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Biomedical subjects

T P Lin

Publications and source records attributed to T P Lin.

69 records · Page 4Linked to original sources

Interaction of male and female germ cells of two mammalian species in culture.

When viewed by scanning electron microscopy, the heads of mouse spermatozoa are smaller than those of the hamster. The vitelline microvilli of hamster eggs are longer than those of the mouse egg. Both these factors may contribute to the enhanced interaction of mouse spermatozoa and hamster eggs. Treating unfertilized mouse eggs with Newcastle disease virus causes the viteline microvilli to elongate, thus improving the interaction between mouse eggs and hamster spermatozoa.

Animals↗

Microinjection of mouse eggs.

A technique has been developed for injecting known amounts of liquids into fertilized one-celled mouse eggs by use of a calibrated ocular micrometer superimposed on the terminal regions of the injection pipette. From 128 pronuclear eggs, each injected with 180 or 770 cubic microns of bovine gamma globulin at a concentration of 25 milligrams per milliliter in citrate-Locke's solution and then transferred to the oviducts of pregnant foster mothers, 18 living fetuses developed; from 74 eggs, each injected with 2730 cubic microns, 5 fetuses survived. The living fetuses that developed from the injected eggs were smaller than normal in 6 of 23 surviving experimental fetuses as contrasted to only 1 of 19 control fetuses.

Animals↗

Population genetics of geographically restricted and widespread species of Myrica (Myricaceae).

Allozyme variation of 11 putative loci in five populations of the rare Myrica adenophora Hance, and four populations of its widespread congeneric species, M. rubra (Lour.) Sieb. & Zucc. was studied. Among the 21 alleles studied, no unique allele was detected for M. adenophora, whereas M. rubra had 3 alleles not found in the former species. In terms of genetic diversity, populations of the rare species contained fewer alleles per locus (1.5 versus 1.7), fewer effective number of alleles per locus (1.12 versus 1.20), fewer number of alleles per polymorphic locus (2.14 versus 2.46), lower percentage of polymorphic loci (30.9 versus 40.9), and lower expected heterozygosity (0.106 versus 0.163) than populations of the widespread species. Genetic distances within species average 0.043 for M. adenophora and 0.045 for M. rubra, and between species ranged from 0.052 to 0.177, with a mean of 0.103, which agrees with the very similar gross morphologies of these two species. Intrapopulation differentiation was similar in both species: G(ST) = 0.152 for M. adenophora, and 0.146 for M. rubra, whereas estimated gene flow based on G(ST) values were moderate in these two species (Nm = 1.39 versus 1.46). We inferred that M. rubra and M. adenophora are a progenitor-derivative species pair that emerged before migrating into Taiwan during the last glacial period. We consider the Hengchun population (Chiupeng, Hsuhai, and Chufengpi) and Taitung population (Tienkuan and Lanshan) of M. adenophora which probably arose from two subsets of the genome of M. rubra. Genetic drift was inferred to be one of the forces shaping the observed genetic structure in M. adenophora and M. rubra.

Alleles↗

Allozyme variation of Cyclobalanopsis championii (Fagaceae), a narrowly distributed species in southern Taiwan.

Allozyme genetic variability in five natural populations of Cyclobalanopsis championii (Fagaceae) in Taiwan was investigated using 12 loci from 9 enzyme systems. The average values of parameters describing within-population variation, expected heterozygosity (He = 0.151), the percentage of polymorphic loci per individual (P = 50%), the average number of alleles per locus (A = 1.7), effective number of alleles per locus (Ae = 1.25), and the average number of alleles per polymorphic loci (AP = 2.2) are comparable to those of other long-lived woody plants. The overall fixation index (Fis = 0.208) indicates a significant deficiency of heterozygotes at the population level. Allelic frequency deviation from Hardy-Weinberg equilibrium was found for different loci in different populations. An exact test for population differentiation using the Tools for Population Genetic Analyses program also indicates that allelic frequencies among populations are significantly different (P < .001). Among-population variation, Gst, accounted for 9.2% of the total heterozygosity. The population at Shouchia and the southernmost population Nanjenshan had higher inbreeding coefficients (0.177 and 0.153, respectively) than did the northern populations. Genetic drift is supported by the observations of the variance components of linkage disequilibrium and a large proportion of loci in Nanjenshan and Shouchia that show pairwise locus disequilibrium. We believe continuous genetic drift in the southern populations will increase genetic divergence among populations of C. championii in Taiwan. Significant correlation was found between elevation and expected heterozygosity. We therefore inferred that temperature is the most important ecological factor to influence the genetic diversity of C. championii.

Gene Frequency↗