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1.
Genetics ; 166(1): 419-36, 2004 Jan.
Article in English | MEDLINE | ID: mdl-15020433

ABSTRACT

A high-density genetic map of papaya (Carica papaya L.) was constructed using 54 F(2) plants derived from cultivars Kapoho and SunUp with 1501 markers, including 1498 amplified fragment length polymorphism (AFLP) markers, the papaya ringspot virus coat protein marker, morphological sex type, and fruit flesh color. These markers were mapped into 12 linkage groups at a LOD score of 5.0 and recombination frequency of 0.25. The 12 major linkage groups covered a total length of 3294.2 cM, with an average distance of 2.2 cM between adjacent markers. This map revealed severe suppression of recombination around the sex determination locus with a total of 225 markers cosegregating with sex types. The cytosine bases were highly methylated in this region on the basis of the distribution of methylation-sensitive and -insensitive markers. This high-density genetic map is essential for cloning of specific genes of interest such as the sex determination gene and for the integration of genetic and physical maps of papaya.


Subject(s)
Carica/genetics , Base Composition , Chromosome Mapping , Chromosomes, Plant/genetics , DNA Methylation , DNA, Plant/chemistry , DNA, Plant/genetics , Genes, Plant , Genome, Plant , Polymorphism, Genetic , Recombination, Genetic , Sex Determination Processes , Suppression, Genetic
2.
Nature ; 427(6972): 348-52, 2004 Jan 22.
Article in English | MEDLINE | ID: mdl-14737167

ABSTRACT

Many diverse systems for sex determination have evolved in plants and animals. One involves physically distinct (heteromorphic) sex chromosomes (X and Y, or Z and W) that are homozygous in one sex (usually female) and heterozygous in the other (usually male). Sex chromosome evolution is thought to involve suppression of recombination around the sex determination genes, rendering permanently heterozygous a chromosomal region that may then accumulate deleterious recessive mutations by Muller's ratchet, and fix deleterious mutations by hitchhiking as nearby favourable mutations are selected on the Y chromosome. Over time, these processes may cause the Y chromosome to degenerate and to diverge from the X chromosome over much of its length; for example, only 5% of the human Y chromosome still shows X-Y recombination. Here we show that papaya contains a primitive Y chromosome, with a male-specific region that accounts for only about 10% of the chromosome but has undergone severe recombination suppression and DNA sequence degeneration. This finding provides direct evidence for the origin of sex chromosomes from autosomes.


Subject(s)
Carica/genetics , Chromosomes, Plant/genetics , Evolution, Molecular , Y Chromosome/genetics , Alleles , Base Sequence , Cloning, Molecular , Contig Mapping , Disorders of Sex Development/genetics , Genes, Plant/genetics , Genetic Markers , Molecular Sequence Data , Polymorphism, Genetic , Sex Determination Processes
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