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Biomedical subjects

Xiang-Yin Kong

Publications and source records attributed to Xiang-Yin Kong.

4 recordsLinked to original sources

Simple sequence repeat-based consensus linkage map of Bombyx mori.

We established a genetic linkage map employing 518 simple sequence repeat (SSR, or microsatellite) markers for Bombyx mori (silkworm), the economically and culturally important lepidopteran insect, as part of an international genomics program. A survey of six representative silkworm strains using 2,500 (CA)n- and (CT)n-based SSR markers revealed 17-24% polymorphism, indicating a high degree of homozygosity resulting from a long history of inbreeding. Twenty-nine SSR linkage groups were established in well characterized Dazao and C108 strains based on genotyping of 189 backcross progeny derived from an F(1) male mated with a C108 female. The clustering was further focused to 28 groups by genotyping 22 backcross progeny derived from an F(1) female mated with a C108 male. This set of SSR linkage groups was further assigned to the 28 chromosomes (established linkage groups) of silkworm aided by visible mutations and cleaved amplified polymorphic sequence markers developed from previously mapped genes, cDNA sequences, and cloned random amplified polymorphic DNAs. By integrating a visible mutation p (plain, larval marking) and 29 well conserved genes of insects onto this SSR-based linkage map, a second generation consensus silkworm genetic map with a range of 7-40 markers per linkage group and a total map length of approximately 3431.9 cM was constructed and its high efficiency for genotyping and potential application for synteny studies of Lepidoptera and other insects was demonstrated.

Animals↗

A high-resolution genetic and physical map of a mouse coat abnormality locus (Uncv).

More than a hundred of loci (genes) affect the development of mouse and human hair. A locus of Uncv (uncovered) has been confirmed to be involved in hairlessness for homozygote and sparse hair for heterozygote. Except hairlessness(or called uncovered coat), the homozygote was also accompanied by growth retard and puberty delay. Identification of the mutation in the gene will be important for understanding the related diseases in human. Although the uncovered locus (Uncv) has been mapped to the mouse distal chromosome 11(Chr11), the high-resolution genetic map and physical map of the locus has not been created. In this study, 2074 F2 mouse populations from backcross [BALB/c (Uncv/Uncv) x C3H (+/+)]x BALB/c (Uncv/Uncv) and [BALB/c (Uncv/Uncv) x C57BL/6 (+/+)] x BALB/c(Uncv/ Uncv) were genotyped using 16 polymorphic markers with an approximately 20 cM interval on mouse distal Chr11. By genetic linkage analysis, Uncv locus was mapped to an approximately 1.4 cM interval between markers D11Mit337 and D11Mit338 with the following order: proximal D11Mit338-D11Mit203 (Uncv)-D11Mit103 -D11Mit337 distal on mouse Chr11. And then, a contig of 35 BACs representing the Uncv-containing region was constructed. The contig covered 800-1000 kb region flanked by 189K10-SP6 and D11Mit103. Together, we have constructed the high-resolution genetic map and detailed physical map of the Uncv region. This will facilitate the identification of the Uncv loci.

Animals↗

Linkage analysis of the candidate genes of familial restless legs syndrome.

This research was performed to investigate the relationship between 16 candidate genes responsible for dopaminergic transmission or iron metabolism and familial restless legs syndrome. Genotyping was performed in a Han restless legs syndrome family using the technique of fluorescence-based genescan with the microsatellite markers selected in chromosomal regions flanking the candidate genes. Classical linkage analysis was conducted under the autosomal dominant genetic mode. Results showed that all of the LOD scores at recombination fraction 0.00 are smaller than -2.00, which indicated that these loci were not linked to familial restless legs syndrome. No linkage was found between the candidate genes and RLS in this family. Familial restless legs syndrome may be caused by another gene related to dopaminergic transmission and iron metabolism or there is new mechanism involved in this disease.

Adolescent↗

Mutation analysis of 20 SARS virus genome sequences: evidence for negative selection in replicase ORF1b and spike gene.

AIM: Recently, more SARS-CoV virus genome sequences are released to the GenBank database. The aim of this study is to reveal the evolution forces of SARS-CoV virus by analyzing the nucleotide mutations in these sequences. METHODS: We obtained 20 SARS-CoV virus genome sequences from NCBI database, and calculated the ratio of non-synonymous nucleotide substitution per non-synonymous site (Ka) and synonymous nucleotide substitution per synonymous site (Ks) for SARS-CoV virus genes. RESULTS: The Ka/Ks ratios for replicase polyprotein ORF1a, ORF1b, and spike protein gene are 1.09 (P=0.6501), 0.38 (P=0.0074), 0.65 (P=0.0685) respectively. CONCLUSION: SARS-CoV virus replicase polyprotein ORF1b is undergoing negative selection; negative selection force is also probably operating on spike protein gene. These results provide basis for future developing a new drug and vaccine against SARS.

Base Sequence↗