cost-effective high-throughput single-haplotype iterative mapping and sequencing for complex genomic structures

28. Avian W and mammalian Y chromosomes convergently retained dosage-sensitive regulators

29. Sequence analysis in Bos taurusreveals pervasiveness of X–Y arms races in mammalian lineages

30. Erratum: Corrigendum: Mammalian Y chromosomes retain widely expressed dosage-sensitive regulators

31. Strict evolutionary conservation followed rapid gene loss on human and rhesus Y chromosomes

32. A common haplotype within the PON1 promoter region is associated with sporadic ALS

33. Corrigendum: Mammalian Y chromosomes retain widely expressed dosage-sensitive regulators.

34. Locating and Characterizing a Transgene Integration Site by Nanopore Sequencing.

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